WO2012124013A1 - Dispositif de transmission de message, dispositif de réception de message et système de distribution de message - Google Patents

Dispositif de transmission de message, dispositif de réception de message et système de distribution de message Download PDF

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Publication number
WO2012124013A1
WO2012124013A1 PCT/JP2011/055755 JP2011055755W WO2012124013A1 WO 2012124013 A1 WO2012124013 A1 WO 2012124013A1 JP 2011055755 W JP2011055755 W JP 2011055755W WO 2012124013 A1 WO2012124013 A1 WO 2012124013A1
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WO
WIPO (PCT)
Prior art keywords
message
identifier
individual
receiving
data
Prior art date
Application number
PCT/JP2011/055755
Other languages
English (en)
Japanese (ja)
Inventor
西本 友成
裕之 川喜田
友幸 井上
Original Assignee
日本放送協会
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Filing date
Publication date
Application filed by 日本放送協会 filed Critical 日本放送協会
Priority to PCT/JP2011/055755 priority Critical patent/WO2012124013A1/fr
Publication of WO2012124013A1 publication Critical patent/WO2012124013A1/fr

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Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04HBROADCAST COMMUNICATION
    • H04H20/00Arrangements for broadcast or for distribution combined with broadcast
    • H04H20/86Arrangements characterised by the broadcast information itself
    • H04H20/91Arrangements characterised by the broadcast information itself broadcasting computer programmes
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04HBROADCAST COMMUNICATION
    • H04H60/00Arrangements for broadcast applications with a direct linking to broadcast information or broadcast space-time; Broadcast-related systems
    • H04H60/09Arrangements for device control with a direct linkage to broadcast information or to broadcast space-time; Arrangements for control of broadcast-related services
    • H04H60/14Arrangements for conditional access to broadcast information or to broadcast-related services
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N21/00Selective content distribution, e.g. interactive television or video on demand [VOD]
    • H04N21/40Client devices specifically adapted for the reception of or interaction with content, e.g. set-top-box [STB]; Operations thereof
    • H04N21/47End-user applications
    • H04N21/488Data services, e.g. news ticker
    • H04N21/4882Data services, e.g. news ticker for displaying messages, e.g. warnings, reminders
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N21/00Selective content distribution, e.g. interactive television or video on demand [VOD]
    • H04N21/80Generation or processing of content or additional data by content creator independently of the distribution process; Content per se
    • H04N21/81Monomedia components thereof
    • H04N21/8126Monomedia components thereof involving additional data, e.g. news, sports, stocks, weather forecasts
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04HBROADCAST COMMUNICATION
    • H04H2201/00Aspects of broadcast communication
    • H04H2201/70Aspects of broadcast communication characterised in that receivers can be addressed
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L12/00Data switching networks
    • H04L12/02Details
    • H04L12/16Arrangements for providing special services to substations
    • H04L12/18Arrangements for providing special services to substations for broadcast or conference, e.g. multicast
    • H04L12/1881Arrangements for providing special services to substations for broadcast or conference, e.g. multicast with schedule organisation, e.g. priority, sequence management

Definitions

  • the present invention relates to a message transmission device, a message reception device, and a message distribution system for distributing a message by digital broadcasting.
  • a digital broadcast receiving apparatus (hereinafter referred to as a receiving apparatus) that has not subscribed to a broadcast program does not have a contract on the screen. Processing such as displaying a message to that effect is performed.
  • a method of restricting viewing in this individual receiving device a method of restricting with an IC card (CAS [Conditional Access System] card) given in advance for each receiving device is generally used (see, for example, Patent Document 1). .
  • an IC card to which an individual identifier (card number or the like) has been assigned and written in advance is distributed to the user (viewer) together with the receiving device.
  • the broadcaster distributes an individual message to the effect that the contract is not made using broadcast waves, with the identifier of the receiving device that has not been contracted as destination information.
  • This message is distributed in the EMM (Entitlement Management Message) format standardized by STD-B25 of the Radio Industry Association (ARIB) in the case of broadcasting distributed in MPEG-2 TS (Transport Stream).
  • an IC card is used as part of the billing system for pay broadcasting, the increase in cost can be reduced by the viewing fee, but the IC card is used as part of free broadcast content protection. In this case, an increase in the cost of the IC card becomes a big problem. Therefore, at present, a content distribution mechanism that does not use an IC card is desired.
  • the present invention has been made in view of the above-described problems, and a broadcaster individually specifies a receiving device and distributes a message without giving an individual IC card to the receiving device in advance. It is an object of the present invention to provide a message transmission device, a message reception device, and a message delivery system that can be used.
  • the present invention provides a message transmission device according to claim 1, a common message generation unit that generates a common message that is a common message for the message reception device, and each message reception device.
  • the message transmission device the message storing device for transmitting the common message and the individual message as broadcast data via the broadcast transmission unit, the identifier storage unit, and the individual identifier
  • the configuration includes a duplication determination unit and an individual identifier registration unit.
  • the message transmitting device receives an individual identifier for identifying the message receiving device generated by the message receiving device by the individual identifier duplication determination unit and notified in advance to the broadcaster side from the outside, It is determined whether or not the individual identifier is stored in the identifier storage means.
  • the message transmission device writes and stores the individual identifier in the identifier storage unit.
  • individual information (individual identifier) for specifying each message receiving device is registered in the message transmission device on the broadcaster side.
  • the message transmitting device generates an individual message with the individual identifier specified from the outside as the destination.
  • the message transmitting apparatus is the message transmitting apparatus according to claim 1, wherein the individual message generating means includes message control information notification generating means, and the common message generating means includes message information notification generating means.
  • the configuration is the message transmitting apparatus according to claim 1, wherein the individual message generating means includes message control information notification generating means, and the common message generating means includes message information notification generating means.
  • the message transmission device can specify a group of message reception devices to be processed by predetermined message information transmitted as a common message by the message control information notification generation unit of the individual message generation unit.
  • a message control information notification to which control information is added is generated as an individual message with an individual identifier as a destination.
  • the message receiving apparatuses that have received the message control information as individual messages are grouped according to the value of the message control information. For example, the individual message receiving devices are grouped depending on whether or not there is a viewing contract.
  • the message transmission device generates a message information notification that is a common message with the message control information as the destination and the message information as the content by the message information notification generation unit of the common message generation unit.
  • the message transmitting apparatus can transmit a message to the grouped message receiving apparatuses using a common message.
  • the message transmission device is the message transmission device according to claim 2, wherein the message control information notification generation unit is configured to transmit a broadcast program after the individual identifier is stored in the identifier storage unit.
  • a message control information notification to which message control information indicating a group that can be viewed is added is generated as the individual message with the individual identifier as a destination.
  • the message transmitting device can divide the message receiving device into any group of whether or not the broadcast program can be viewed according to the value of the message control information by the message control information notification generating means.
  • a message transmission device is the message transmission device according to any one of claims 1 to 3, further comprising: a data broadcast data storage unit; and a data carousel encoding unit.
  • An instruction to read the individual identifier stored in the storage means of the message receiving device and display it on the screen in a predetermined display format is described in BML data which is data for data broadcasting And
  • the message transmitting apparatus encodes the BML data stored in the data broadcasting data storage means into section data that can be transmitted by carousel transmission by the data carousel encoding means. This makes it possible to transmit BML data as a data broadcast.
  • an instruction to read the individual identifier stored in the storage unit of the message receiving device and display it on the screen in a predetermined display format is described in the BML data. As a result, the individual identifiers are displayed in a unified display format on all the message reception devices.
  • the message transmission device is the message transmission device according to any one of claims 1 to 4, further comprising a message identification table generation unit, and the common message generation unit and the message transmission unit. A plurality of individual message generating means are provided.
  • the message transmission device inputs a plurality of conditional access system identifications and packet identifiers from the outside by the message identification table generating means, and for each conditional access system identification, a service descriptor, a conditional access system identification, A message identification table including a plurality of conditional access system descriptors associated with packet identifiers is generated.
  • the conditional access system identification is an identifier stored in advance in a message receiving apparatus for receiving a limited message from a plurality of messages.
  • the packet identifier is an identifier of a packet that transmits a common message and an individual message.
  • the service descriptor is an identifier indicating that message transmission is being performed from the message transmission device (message service is being performed), and includes a conditional access system identification and a carrier identification code. is there.
  • the message transmission device transmits the message identification table as broadcast data by the broadcast transmission means, adds a different packet identifier for each of the plurality of common message generation means and individual message generation means, and converts the generated message into packet data. Send as.
  • the message receiving apparatus can recognize that the message service is being implemented, and can recognize a message to itself even when a plurality of messages are delivered simultaneously.
  • the message receiving device is a common message receiving means for receiving, via the broadcast receiving means, a common message which is a common message to the message receiving device transmitted as broadcast data from the message transmitting device. And an individual message receiving means for receiving an individual message individually transmitted to each message receiving apparatus via the broadcast receiving means.
  • the individual identifier generating means and the individual identifier display means It was set as the structure provided with.
  • the message receiving device generates the individual identifier for individually identifying the message receiving device based on the internal information of the message receiving device by the individual identifier generating unit, and writes and stores it in the storage unit. To do. Then, the message receiving device displays the individual identifier generated by the individual identifier generating unit on the screen as information for notifying the broadcaster side by the individual identifier display unit. As a result, the user (viewer) of the message receiving apparatus can notify the broadcaster of the individual identifier, for example, by telephone. The message receiving device receives the individual message as a message addressed to the message receiving device when the destination of the individual message matches the individual identifier stored in the storage device.
  • the message receiving device is the message receiving device according to claim 6, further comprising message control information notification analyzing means in the individual message receiving means, and message information notification analyzing means in the common message receiving means. It was set as the structure provided.
  • the message receiving device receives the message control information for designating a group of message receiving devices to be processed by the message control information notification analyzing unit of the individual message receiving unit as a common message.
  • the message control information is written and stored in the storage means.
  • the message receiving devices are grouped according to the value of the message control information. For example, the individual message receiving devices are grouped depending on whether or not there is a viewing contract.
  • the message receiving device when the message information notification analyzing means of the common message receiving means matches the destination of the common message received as broadcast data via the broadcast receiving means with the message control information stored in the storage means The message information added to the common message is received as a message addressed to the message receiving apparatus. As a result, the message receiving apparatus can receive a message addressed to the same group as a common message.
  • the message receiving device according to claim 8 is the message receiving device according to claim 7, further comprising an initialization means.
  • the message receiving device initializes the message control information and the individual identifier stored in the storage unit by the initialization unit according to an instruction from the outside.
  • the message receiving apparatus can initialize information notified from the message transmitting apparatus (message control information) and information generated by the message receiving apparatus (individual identifier).
  • the message receiving device is the message receiving device according to any one of claims 6 to 8, wherein the individual identifier generating means is generated by a random number generating means as the internal information.
  • a hash value is calculated by a predetermined hash function for at least one of a random number to be measured, a current time measured by a time measuring means, or predetermined receiver information, and the individual identifier is generated.
  • the message receiving device calculates the hash value by using a predetermined hash function from at least one of the random number, the current time, and the receiver information by the individual identifier generating means, and generates the individual identifier.
  • the receiver information is, for example, data obtained by quantifying character codes such as the manufacturer name and model name (model number) of the receiving device.
  • the individual identifier generating means can generate an individual identifier with a reduced possibility of becoming an individual identifier that overlaps with another message receiving apparatus.
  • the message receiving device is the message receiving device according to any one of claims 6 to 8, further comprising a data carousel decoding unit and a BML decoding unit.
  • the message receiving apparatus decodes the BML data from the section data received by the broadcast receiving means by the data carousel decoding means. Then, the message receiving apparatus decodes and visualizes the BML data decoded by the data carousel decoding means by the BML decoding means. At this time, the BML decoding means reads out the individual identifier stored in the storage means based on the instruction described in the BML data and displays it on the screen in the designated display format.
  • the message receiving device is the message receiving device according to any one of claims 6 to 8, comprising a limited reception method identification storage unit and a message identification table reception unit.
  • the message identification table receiving means includes service descriptor analyzing means and conditional access system descriptor analyzing means.
  • the message receiving apparatus stores in advance the conditional access system identification, which is an identifier for limiting and receiving one message from a plurality of messages, in the conditional access system identification storage means. Then, the message receiving device searches the service descriptor analyzing means of the message identification table receiving means for the same identifier as the conditional access system identification stored in the conditional access system identification storage means in a plurality of service descriptors, and the same It is determined that message transmission is being performed when there is a conditional access system identification.
  • conditional access system identification which is an identifier for limiting and receiving one message from a plurality of messages
  • the message reception device uses the same identifier as the conditional access method identification to identify a plurality of limited reception methods. Search in the descriptor, and extract the packet identifier associated with the same conditional access system identification. Then, the message receiving device extracts, from the broadcast data, the packet data having the packet identifier extracted by the conditional access method descriptor analyzing unit as a message to the message receiving device.
  • the message delivery system includes a common message generation unit that generates a common message and an individual message generation unit that generates an individual message, and the common message and the individual message are transmitted via a broadcast transmission unit.
  • a message transmitting device for transmitting a message as broadcast data, a common message receiving unit for receiving the common message via a broadcast receiving unit, and an individual message receiving unit for receiving the individual message via the broadcast receiving unit
  • a message delivery system for delivering a message, wherein the message transmission device receives the message previously input via an external input means in the individual message generation means
  • the device's individual identifier is the message destination
  • the individual message is generated and transmitted to the message reception device, and the message reception device includes an individual identifier generation unit and an individual identifier display unit, and the individual message reception unit receives a message addressed to the individual identifier. It was configured to receive.
  • the message distribution system generates an individual identifier for individually identifying the message receiving device, based on the internal information of the message receiving device, by the individual identifier generating means in the message receiving device. Write and store in the storage means. Then, the message receiving device displays the individual identifier generated by the individual identifier generating unit on the screen as information for notifying the broadcaster side by the individual identifier display unit. Thereby, the user (viewer) of the message receiving apparatus can notify the individual identifier to the broadcaster, for example, by telephone or the like.
  • the message transmitting device generates an individual message with the individual identifier of the message receiving device generated by the message receiving device as a message destination and transmits the message to the message receiving device. The message receiving device receives the individual message as a message addressed to the message receiving device when the destination of the individual message matches the individual identifier stored in the storage device.
  • the message delivery system according to claim 13 is the message delivery system according to claim 12, wherein the message transmission device includes message control information notification generation means in the individual message generation means, and message is sent to the common message generation means.
  • the message receiving apparatus is configured to further include a message control information notification analyzing unit in the individual message receiving unit, and a message information notification analyzing unit in the common message receiving unit.
  • the message transmitting device is a message receiving device that is a target for processing predetermined message information transmitted as a common message by the message control information notification generating unit of the individual message generating unit.
  • a message control information notification to which message control information for specifying a group is added is generated as an individual message with an individual identifier as a destination.
  • the message receiving apparatuses that have received the message control information as individual messages are grouped according to the value of the message control information. For example, the individual message receiving devices are grouped depending on whether or not there is a viewing contract.
  • the message transmission device generates a message information notification that is a common message with the message control information as the destination and the message information as the content by the message information notification generation unit of the common message generation unit.
  • the message transmitting apparatus can transmit a message to the grouped message receiving apparatuses using a common message.
  • the message receiving device is a message control to which message control information for specifying a group of message receiving devices to be processed by the message control information notification analyzing unit of the individual message receiving unit is specified.
  • the message control information is written and stored in the storage means.
  • the message receiving devices are grouped according to the value of the message control information. For example, the individual message receiving devices are grouped depending on whether or not there is a viewing contract.
  • the message receiving device when the message information notification analyzing means of the common message receiving means matches the destination of the common message received as broadcast data via the broadcast receiving means with the message control information stored in the storage means The message information added to the common message is received as a message addressed to the message receiving apparatus. As a result, the message receiving apparatus can receive a message addressed to the same group as a common message.
  • the message delivery system according to claim 14 is the message delivery system according to claim 12 or claim 13, wherein the message transmission device further comprises a data carousel encoding means, and the message reception device comprises a data carousel decoding. And a BML decryption unit, wherein an instruction to read the individual identifier stored in the storage unit of the message receiving device and display it on the screen in a predetermined display format is described in BML data It is characterized by leaving.
  • the message distribution system transmits BML data describing an instruction to display the individual identifier, encoded by the data carousel encoding means, from the message transmission device to the message reception device as a data broadcast. To do.
  • the message receiving apparatus reads the individual identifier stored in the storage means and displays it on the screen.
  • the message delivery system can display the individual identifier in a predetermined display format in the message receiving device by data broadcasting.
  • the message delivery system according to claim 15 is the message delivery system according to claim 12 or claim 13, wherein the message transmitting device further includes message identification table generation means, and the common message generation means and the message delivery system A plurality of individual message generating means are provided, the message receiving device is provided with a conditional access system identification storage means and a message identification table receiving means, and the message identification table receiving means is a service descriptor analyzing means and a conditional access system. And a descriptor analyzing means.
  • the message delivery system receives a plurality of conditional access system identifications and packet identifiers from the outside by the message identification table generating means in the message transmission device, and for each conditional access system identification, a service descriptor, A message identification table including a plurality of conditional access system descriptors in which the conditional access system identification and the packet identifier are associated with each other is generated. Then, the message transmission device transmits the message identification table as broadcast data by the broadcast transmission means, adds a different packet identifier for each of the plurality of common message generation means and individual message generation means, and converts the generated message into packet data. Send as.
  • the message receiving device searches for the same identifier as the conditional access system identification stored in the conditional access system identification storage means by the service descriptor analysis means of the message identification table reception means in a plurality of service descriptors, and is the same It is determined that message transmission is being performed when there is a conditional access method identification. Then, when the message receiving apparatus determines that the message transmission is being performed by the conditional access method descriptor analyzing unit of the message identification table receiving unit, the message reception device uses the same identifier as the conditional access method identification to identify a plurality of limited reception methods. Search in the descriptor, and extract the packet identifier associated with the same conditional access system identification. Then, the message receiving device extracts, from the broadcast data, the packet data having the packet identifier extracted by the conditional access method descriptor analyzing unit as a message to the message receiving device.
  • the message transmitting device is a common message generating means for generating a common message, which is a common message for the message receiving device, and an individual message for individually transmitting to each message receiving device.
  • a message transmission device that transmits the common message and the individual message as broadcast data via a broadcast transmission unit, and includes an identifier storage unit, an individual identifier registration unit, and a designated identifier registration unit.
  • the individual message generation unit includes a designated identifier notification generation unit.
  • the message transmitting device inputs the individual identifier for identifying the message receiving device previously notified to the broadcaster side by the individual identifier registering unit from the outside, and the individual identifier is stored in the identifier storing unit. Write and memorize. As a result, individual information (individual identifier) for specifying each message receiving device is registered in the message transmission device on the broadcaster side.
  • the message transmitting device writes and stores the specified identifier, which is a new identifier for individually identifying the message receiving device on the broadcaster side, in association with the individual identifier by the specified identifier registration unit in the identifier storage unit.
  • the message transmitting apparatus can manage each message receiving apparatus with an identifier assigned by the broadcaster.
  • the message transmission device generates, as an individual message, a specified identifier notification having the individual identifier as the message destination and the specified identifier corresponding to the individual identifier as the message content, by the specified identifier notification generating unit of the individual message generating unit.
  • the specified identifier notified by the specified identifier notification is stored in the message receiving device corresponding to the individual identifier, and the individual message receiving device can be specified by the specified identifier from the message transmitting device. .
  • the message transmitting device transmits the specified identifier notification as an individual message to the message receiving device, and then generates the individual message with the specified identifier specified from the outside as the destination.
  • the message can be individually delivered to the message receiving device using the designated identifier managed by the broadcaster.
  • the message transmitting apparatus is the message transmitting apparatus according to claim 16, wherein the individual message generating means includes message control information notification generating means, and the common message generating means includes message information notification generating means.
  • the configuration is the message transmitting apparatus according to claim 16, wherein the individual message generating means includes message control information notification generating means, and the common message generating means includes message information notification generating means.
  • the message transmission device can specify a group of message reception devices to be processed by predetermined message information transmitted as a common message by the message control information notification generation unit of the individual message generation unit.
  • the message control information notification with the control information added is generated as an individual message with the specified identifier as the destination.
  • the message receiving apparatuses that have received the message control information as individual messages are grouped according to the value of the message control information. For example, the individual message receiving devices are grouped depending on whether or not there is a viewing contract.
  • the message transmission device generates a message information notification that is a common message with the message control information as the destination and the message information as the content by the message information notification generation unit of the common message generation unit.
  • the message transmitting apparatus can transmit a message to the grouped message receiving apparatuses using a common message.
  • the message transmitting device is the message transmitting device according to claim 17, wherein the message control information notification generating means stores the broadcast program after the designated identifier is stored in the identifier storing means.
  • a message control information notification to which message control information indicating a group that can be viewed is added is generated as the individual message with the specified identifier as a destination.
  • the message transmitting device can divide the message receiving device into any group of whether or not the broadcast program can be viewed according to the value of the message control information by the message control information notification generating means.
  • the message transmitting device is the message transmitting device according to any one of claims 16 to 18, further comprising: a data broadcast data storage unit; and a data carousel encoding unit.
  • the message transmitting apparatus encodes the BML data stored in the data broadcasting data storage means into section data that can be transmitted by carousel transmission by the data carousel encoding means. This makes it possible to transmit BML data as a data broadcast.
  • an instruction to read the individual identifier stored in the storage unit of the message receiving device and display it on the screen in a predetermined display format is described in the BML data. As a result, the individual identifiers are displayed in a unified display format on all the message reception devices.
  • a message transmission device is the message transmission device according to any one of claims 16 to 18, further comprising a message identification table generation unit, and the common message generation unit and the message transmission device.
  • a plurality of individual message generating means are provided.
  • the message transmission device inputs a plurality of conditional access system identifications and packet identifiers from the outside by the message identification table generating means, and for each conditional access system identification, a service descriptor, a conditional access system identification, A message identification table including a plurality of conditional access system descriptors associated with packet identifiers is generated.
  • the conditional access system identification is an identifier stored in advance in a message receiving apparatus for receiving a limited message from a plurality of messages.
  • the packet identifier is an identifier of a packet that transmits a common message and an individual message.
  • the service descriptor is an identifier indicating that message transmission is being performed from the message transmission device (message service is being performed), and includes a conditional access system identification and a carrier identification code. is there.
  • the message transmission device transmits the message identification table as broadcast data by the broadcast transmission means, adds a different packet identifier for each of the plurality of common message generation means and individual message generation means, and converts the generated message into packet data. Send as.
  • the message receiving apparatus can recognize that the message service is being implemented, and can recognize a message to itself even when a plurality of messages are delivered simultaneously.
  • the message receiving device is a common message receiving means for receiving a common message, which is a common message to the message receiving device transmitted as broadcast data from the message transmitting device, via the broadcast receiving means. And an individual message receiving means for receiving an individual message transmitted individually to each message receiving apparatus via the broadcast receiving means, and a storage means and an individual identifier display means.
  • the individual message receiving unit includes a designated identifier analyzing unit.
  • the message receiving device stores in advance an individual identifier for identifying the message receiving device in the storage means. For example, a unique identifier is written in advance in the storage means as an individual identifier by the manufacturer of the message receiving device. Then, the message receiving device displays the individual identifier stored in the storage unit on the screen as information for notifying the broadcaster side of the individual identifier by the individual identifier display unit. Thereby, the user (viewer) of the message receiving apparatus can notify the individual identifier to the broadcaster, for example, by telephone or the like.
  • the message receiving device is an individual message in which the individual identifier is the message destination by the designated identifier analyzing unit of the individual message receiving unit, and the designated identifier generated for the individual identifier on the broadcaster side is the content of the message.
  • the designation identifier notification is received, the designation identifier is written and stored in the storage means.
  • the message receiving device stores the designated identifier notified by the designated identifier notification from the message transmitting device in the storage means, and is in a state where it can be managed by the designated identifier managed on the broadcaster side.
  • the message receiving device receives the individual message as a message addressed to the message receiving device when the destination of the individual message matches the specified identifier stored in the storage device. Thereby, the message receiving device can receive the individual message by the designated identifier managed by the broadcaster side.
  • the message receiving device is the message receiving device according to claim 21, further comprising message control information notification analyzing means in the individual message receiving means, and message information notification analyzing means in the common message receiving means. It was set as the structure provided.
  • the message receiving device receives the message control information for designating a group of message receiving devices to be processed by the message control information notification analyzing unit of the individual message receiving unit as a common message.
  • the message control information is written and stored in the storage means.
  • the message receiving devices are grouped according to the value of the message control information. For example, the individual message receiving devices are grouped depending on whether or not there is a viewing contract.
  • the message receiving device when the message information notification analyzing means of the common message receiving means matches the destination of the common message received as broadcast data via the broadcast receiving means with the message control information stored in the storage means The message information added to the common message is received as a message addressed to the message receiving apparatus. As a result, the message receiving apparatus can receive a message addressed to the same group as a common message.
  • the message receiving device according to claim 23 is the message receiving device according to claim 22, further comprising an initialization means.
  • the message receiving device initializes the message control information and the designated identifier stored in the storage unit by the initialization unit in accordance with an instruction from the outside. Thereby, the message receiving device can initialize the information notified from the message transmitting device.
  • the message receiving apparatus is the message receiving apparatus according to any one of claims 21 to 23, further comprising a data carousel decoding unit and a BML decoding unit.
  • the message receiving apparatus decodes the BML data from the section data received by the broadcast receiving means by the data carousel decoding means. Then, the message receiving apparatus decodes and visualizes the BML data decoded by the data carousel decoding means by the BML decoding means. At this time, the BML decoding means reads out the individual identifier stored in the storage means based on the instruction described in the BML data and displays it on the screen in the designated display format.
  • a message receiving device is the message receiving device according to any one of claims 21 to 23, comprising a limited reception method identification storage means and a message identification table reception means.
  • the message identification table receiving means includes service descriptor analyzing means and conditional access system descriptor analyzing means.
  • the message receiving apparatus stores in advance the conditional access system identification, which is an identifier for limiting and receiving one message from a plurality of messages, in the conditional access system identification storage means. Then, the message receiving device searches the service descriptor analyzing means of the message identification table receiving means for the same identifier as the conditional access system identification stored in the conditional access system identification storage means in a plurality of service descriptors, and the same It is determined that message transmission is being performed when there is a conditional access method identification.
  • conditional access system identification which is an identifier for limiting and receiving one message from a plurality of messages
  • the message reception device uses the same identifier as the conditional access method identification to identify a plurality of limited reception methods. Search in the descriptor and extract the packet identifier associated with the same conditional access system identification. Then, the message receiving device extracts, from the broadcast data, the packet data having the packet identifier extracted by the conditional access method descriptor analyzing unit as a message to the message receiving device.
  • the message delivery system includes a common message generating unit that generates a common message and an individual message generating unit that generates an individual message, and the common message and the individual message are transmitted via a broadcast transmission unit.
  • a message transmitting device for transmitting a message as broadcast data, a common message receiving unit for receiving the common message via a broadcast receiving unit, and an individual message receiving unit for receiving the individual message via the broadcast receiving unit
  • a message delivery system for delivering a message wherein the message transmission device receives the message previously input via an external input means in the individual message generation means
  • the device's individual identifier is the message destination
  • the specified identifier is changed to the message
  • An individual message as a destination is generated and transmitted to the message receiving device.
  • the message receiving device includes a storage unit and an individual identifier display unit, and the individual message receiving unit includes a specified identifie
  • the message delivery system uses the individual message having the message identifier as the message destination and the message identifier as the new identifier managed by the broadcaster in the message transmission device. Is transmitted to the message receiver.
  • the specified identifier is stored in the message receiving device corresponding to the individual identifier, and the individual message receiving device can be specified by the specified identifier from the message transmitting device.
  • the message transmitting device After that, the message transmitting device generates an individual message with the specified identifier as the message destination and transmits it to the message receiving device.
  • the message receiving device stores in advance an individual identifier for identifying the message receiving device in the storage means. For example, a unique identifier is written in advance in the storage means as an individual identifier by the manufacturer of the message receiving device. Then, the message receiving device displays the individual identifier stored in the storage unit on the screen as information for notifying the broadcaster side of the individual identifier by the individual identifier display unit. Thereby, the user (viewer) of the message receiving apparatus can notify the individual identifier to the broadcaster, for example, by telephone or the like.
  • the message receiving device is an individual message in which the individual identifier is the message destination by the designated identifier analyzing unit of the individual message receiving unit, and the designated identifier generated for the individual identifier on the broadcaster side is the content of the message.
  • the designation identifier notification is received, the designation identifier is written and stored in the storage means.
  • the message receiving device stores the designated identifier notified by the designated identifier notification from the message transmitting device in the storage means, and is in a state where it can be managed by the designated identifier managed on the broadcaster side.
  • the message receiving device receives the individual message as a message addressed to the message receiving device when the destination of the individual message matches the specified identifier stored in the storage device. Thereby, the message receiving device can receive the individual message by the designated identifier managed by the broadcaster side.
  • the message transmitting device includes a message control information notification generating unit in the individual message generating unit, and a message in the common message generating unit.
  • the message receiving apparatus is configured to further include a message control information notification analyzing unit in the individual message receiving unit, and a message information notification analyzing unit in the common message receiving unit.
  • the message transmitting device is a message receiving device that is a target for processing predetermined message information transmitted as a common message by the message control information notification generating unit of the individual message generating unit.
  • a message control information notification to which message control information for specifying a group is added is generated as an individual message with a specified identifier as a destination.
  • the message receiving apparatuses that have received the message control information as individual messages are grouped according to the value of the message control information. For example, the individual message receiving devices are grouped depending on whether or not there is a viewing contract.
  • the message transmission device generates a message information notification that is a common message with the message control information as the destination and the message information as the content by the message information notification generation unit of the common message generation unit.
  • the message transmitting apparatus can transmit a message to the grouped message receiving apparatuses using a common message.
  • the message receiving device is a message control to which message control information for specifying a group of message receiving devices to be processed by the message control information notification analyzing unit of the individual message receiving unit is specified.
  • the message control information is written and stored in the storage means.
  • the message receiving devices are grouped according to the value of the message control information. For example, the individual message receiving devices are grouped depending on whether or not there is a viewing contract.
  • the message receiving device when the message information notification analyzing means of the common message receiving means matches the destination of the common message received as broadcast data via the broadcast receiving means with the message control information stored in the storage means The message information added to the common message is received as a message addressed to the message receiving apparatus. As a result, the message receiving apparatus can receive a message addressed to the same group as a common message.
  • the message transmission device further includes data carousel encoding means
  • the message reception device includes data carousel decoding.
  • a BML decryption unit wherein an instruction to read the individual identifier stored in the storage unit of the message receiving device and display it on the screen in a predetermined display format is described in BML data It is characterized by leaving.
  • the message distribution system transmits BML data describing an instruction to display the individual identifier, encoded by the data carousel encoding means, from the message transmission device to the message reception device as a data broadcast. To do.
  • the message receiving apparatus reads the individual identifier stored in the storage means and displays it on the screen.
  • the message delivery system can display the individual identifier in a predetermined display format in the message receiving device by data broadcasting.
  • the message delivery system according to claim 29 is the message delivery system according to claim 26 or claim 27, wherein the message transmitting device further includes message identification table generation means, and the common message generation means and the message delivery system A plurality of individual message generating means are provided, the message receiving device is provided with a conditional access system identification storage means and a message identification table receiving means, and the message identification table receiving means is a service descriptor analyzing means and a conditional access system. And a descriptor analyzing means.
  • the message delivery system receives a plurality of conditional access system identifications and packet identifiers from the outside by the message identification table generating means in the message transmission device, and for each conditional access system identification, a service descriptor, A message identification table including a plurality of conditional access system descriptors in which the conditional access system identification and the packet identifier are associated with each other is generated. Then, the message transmission device transmits the message identification table as broadcast data by the broadcast transmission means, adds a different packet identifier for each of the plurality of common message generation means and individual message generation means, and converts the generated message into packet data. Send as.
  • the message receiving device searches for the same identifier as the conditional access system identification stored in the conditional access system identification storage means by the service descriptor analysis means of the message identification table reception means in a plurality of service descriptors, and is the same It is determined that message transmission is being performed when there is a conditional access method identification. Then, when the message receiving apparatus determines that the message transmission is being performed by the conditional access method descriptor analyzing unit of the message identification table receiving unit, the message reception device uses the same identifier as the conditional access method identification to identify a plurality of limited reception methods. Search in the descriptor, and extract the packet identifier associated with the same conditional access system identification. Then, the message receiving device extracts, from the broadcast data, the packet data having the packet identifier extracted by the conditional access method descriptor analyzing unit as a message to the message receiving device.
  • the message transmitting device is a common message generating means for generating a common message, which is a common message for the message receiving device, and an individual message for individually transmitting to each message receiving device.
  • a message transmission device comprising a message generation means, and transmitting the common message and the individual message as broadcast data via a broadcast transmission means, an identifier storage means, an individual identifier duplication determination means, an individual identifier registration means, A designated identifier registration unit, and the individual message generation unit includes a designation identifier notification generation unit.
  • the message transmitting device receives an individual identifier for identifying the message receiving device generated by the message receiving device by the individual identifier duplication determination unit and notified in advance to the broadcaster side from the outside, It is determined whether or not the individual identifier is stored in the identifier storage means.
  • the message transmission device writes and stores the individual identifier in the identifier storage unit.
  • individual information (individual identifier) for specifying individual message receiving devices is registered in the message transmission device on the broadcaster side without duplication.
  • the message transmitting device writes and stores the specified identifier, which is a new identifier for individually identifying the message receiving device on the broadcaster side, in association with the individual identifier by the specified identifier registration unit in the identifier storage unit.
  • the message transmitting apparatus can manage each message receiving apparatus with an identifier assigned by the broadcaster.
  • the message transmission device generates, as an individual message, a specified identifier notification having the individual identifier as the message destination and the specified identifier corresponding to the individual identifier as the message content, by the specified identifier notification generating unit of the individual message generating unit.
  • the specified identifier notified by the specified identifier notification is stored in the message receiving device corresponding to the individual identifier, and the individual message receiving device can be specified by the specified identifier from the message transmitting device. .
  • the message transmitting device transmits the specified identifier notification as an individual message to the message receiving device, and then generates an individual message with the specified identifier specified from the outside as a destination.
  • the message can be individually delivered to the message receiving device using the specified identifier managed by the broadcaster.
  • the message transmitting apparatus is the message transmitting apparatus according to claim 30, wherein the individual message generating means includes message control information notification generating means, and the common message generating means includes message information notification generating means.
  • the configuration is the message transmitting apparatus according to claim 30, wherein the individual message generating means includes message control information notification generating means, and the common message generating means includes message information notification generating means.
  • the message transmission device can specify a group of message reception devices to be processed by predetermined message information transmitted as a common message by the message control information notification generation unit of the individual message generation unit.
  • the message control information notification with the control information added is generated as an individual message with the specified identifier as the destination.
  • the message receiving apparatuses that have received the message control information as individual messages are grouped according to the value of the message control information. For example, the individual message receiving devices are grouped depending on whether or not there is a viewing contract.
  • the message transmission device generates a message information notification that is a common message with the message control information as the destination and the message information as the content by the message information notification generation unit of the common message generation unit.
  • the message transmitting apparatus can transmit a message to the grouped message receiving apparatuses using a common message.
  • the message transmission device is the message transmission device according to claim 31, wherein the message control information notification generation means is configured to transmit a broadcast program after the designated identifier is stored in the identifier storage means.
  • a message control information notification to which message control information indicating a group that can be viewed is added is generated as the individual message with the specified identifier as a destination.
  • the message transmitting device can divide the message receiving device into any group of whether or not the broadcast program can be viewed according to the value of the message control information by the message control information notification generating means.
  • a message transmission device is the message transmission device according to any one of claims 30 to 32, further comprising: a data broadcast data storage unit; and a data carousel encoding unit.
  • An instruction to read the individual identifier stored in the storage means of the message receiving device and display it on the screen in a predetermined display format is described in BML data which is data for data broadcasting And
  • the message transmitting apparatus encodes the BML data stored in the data broadcasting data storage means into section data that can be transmitted by carousel transmission by the data carousel encoding means. This makes it possible to transmit BML data as a data broadcast.
  • an instruction to read the individual identifier stored in the storage unit of the message receiving device and display it on the screen in a predetermined display format is described in the BML data. As a result, the individual identifiers are displayed in a unified display format on all the message reception devices.
  • a message transmission device is the message transmission device according to any one of claims 30 to 32, further comprising a message identification table generation unit, and the common message generation unit and the A plurality of individual message generating means are provided.
  • the message transmission device inputs a plurality of conditional access system identifications and packet identifiers from the outside by the message identification table generating means, and for each conditional access system identification, a service descriptor, a conditional access system identification, A message identification table including a plurality of conditional access system descriptors associated with packet identifiers is generated.
  • the conditional access system identification is an identifier stored in advance in a message receiving apparatus for receiving a limited message from a plurality of messages.
  • the packet identifier is an identifier of a packet that transmits a common message and an individual message.
  • the service descriptor is an identifier indicating that a message is being transmitted from the message transmission device (message service is being performed), and includes a conditional access system identification and a carrier identification code. is there.
  • the message transmission device transmits the message identification table as broadcast data by the broadcast transmission means, adds a different packet identifier for each of the plurality of common message generation means and individual message generation means, and converts the generated message into packet data. Send as.
  • the message receiving apparatus can recognize that the message service is being implemented, and can recognize a message to itself even when a plurality of messages are delivered simultaneously.
  • the message reception device receives a common message that is a common message to the message reception device transmitted as broadcast data from the message transmission device via the broadcast reception device.
  • an individual message receiving means for receiving an individual message individually transmitted to each message receiving apparatus via the broadcast receiving means.
  • the individual identifier generating means and the individual identifier display means The individual message receiving unit includes a designated identifier analyzing unit.
  • the message receiving device generates the individual identifier for individually identifying the message receiving device based on the internal information of the message receiving device by the individual identifier generating means. Then, the message receiving device displays the individual identifier generated by the individual identifier generating unit on the screen as information for notifying the broadcaster side by the individual identifier display unit. Thereby, the user (viewer) of the message receiving apparatus can notify the individual identifier to the broadcaster, for example, by telephone or the like.
  • the message receiving device is an individual message in which the individual identifier is the message destination by the designated identifier analyzing unit of the individual message receiving unit, and the designated identifier generated for the individual identifier on the broadcaster side is the content of the message.
  • the designation identifier notification is received, the designation identifier is written and stored in the storage means.
  • the message receiving device stores the designated identifier notified by the designated identifier notification from the message transmitting device in the storage means, and is in a state where it can be managed by the designated identifier managed on the broadcaster side.
  • the message receiving device receives the individual message as a message addressed to the message receiving device when the destination of the individual message matches the designated identifier stored in the storage device. Thereby, the message receiving device can receive the individual message by the designated identifier managed by the broadcaster side.
  • the message receiving device is the message receiving device according to claim 35, further comprising message control information notification analyzing means in the individual message receiving means, and message information notification analyzing means in the common message receiving means. It was set as the structure provided.
  • the message receiving device receives the message control information for designating a group of message receiving devices to be processed by the message control information notification analyzing unit of the individual message receiving unit as a common message.
  • the message control information is written and stored in the storage means.
  • the message receiving devices are grouped according to the value of the message control information. For example, the individual message receiving devices are grouped depending on whether or not there is a viewing contract.
  • the message receiving device when the message information notification analyzing means of the common message receiving means matches the destination of the common message received as broadcast data via the broadcast receiving means with the message control information stored in the storage means The message information added to the common message is received as a message addressed to the message receiving apparatus. As a result, the message receiving apparatus can receive a message addressed to the same group as a common message.
  • the message receiving device according to claim 37 is the message receiving device according to claim 36, further comprising an initialization means.
  • the message receiving device initializes the message control information and the designated identifier stored in the storage unit by the initialization unit in accordance with an instruction from the outside. Thereby, the message receiving device can initialize the information notified from the message transmitting device.
  • the message reception device is the message reception device according to any one of claims 35 to 37, wherein the individual identifier generation means is generated by the random number generation means as the internal information.
  • a hash value is calculated by a predetermined hash function for at least one of a random number to be measured, a current time measured by a time measuring means, or predetermined receiver information, and the individual identifier is generated.
  • the message receiving device calculates the hash value by using a predetermined hash function from at least one of the random number, the current time, and the receiver information by the individual identifier generating means, and generates the individual identifier.
  • the receiver information is, for example, data obtained by quantifying character codes such as the manufacturer name and model name (model number) of the receiving device.
  • the individual identifier generating means can generate an individual identifier with a reduced possibility of becoming an individual identifier that overlaps with another message receiving apparatus.
  • the message receiving apparatus is the message receiving apparatus according to any one of claims 35 to 37, further comprising a data carousel decoding means and a BML decoding means.
  • the message receiving apparatus decodes the BML data from the section data received by the broadcast receiving means by the data carousel decoding means. Then, the message receiving apparatus decodes and visualizes the BML data decoded by the data carousel decoding means by the BML decoding means. At this time, the BML decoding means reads out the individual identifier stored in the storage means based on the instruction described in the BML data and displays it on the screen in the designated display format.
  • a message receiving device is the message receiving device according to any one of claims 35 to 37, comprising a limited reception method identification storage means and a message identification table reception means.
  • the message identification table receiving means includes service descriptor analyzing means and conditional access system descriptor analyzing means.
  • the message receiving apparatus stores in advance the conditional access system identification, which is an identifier for limiting and receiving one message from a plurality of messages, in the conditional access system identification storage means. Then, the message receiving device searches the service descriptor analyzing means of the message identification table receiving means for the same identifier as the conditional access system identification stored in the conditional access system identification storage means in a plurality of service descriptors, and the same It is determined that message transmission is being performed when there is a conditional access method identification.
  • conditional access system identification which is an identifier for limiting and receiving one message from a plurality of messages
  • the message reception device uses the same identifier as the conditional access method identification to identify a plurality of limited reception methods. Search in the descriptor and extract the packet identifier associated with the same conditional access system identification. Then, the message receiving device extracts, from the broadcast data, the packet data having the packet identifier extracted by the conditional access method descriptor analyzing unit as a message to the message receiving device.
  • the message delivery system further comprising: a common message generating unit that generates a common message; and an individual message generating unit that generates an individual message.
  • the message and the individual message are transmitted via a broadcast transmitting unit.
  • a message transmitting device for transmitting a message as broadcast data, a common message receiving unit for receiving the common message via a broadcast receiving unit, and an individual message receiving unit for receiving the individual message via the broadcast receiving unit
  • a message delivery system for delivering a message, wherein the message transmission device receives the message previously input via an external input means in the individual message generation means
  • the device's individual identifier is the message destination Then, after generating and transmitting to the message receiving device an individual message having a specified identifier that is a new identifier for individually identifying the message receiving device on the broadcaster side, the specified identifier is changed to the message An individual message as a destination is generated and transmitted to the message receiving device.
  • the message receiving device includes an individual identifier generating unit and an individual identifier display unit, and the individual message receiving unit includes a specified identifier analyzing unit.
  • the individual message receiving unit includes a specified identifier analyzing unit.
  • the message delivery system uses the individual message having the message identifier as the message destination and the message identifier as the new identifier managed by the broadcaster in the message transmission device. Is transmitted to the message receiver.
  • the specified identifier is stored in the message receiving device corresponding to the individual identifier, and the individual message receiving device can be specified by the specified identifier from the message transmitting device.
  • the message transmitting device After that, the message transmitting device generates an individual message with the specified identifier as the message destination and transmits it to the message receiving device.
  • the message receiving device generates an individual identifier for individually identifying the message receiving device based on the internal information of the message receiving device by the individual identifier generating means. Then, the message receiving device displays the individual identifier generated by the individual identifier generating unit on the screen as information for notifying the broadcaster side by the individual identifier display unit. Thereby, the user (viewer) of the message receiving apparatus can notify the individual identifier to the broadcaster, for example, by telephone or the like.
  • the message receiving device is an individual message in which the individual identifier is the message destination by the designated identifier analyzing unit of the individual message receiving unit, and the designated identifier generated for the individual identifier on the broadcaster side is the content of the message.
  • the designation identifier notification is received, the designation identifier is written and stored in the storage means.
  • the message receiving device stores the designated identifier notified by the designated identifier notification from the message transmitting device in the storage means, and is in a state where it can be managed by the designated identifier managed on the broadcaster side.
  • the message receiving device receives the individual message as a message addressed to the message receiving device when the destination of the individual message matches the designated identifier stored in the storage device. Thereby, the message receiving device can receive the individual message by the designated identifier managed by the broadcaster side.
  • the message delivery system according to claim 42 is the message delivery system according to claim 41, wherein the message transmitting device includes message control information notification generation means in the individual message generation means, and message is sent to the common message generation means.
  • the message receiving apparatus is configured to further include a message control information notification analyzing unit in the individual message receiving unit, and a message information notification analyzing unit in the common message receiving unit.
  • the message transmitting device is a message receiving device that is a target for processing predetermined message information transmitted as a common message by the message control information notification generating unit of the individual message generating unit.
  • a message control information notification to which message control information for specifying a group is added is generated as an individual message with a specified identifier as a destination.
  • the message receiving apparatuses that have received the message control information as individual messages are grouped according to the value of the message control information. For example, the individual message receiving devices are grouped depending on whether or not there is a viewing contract.
  • the message transmission device generates a message information notification that is a common message with the message control information as the destination and the message information as the content by the message information notification generation unit of the common message generation unit.
  • the message transmitting apparatus can transmit a message to the grouped message receiving apparatuses using a common message.
  • the message receiving device is a message control to which message control information for specifying a group of message receiving devices to be processed by the message control information notification analyzing unit of the individual message receiving unit is specified.
  • the message control information is written and stored in the storage means.
  • the message receiving devices are grouped according to the value of the message control information. For example, the individual message receiving devices are grouped depending on whether or not there is a viewing contract.
  • the message receiving device when the message information notification analyzing means of the common message receiving means matches the destination of the common message received as broadcast data via the broadcast receiving means with the message control information stored in the storage means The message information added to the common message is received as a message addressed to the message receiving apparatus. As a result, the message receiving apparatus can receive a message addressed to the same group as a common message.
  • the message delivery system according to claim 43 is the message delivery system according to claim 41 or claim 42, wherein the message transmitting device further comprises data carousel encoding means, and the message receiving device is data carousel decoding. And a BML decryption unit, wherein an instruction to read the individual identifier stored in the storage unit of the message receiving device and display it on the screen in a predetermined display format is described in BML data It is characterized by leaving.
  • the message distribution system transmits BML data describing an instruction to display the individual identifier, encoded by the data carousel encoding means, from the message transmission device to the message reception device as a data broadcast. To do.
  • the message receiving apparatus reads the individual identifier stored in the storage means and displays it on the screen.
  • the message delivery system can display the individual identifier in a predetermined display format in the message receiving device by data broadcasting.
  • the message delivery system according to claim 44 is the message delivery system according to claim 41 or claim 42, wherein the message transmitting device further comprises a message identification table generating means, and the common message generating means and the A plurality of individual message generating means are provided, the message receiving device is provided with a conditional access system identification storage means and a message identification table receiving means, and the message identification table receiving means is a service descriptor analyzing means and a conditional access system. And a descriptor analyzing means.
  • the message delivery system receives a plurality of conditional access system identifications and packet identifiers from the outside by the message identification table generating means in the message transmission device, and for each conditional access system identification, a service descriptor, A message identification table including a plurality of conditional access system descriptors in which the conditional access system identification and the packet identifier are associated with each other is generated. Then, the message transmission device transmits the message identification table as broadcast data by the broadcast transmission means, adds a different packet identifier for each of the plurality of common message generation means and individual message generation means, and converts the generated message into packet data. Send as.
  • the message receiving device searches for the same identifier as the conditional access system identification stored in the conditional access system identification storage unit by the service descriptor analysis unit of the message identification table reception unit in a plurality of service descriptors, and the same It is determined that message transmission is being performed when there is a conditional access system identification. Then, when the message receiving apparatus determines that the message transmission is being performed by the conditional access method descriptor analyzing unit of the message identification table receiving unit, the message reception device uses the same identifier as the conditional access method identification to identify a plurality of limited reception methods. Search in the descriptor and extract the packet identifier associated with the same conditional access system identification. Then, the message receiving device extracts, from the broadcast data, the packet data having the packet identifier extracted by the conditional access method descriptor analyzing unit as a message to the message receiving device.
  • the message transmitting apparatus can transmit an individual message to the individual identifier generated by the message receiving apparatus.
  • the message receiving apparatus does not use an IC card distributed by the broadcaster as in the prior art, and the cost of the IC card can be reduced.
  • the broadcaster does not have to manage the identifiers of all message receivers in advance, and only needs to manage the message receivers that have notified the individual identifiers, thereby reducing the cost of managing identifiers. Can do.
  • the message receiving devices can be grouped in arbitrary units based on the message control information. Furthermore, since the message information can be delivered to each grouped message receiving device with the message control information as a destination in a common message, it is more efficient than sending individual messages to each message receiving device. Can deliver messages well.
  • the message receiving device can be grouped into a group that can view the broadcast program and a group that cannot view the broadcast program, and different message information can be distributed to each group using a common message.
  • the individual identifier can be displayed in the message receiving device by the BML data of the data broadcast transmitted from the broadcaster.
  • the message receiving device can display the individual identifier in a unified display format described in BML data such as BML text or ECMAScript, regardless of the receiving device manufacturer, and notification of the individual identifier from the viewer.
  • the content can be stylized.
  • the message receiving device since the information and the individual identifier transmitted from the message transmitting device can be initialized, by resetting the identifier from the beginning by the initial setting, The user of the message receiving device can be easily changed.
  • the ninth aspect of the present invention when generating the individual identifier in the message receiving device, it is possible to suppress the degree of duplication between other message receiving devices, so in the message receiving device, Work such as generating an individual identifier again can be eliminated as much as possible.
  • the message display method is different in the message receiving device, it is possible to acquire a message suitable for its own display method from a plurality of types of messages. And multiple messages can be delivered simultaneously.
  • the message receiving apparatus does not use an IC card distributed by the broadcaster as in the prior art, and the cost of the IC card can be reduced.
  • the broadcaster does not need to manage the identifiers of all the message receiving devices in advance, and it is only necessary to sequentially assign the specified identifiers to the message receiving devices that have notified the individual identifiers. The cost to do can be reduced.
  • the message receiving devices can be grouped in arbitrary units based on the message control information. Furthermore, since the message information can be delivered to each grouped message receiving device with the message control information as a destination in a common message, it is more efficient than sending individual messages to each message receiving device. Can deliver messages well.
  • the eighteenth aspect of the present invention it is possible to specify a group that can view a broadcast program using the message control information.
  • the message receiving device can be grouped into a group that can view the broadcast program and a group that cannot view the broadcast program, and different message information can be distributed to each group using a common message.
  • the individual identifier can be displayed on the message receiving device by the BML data of the data broadcast transmitted from the broadcaster.
  • the message receiving device can display the individual identifier in a unified display format described in BML data such as BML text or ECMAScript, regardless of the receiving device manufacturer, and notification of the individual identifier from the viewer.
  • the content can be stylized.
  • the message transmitting device since the information transmitted from the message transmitting device can be initialized in the message receiving device, the message can be easily set by resetting the identifier from the beginning by the initial setting. The user of the receiving device can be changed.
  • the message transmitting apparatus can assign the designated identifier managed by the broadcaster to the individual identifier generated by the message receiving apparatus.
  • the message receiving apparatus does not use an IC card distributed by the broadcaster as in the prior art, and the cost of the IC card can be reduced.
  • the broadcaster does not need to manage the identifiers of all the message receiving devices in advance, and it is only necessary to sequentially assign the specified identifiers to the message receiving devices that have notified the individual identifiers. The cost to do can be reduced.
  • the message receiving devices can be grouped in arbitrary units based on the message control information. Furthermore, since the message information can be delivered to each grouped message receiving device with the message control information as a destination in a common message, it is more efficient than sending individual messages to each message receiving device. Can deliver messages well.
  • the thirty-second aspect of the present invention it is possible to specify a group that can view a broadcast program using the message control information.
  • the message receiving device can be grouped into a group that can view the broadcast program and a group that cannot view the broadcast program, and different message information can be distributed to each group using a common message.
  • the individual identifier can be displayed on the message receiving device by the BML data of the data broadcast transmitted from the broadcaster.
  • the message receiving device can display the individual identifier in a unified display format described in BML data such as BML text or ECMAScript, regardless of the receiving device manufacturer, and notification of the individual identifier from the viewer.
  • the content can be stylized.
  • the message transmitting device since the information transmitted from the message transmitting device can be initialized in the message receiving device, the message can be easily set by resetting the identifier from the beginning by the initial setting. The user of the receiving device can be changed.
  • the digital broadcasting system S A a plurality of broadcasters A, B, ... has a digital broadcast transmitting apparatus 1A (1), 1A (1 ), ... and the digital broadcast receiving apparatus 5A installed in the home or the like (5 , 5A (5),... Is a system in which content (broadcast program) transmitted by digital broadcast from the digital broadcast transmission device 1A is received by the digital broadcast reception device 5A and viewed by the viewer.
  • the broadcast wave W may be wireless or wired, such as terrestrial digital broadcast, satellite broadcast, and cable broadcast.
  • a digital broadcast receiving apparatus 5A, 5A, ... has previously unique identifier (individual identifier ID2 [ID2 1, ID2 2, ...]) to. Then, the digital broadcast receiving device 5A notifies the individual identifier ID2 to the digital broadcast transmitting device 1A, thereby transmitting individual message information addressed to the digital broadcast receiving device 5A via the broadcast wave W from the digital broadcast transmitting device 1A. Is possible. Also, the digital broadcasting system S A, so that it can meet the demand individual digital broadcast receiving apparatus 5A, 5A, against ..., wants to send a message information at a time on a group of arbitrary units, individual digital The broadcast receiving devices 5A, 5A,... Can be grouped. The basic features are the same in the following embodiments.
  • the digital broadcast transmitting apparatus 1A transmits content to the digital broadcast receiving apparatus 5A via the broadcast wave W.
  • the digital broadcast transmitting apparatus 1A has a function of transmitting message information via the broadcast wave W to the individual digital broadcast receiving apparatus 5A with the individual identifier ID2 as a destination.
  • the digital broadcast transmission device 1A has a function of grouping individual digital broadcast reception devices 5A and transmitting message information to a specific group.
  • the digital broadcast receiver 5A receives content via the broadcast wave W.
  • An individual identifier ID2 is set in advance in the digital broadcast receiving apparatus 5A. By notifying and registering this individual identifier ID2 to the digital broadcast transmitting apparatus 1A, the digital broadcast receiving apparatus 5A acquires message information addressed to the individual identifier ID2 transmitted from the digital broadcast transmitting apparatus 1A via the broadcast wave W. Has the function of Here, it is assumed that the individual identifier ID2 of the digital broadcast receiving device 5A is notified to the broadcaster by telephone or the like by the viewer and registered in the digital broadcast transmitting device 1A.
  • the viewer notifies the broadcaster of the individual identifier ID2 displayed on the display screen of the digital broadcast receiving device 5A by telephone, postcard, Internet, or the like (step SA1). Then, the broadcaster registers the individual identifier ID2 in the digital broadcast transmission device 1A. Then, in the subsequent operations, the digital broadcast transmission device 1A can identify the individual digital broadcast reception device 5A by the individual identifier ID2 and transmit an individual message (individual message).
  • the digital broadcast transmitting device 1A is an individual message whose destination is the individual identifier ID2, and transmits message control information for specifying the type of group to the digital broadcast receiving apparatus 5A (step SA2). Then, the digital broadcast transmitting apparatus 1A describes message control information as a destination in a common message that is a message common to all the digital broadcast receiving apparatuses 5A, and transmits the message information (step SA3). As a result, even for a common message, only the digital broadcast receiving device 5A grouped with the message control information receives the message information.
  • the digital broadcast receiving apparatus 5A is in advance has a unique individual identifier ID2, to notify the broadcaster side, the like conventional CAS card It is not necessary to distribute each IC card individually to each receiving device, and it is not necessary to manage the IC card identifier (card number).
  • ID2 unique individual identifier
  • the digital broadcast transmitting apparatus 1A and a digital broadcast receiving apparatus 5A in a digital broadcasting system S A according to the first embodiment are in advance.
  • the digital broadcast transmitting apparatus 1A includes an individual identifier registration unit 10, a message information storage unit 11, a message control information storage unit 12, a message control information individual update unit 13, an identifier storage unit 14, and a common message generation. Means 15, individual message generation means 16, and broadcast transmission means 17 are provided.
  • FIG. 3 illustrates only an identifier for identifying the digital broadcast receiving device 5A and a configuration related to message distribution using the identifier, and relates to a function of a general digital broadcast transmission device, for example, content distribution. The illustration of the configuration to be performed is omitted.
  • the individual identifier registration means 10 inputs the individual identifier ID2 which is an identifier unique to the digital broadcast receiving apparatus 5A and the personal information PD of the viewer, and registers them as an identifier database in the storage means (identifier storage means 14).
  • the individual identifier registration means 10 inputs the individual identifier ID2 notified from the viewer by telephone, postcard, Internet, etc. and the personal information PD of the viewer, such as a keyboard, by the operator who operates the digital broadcast transmitting apparatus 1A.
  • the individual identifier ID2 is written and stored (registered) in the identifier storage means 14 in association with the personal information PD.
  • the personal information PD is information for identifying the viewer (user), and is, for example, the name, address, telephone number, etc. of the viewer.
  • the individual identifier registration unit 10 outputs the input individual identifier ID2 to the message control information notification generation unit 161 of the individual message generation unit 16.
  • the output to the message control information notification generation unit 161 is to deliver an individual message indicating that registration has been accepted to the digital broadcast receiving device 5A when the individual identifier ID2 is input.
  • the message information storage means 11 stores message information Msg to be transmitted to the digital broadcast receiving device 5A, and is a general storage medium such as a hard disk.
  • the message information Msg is data notified to the digital broadcast receiving device 5A in addition to the content, and the content is not particularly limited. For example, it is data such as text and mail displayed on the screen in a superimposed manner.
  • the message information Msg stored in the message information storage unit 11 is input via an input unit (not shown), and is read and used by the message information notification generation unit 151 of the common message generation unit 15. If the date and time when the message information Msg is transmitted in advance is determined by the broadcast program (content) or the like, the message information Msg is stored in association with the broadcast program distribution time.
  • the message control information storage unit 12 stores message control information Mc to be transmitted to the digital broadcast receiving device 5A, and is a general storage medium such as a hard disk.
  • the message control information Mc is information stored in the digital broadcast receiving device 5A, and is information for controlling the acquisition, processing, and the like of the message information Msg with respect to the digital broadcast receiving device 5A. For example, this message control information Mc can control whether or not the digital broadcast receiving device 5A acquires the message information Msg.
  • the message control information Mc a unique value is determined in advance depending on the presence / absence of a broadcast channel viewing contract, viewing area, and the like.
  • the message control information Mc is managed by 2-byte data “0x0000” to “0xFFFF”, and “0x0000” is “no broadcast channel contract” and “0x0001” is “broadcast channel contract”.
  • the message control information Mc when the broadcast channel is selected in the digital broadcast receiving apparatus 5A of “no broadcast channel contract”, a message indicating that the contract is not made is displayed as the message information Msg.
  • the digital broadcast receiving device 5A can be grouped.
  • the message control information Mc stored in the message control information storage unit 12 is input via an input unit (not shown), and is read and used by the message control information notification generation unit 161.
  • the message control information storage means 12 stores a plurality of values as message control information Mc such as a value set by a broadcast channel viewing contract and a value set by a broadcast contract for each broadcast program (content). Can do.
  • the message control information individual update means 13 is for individually updating the message control information Mc stored in the digital broadcast receiving device 5A.
  • the message control information individual update means 13 inputs the individual identifier ID2 of the digital broadcast receiving apparatus 5A to be updated and new message control information Mc from the outside via an input means (not shown). Then, it instructs the individual message generating means 16 to generate an individual message for transmitting the message control information Mc to the digital broadcast receiving apparatus 5A.
  • the message control information individual update is performed.
  • the means 13 receives the individual identifier ID2 corresponding to the digital broadcast receiving device 5A and the message control information Mc (0x0000) indicating “no broadcast channel contract”, and thereby corresponds to the individual identifier ID2 by an individual message.
  • the message control information Mc of the digital broadcast receiving apparatus 5A to be updated can be updated to “No broadcast channel contract (0x0000)”.
  • the identifier storage unit 14 stores (registers) the individual identifier ID2 input by the individual identifier registration unit 10, and is a general storage medium such as a hard disk. This identifier storage means 14 is made into a database in association with the viewer's personal information PD for each individual identifier ID2. It is assumed that a predetermined initial value that is not recognized as an identifier is set in the database of the identifier storage unit 14 until the individual identifier ID2 is registered by the individual identifier registration unit 10.
  • the common message generation means 15 generates a message (common message) to be transmitted in common to the digital broadcast receiving device 5A.
  • the common message generation unit 15 includes a message information notification generation unit 151.
  • the message information notification generating unit 151 generates a message for transmitting the message information Msg to the digital broadcast receiving device 5A as a common message.
  • the common message generated by the message information notification generation unit 151 is output to the broadcast transmission unit 17.
  • the message information notification generation unit 151 generates a message (message information notification) having the message control information Mc as a destination and the message information Msg as contents. That is, the message information notification generation unit 151 generates a common message for the digital broadcast receiving device 5A that holds the same message control information Mc.
  • the message information notification generation unit 151 may generate a common message by inputting the message control information Mc and the message information Msg via an input unit (not shown), or according to time.
  • the message information Msg stored in the message information storage unit 11 and the message control information Mc stored in the message control information storage unit 12 may be read to generate a common message.
  • the individual message generating means 16 generates a message (individual message) to be individually transmitted to each digital broadcast receiving device 5A.
  • the individual message generating unit 16 includes a message control information notification generating unit 161.
  • the message control information notification generating unit 161 generates a message for transmitting the message control information Mc to the digital broadcast receiving device 5A as an individual message.
  • the individual message generated by the message control information notification generation unit 161 is output to the broadcast transmission unit 17.
  • the message control information notification generation unit 161 generates a message (message control information notification) having the individual identifier ID2 as the destination and the message control information Mc as the content. That is, the message control information notification generating unit 161 generates an individual message (message control information notification) for the digital broadcast receiving device 5A that holds the individual identifier ID2. By transmitting the message control information Mc to the digital broadcast receiving device 5A, the individual digital broadcast receiving devices 5A are grouped according to the value of the message control information.
  • the message control information notification generation unit 161 may generate an individual message when the message control information Mc and the individual identifier ID2 are input via an input unit (not shown).
  • a time table describing the delivery time and delivery destination of the message control information Mc may be stored in the information storage unit 12, and an individual message may be generated according to the time table.
  • the message control information notification generating unit 161 reads the predetermined message control information Mc from the message control information storage unit 12 when the individual identifier ID2 is input from the individual identifier registration unit 10, and the individual message Will be generated.
  • the message control information notification generating unit 161 receives a value (“broadcast channel contract exists (0x0001)”) indicating that a broadcast channel viewing contract has been made at the stage when the individual identifier ID2 is input as the message control information storage unit. 12 and read out an individual message.
  • the message control information notification generating unit 161 receives a notification from the message control information individual updating unit 13 to transmit new message control information Mc to the digital broadcast receiving device 5A indicated by the individual identifier ID2, An individual message is generated using the input individual identifier ID2 and message control information Mc. As a result, new message control information Mc is registered in the digital broadcast receiving apparatus 5A.
  • the individual message generation unit 16 may include individual message information notification generation unit that generates an individual message for transmitting the message information Msg to the individual identifier ID2.
  • the message information notification generating unit 151 of the common message generating unit 15 and the message control information notification generating unit 161 of the individual message generating unit 16 generate The format of each message will be described.
  • the message information notification generation unit 151 sets message destination as “message control information (Mc)” and message content as “message information (Msg)”. Generate a notification.
  • the message information notification generating unit 151 classifies the digital broadcast receiving device 5A that receives the message information Msg by the receiver type PK in addition to the message information Msg, as shown in FIG. Also good.
  • the receiver type PK indicates the type of the digital broadcast receiving device 5A. For example, as shown in FIG. 50A, "00: fixed television (liquid crystal, PDP, etc.)", “01: tuner only””02: mobile TV”, “03: mobile phone TV”, “04: personal computer TV (USB type, etc.)", “05: recording device", “06 to 99: undefined”.
  • the receiver type PK may be assigned a type for each bit. Thereby, a plurality of types can be specified at a time.
  • the receiver type PK may be input from the outside when generating the message information notification, or may be associated with the message information in the message information storage unit 11 in advance.
  • the format of such message information notification is standardized by STD-B25 of the Japan Radio Industry Association (ARIB) when the stream data distributed on the broadcast wave W is MPEG-2 TS (transport stream).
  • a data format of an EMM (Entitlement Management Message) common message may be used. That is, as shown in FIG. 53, the message information notification generating unit 151 describes the message control information Mc in the area R1 in the EMM message section header of the EMM common message section structure, and the area of the message code body of the EMM message body.
  • a common message is generated by describing message information Msg in R2.
  • the message control information notification generation unit 161 sets a message destination as “individual identifier (ID2)” and the message content as “message control information (Mc)”. Generate a control information notification.
  • the message control information notification format may be the data format of the EMM individual message standardized by STD-B25. That is, the message control information notification generation unit 161 describes the individual identifier ID2 in the identifier information area R3 of the EMM message body (1, 2,..., N) of the EMM individual message section structure as shown in FIG. An individual message is generated by describing the message control information Mc in the message code area R4 of the EMM message body (1, 2,..., N).
  • the description of the configuration of the digital broadcast transmitting apparatus 1A will be continued.
  • the broadcast transmission unit 17 uses the common message generated by the common message generation unit 15 and the individual message generated by the individual message generation unit 16 as stream data via a transmission antenna (not shown). Is transmitted to the digital broadcast receiver 5A.
  • the broadcast transmission means 17 multiplexes and transmits each message using an MPEG-2 TS (transport stream) system.
  • the broadcast transmission means 17 is similar to a general digital broadcast transmission apparatus, and includes content (broadcast program), program specific information (PSI: Program Specific Information), program arrangement information (SI). : Service (Information) etc. are multiplexed and transmitted to the digital broadcast receiving apparatus 5A.
  • the digital broadcast transmitting apparatus 1A does not need to manage a unique identifier for each receiving apparatus in advance in the broadcaster like the card number of the conventional CAS card.
  • the digital broadcast transmitting apparatus 1A can be operated by a program (message transmission program) that causes a general computer to function as each of the above-described means.
  • the digital broadcast receiving apparatus 5A includes a broadcast receiving unit 50, a common message processing unit 51, an individual message processing unit 52, a storage unit 53, a display unit 54, and an initialization unit 55.
  • FIG. 4 illustrates only an identifier for identifying the digital broadcast receiving device 5A and a configuration related to message delivery using the identifier, and relates to a function of a general digital broadcast receiving device, for example, content reception. The illustration of the configuration to be performed is omitted.
  • the broadcast receiving means 50 receives stream data transmitted by the broadcast wave W via a receiving antenna (not shown).
  • the broadcast receiving means 50 separates the common message and the individual message from the stream data transmitted from the digital broadcast transmitting apparatus 1A.
  • the separated common message is output to the common message processing unit 51, and the individual message is output to the individual message processing unit 52.
  • the common message processing means (common message receiving means) 51 analyzes a common message that is a message common to the digital broadcast receiving apparatus 5A received via the broadcast receiving means 50, and performs processing according to the message.
  • the common message processing unit 51 includes a message information notification analysis unit 511.
  • the message information notification analysis unit 511 analyzes whether the message information notification (see FIG. 49A) transmitted as a common message is a message addressed to the group including the digital broadcast receiving device 5A, and the group The message information notified by the message information notification is processed. Specifically, the message information notification analysis unit 511 determines that the message control information Mc that is the destination of the message information notification (see FIG. 49A) matches the message control information Mc stored in the storage unit 53. In addition, the message information Msg which is the content of the message information notification is output to the message display means 542.
  • the message information notification analysis unit 511 has the value of the message control information as “0x0000” as the destination.
  • the message information notification is received, the message information that is the content of the message information notification is output to the message display means 542.
  • message information notified by the message information notification for example, a message such as “This channel is not subscribed” can be displayed on the display screen.
  • the viewer can view the broadcast program without displaying the message on the display screen.
  • the message information notification analyzing unit 511 When the format of the message information notification transmitted as the common message is the format described with reference to FIG. 50, the message information notification analyzing unit 511 has the message control information Mc in which the message control information Mc is stored in the storage unit 53. And whether the receiver type PK matches the type of the digital broadcast receiving apparatus 5A. Only when both match, the message that is the content of the message information notification Information is output to the message display means 542. However, it is assumed that the type of the digital broadcast receiving apparatus 5A is stored in the storage unit 53 in advance.
  • the individual message processing means (individual message receiving means) 52 analyzes an individual message that is an individual message for each digital broadcast receiving apparatus 5A received via the broadcast receiving means 50, and performs processing according to the message. .
  • the individual message processing means 52 includes message control information notification analysis means 521.
  • the message control information notification analyzing unit 521 analyzes whether or not the message control information notification (see FIG. 49B) transmitted as the individual message is a message addressed to the digital broadcast receiving apparatus 5A. When the message is addressed to the receiving device 5A, the message control information notified by the message control information notification is processed.
  • the message control information notification analysis unit 521 determines that the individual identifier ID2 that is the destination of the message control information notification (see FIG. 49B) matches the individual identifier ID2 stored in the storage unit 53.
  • the message control information Mc which is the content of the message control information notification is written in the storage means 53.
  • the message control information notification analyzing unit 521 has the same individual identifier as the individual identifier stored in the storage unit 53, and the message control information that is the content of the individual message is “broadcast channel contract exists”. If (0x0001) ", the value" 0x0001 "is written in the message control information Mc of the storage means 53.
  • the storage means (control information storage means) 53 stores information unique to the digital broadcast receiving apparatus 5A, and is a general storage medium such as a non-volatile memory (NVRAM: Non-Volatile-Random Access Memory).
  • This storage means 53 stores at least message control information Mc and individual identifier ID2.
  • personal information PD that is information for specifying the viewer is also stored.
  • the message control information Mc is information for controlling whether or not to perform message processing for a common message, and is information that serves as a destination (group destination) for message information notification (see FIG. 49A). For example, it is 2-byte data “0x0000” to “0xFFFF”, and a predetermined initial value is set. Further, for example, when “0x0000” is “no broadcast channel contract” and “0x0001” is “broadcast channel contract” as message control information Mc, “0x0000” is set as an initial value in message control information Mc. Set it. As a result, content viewing can be restricted in the digital broadcast receiving device 5A that has not completed registration processing.
  • the message control information Mc is information managed and held for each broadcaster. Specifically, each broadcaster is identified with a unique value by the entity identification of the EMM individual message shown in FIG. As a result, the storage means 53 stores a plurality of message control information Mc for each broadcaster. Further, a plurality of message control information Mc may exist for each broadcast channel. For example, the message control information Mc can be set for each broadcast channel by defining a predetermined area of the 2-byte data of the message control information Mc as a value specific to the broadcast channel.
  • the individual identifier ID2 is an identifier for individually identifying the digital broadcast receiving device 5A. It is assumed that a unique value is set in advance for this individual identifier ID2. For example, an individual number or checksum that is a combination of a manufacturer-specific value of the receiving apparatus and a manufacturing number (management number) uniquely assigned by the manufacturer. It is assumed that the value of (CRC) is set.
  • the receiver identifier PK may be added to the individual identifier ID2 in addition to the individual number PN and the checksum CRC.
  • the receiver type PK indicates the type of the digital broadcast receiving device 5A. For example, as shown in FIG. 52A, “00: fixed television (liquid crystal, PDP, etc.)”, “01: tuner only” , “02: mobile TV”, “03: mobile phone TV”, “04: PC TV (USB type, etc.)”, “05: recording device”, “06-99: undefined”, etc. .
  • the receiver type PK may be a form in which a plurality of types are described. Further, as shown in FIG. 52B, the receiver type PK may be assigned a type for each bit. Thereby, the broadcaster side can grasp the ratio of the type of the digital broadcast receiving device 5A that has received registration in the digital broadcast transmitting device 1A.
  • the personal information PD is information for identifying the viewer, and is, for example, the viewer's name, address, and telephone number.
  • This personal information PD is information input by input means (not shown) such as a remote control device at the time of initial setting.
  • input means not shown
  • the personal information PD is stored in the storage unit 53.
  • the display means 54 displays display data on a display device (not shown) such as a liquid crystal display.
  • a display device such as a liquid crystal display.
  • the display unit 54 includes an individual identifier display unit 541 and a message display unit 542.
  • the individual identifier display unit 541 displays the individual identifier ID2 stored in the storage unit 53 as display data.
  • the individual identifier display unit 541 reads out the individual identifier ID2 from the storage unit 53 when instructed to display the initial setting screen by an input unit (not shown) such as a remote control device, for example.
  • the value of the individual identifier ID2 is displayed as text data (a character string expressed by decimal numbers) in a predetermined area.
  • the individual identifier ID2 displayed on this screen is notified to the broadcaster together with personal information such as name by the viewer by telephone, postcard, Internet, or the like.
  • the message display unit 542 displays the message information notified from the message information notification analysis unit 511 as display data.
  • the message display unit 542 displays the text data on the screen of the display device.
  • the message display unit 542 reads and displays text data (not shown) corresponding to the message number stored in the storage unit 53 in advance. It is good. For example, the message display unit 542 displays a message such as “This channel is not contracted” on the display screen as a message input from the message information notification analysis unit 511.
  • the display means 54 includes program guide display means for generating and displaying an electronic program guide from program identification information (PSI), program arrangement information (SI), etc., content reproduction means for reproducing content (broadcast program), and the like.
  • PSI program identification information
  • SI program arrangement information
  • content reproduction means for reproducing content (broadcast program)
  • the initialization unit 55 initializes the message control information Mc stored in the storage unit 53.
  • the initialization unit 55 receives message control information Mc stored in the storage unit 53 by receiving an initialization instruction from an input unit (not shown) such as a switch or an initialization instruction on an initial setting screen. Is set to the initial value. For example, when “0x0000” is “no broadcast channel contract” and “0x0001” is “broadcast channel contract” as the message control information Mc, the initialization unit 55 sets the message control information Mc to an initial value “ Set to 0x0000 ". Thus, even when the owner of the digital broadcast receiving device 5A changes, the digital broadcast receiving device 5A can be reset to the initial state.
  • the digital broadcast receiving device 5A receives a message unique to the digital broadcast receiving device 5A when the viewer notifies the broadcaster of the value of the individual identifier stored in the digital broadcast receiving device 5A in advance. It becomes possible to do. Further, a conventional IC card such as a CAS card for each receiving apparatus is not required, and the cost can be reduced.
  • the digital broadcast receiving apparatus 5A can be operated by a program (message receiving program) that causes a general computer to function as each of the means described above.
  • the digital broadcast receiving device 5A reads the individual identifier ID2 stored in the storage unit 53 by the individual identifier display unit 541 of the display unit 54 and displays it on the screen (step S10). Then, the viewer notifies the broadcaster of the value of the individual identifier ID2 displayed on the screen together with personal information PD such as a name by telephone, postcard, Internet, or the like (step S11).
  • the broadcaster acquires the individual identifier ID2 unique to the digital broadcast receiving device 5A and the personal information PD (step S12).
  • the operator of the broadcaster inputs the value of the individual identifier ID2 notified from the viewer by the input means (not shown) in the digital broadcast receiver 5A together with the personal information PD (step S13).
  • the digital broadcast transmitting apparatus 1A uses the individual identifier registration unit 10 to register the value of the individual identifier ID2 input in step S13 in the identifier database of the identifier storage unit 14 in association with the personal information PD (step S14).
  • an identifier (individual identifier ID2) unique to the digital broadcast receiver 5A is registered in the digital broadcast transmitter 1A.
  • the digital broadcast transmitting apparatus 1A uses the message control information notification generating unit 161 of the individual message generating unit 16 to specify the individual message (message control information) having the individual identifier ID2 input in step S13 as the destination and the message control information Mc as the content. Notification) is generated (step S15).
  • the message control information Mc of the message control information notification is “broadcast channel contracted (0x0001)”.
  • the digital broadcast transmitting apparatus 1A transmits the individual message (message control information notification) generated in step S15 by the broadcast transmitting means 17 to the digital broadcast receiving apparatus 5A via the broadcast wave W (step S16). .
  • the digital broadcast receiving device 5A receives the individual message via the broadcast wave W by the broadcast receiving means 50 (step S17). Then, in the digital broadcast receiving device 5A, the message control information notification of the individual message received in step S17 by the message control information notification analyzing unit 521 of the individual message processing unit 52 is a message addressed to the digital broadcast receiving device 5A. If the message is addressed to the digital broadcast receiving apparatus 5A, the message control information Mc notified by the message control information notification is written and stored in the storage means 53 (step S18). As a result, “with broadcast channel contract (0x0001)” is written as message control information Mc in the storage means 53 of the digital broadcast receiver 5A.
  • the digital broadcast transmitting apparatus 1A generates a common message for notifying message information by the message information notification generating unit 151 of the common message generating unit 15 (step S19).
  • the message information notification generation means 151 is a common message (message information notification) with the message control information of “No broadcast channel contract (0x0000)” as the destination and the message information of “This channel is not contracted”. ) Is generated.
  • the digital broadcast transmitting apparatus 1A transmits the common message (message information notification) generated in step S19 by the broadcast transmitting unit 17 to the digital broadcast receiving apparatus 5A via the broadcast wave W (step S20).
  • the digital broadcast receiving device 5A receives the common message via the broadcast wave W by the broadcast receiving means 50 (step S21). Then, the digital broadcast receiving device 5A uses the message control information Mc stored in the storage unit 53 to store the message information notification destination of the common message received in step S21 by the message information notification analysis unit 511 of the common message processing unit 51. It is analyzed whether or not the common message is a message addressed to the digital broadcast receiving apparatus 5A depending on whether or not they match.
  • the digital broadcast receiving apparatus 5A processes the message information Msg notified by the message information notification (step S22). For example, when the message control information Mc stored in the storage unit 53 is “no broadcast channel contract (0x0000)”, the message control information that is the destination of the common message is “no broadcast channel contract (0x0000)”, When the message information which is the content of the common message is the message information notification “This channel is not contracted”, the digital broadcast receiving device 5A displays “This channel is not contracted” on the screen by the message display means 542. Is displayed.
  • the message display means 542 displays “This channel is not contracted” on the screen. End the operation without In this way, the digital broadcast receiving device 5A is grouped (here, grouped based on the presence / absence of a contract) based on the message control information Mc.
  • the individual identifier display unit 541 of the display unit 54 sets the individual identifier ID2 on a screen such as a setting screen. It was a form to display.
  • the digital broadcast transmission apparatus 1A 2 is configured by adding a data broadcast data storage means 23 and a data carousel encoding means 24 to the digital broadcast transmission apparatus 1A described with reference to FIG.
  • FIG. 6 only an identifier for identifying the digital broadcast receiving device 5A 2 (FIG. 7) and a configuration related to message distribution and data broadcasting using the identifier are shown. Illustrations of functions, for example, configurations related to content distribution other than data broadcasting are omitted.
  • the configuration other than the data broadcast data storage means 23 and the data carousel encoding means 24 is the same as the configuration of the digital broadcast transmitting apparatus 1A described with reference to FIG. Omitted.
  • the data broadcast data storage means 23 stores BML (Broadcast Markup Language) data Dt which is data for data broadcast to be transmitted to the digital broadcast receiver 5A 2 (FIG. 7), and is a general storage medium such as a hard disk. It is.
  • the BML data Dt is data broadcast content (program code) used in the data broadcast encoding method defined by STD-B24 of the Radio Industries Association (ARIB), and is BML text and script data. It is composed of ECMAScript data.
  • the BML data Dt indicates that the individual identifier ID2 stored in the storage means 53 of the digital broadcast receiver 5A 2 (FIG. 7) is read and displayed on the screen in addition to the data for normal data broadcasting.
  • a program describing instructions (procedures) is added.
  • the program for displaying the individual identifier ID2 can be uniquely determined by the broadcaster regarding the display format, such as displaying the individual identifier ID2 in hexadecimal notation or in decimal notation. .
  • the BML data Dt may be a program that refers to the message control information Mc stored in the storage unit 53 of the digital broadcast receiving device 5A 2 (FIG. 7) and switches the screen displayed in the data broadcast.
  • the message control information Mc stored in the storage means 53 is “No broadcast channel contract (0x0000)”, “Channel is not contracted” on the data broadcast screen. Can be displayed.
  • the data carousel encoding means 24 encodes BML data Dt (BML text, ECMAScript data) into section data (packet data) that can be transmitted by carousel transmission that is repeated transmission in a broadcast wave.
  • BML data Dt BML text, ECMAScript data
  • section data packet data
  • the data carousel encoding means 24 generates the BML data Dt as a packet of a DSM-CC (Digital Storage Media Command and Control) data carousel defined by ARIB STD-B24. That is, the data carousel encoding unit 24 divides the BML data Dt into a DDB (Download Data Block) divided into blocks and a DII (Download Info Indication) indicating the data configuration.
  • the packet data generated in this way is transmitted to the digital broadcast receiving device 5A 2 (FIG. 7) as a data broadcast via the broadcast transmitting means 17.
  • the digital broadcast receiving apparatus 5A 2 includes a broadcast receiving unit 50, a common message processor 51, the individual message processing unit 52, a storage unit 53, a display unit 54E, the initializing means 55, the data carousel decoding Means 61.
  • the message delivery using identifier and the identifier for identifying the digital broadcast receiver 5A 2 illustrates only the structure associated with the data broadcasting, the general functions of the digital broadcast receiving apparatus, for example, The configuration related to content reception other than data broadcasting is not shown.
  • the broadcast receiving means 50 separates DII and DDB from the stream data transmitted by the broadcast wave W and outputs them to the data carousel decoding means 61.
  • the data carousel decoding means 61 decodes the section data (DII, DDB) received via the broadcast receiving means 50.
  • the decrypted data is output to the display means 54E as BML data (BML text, ECMAScript data).
  • the display means 54E displays display data on a display device (not shown) such as a liquid crystal display.
  • the display unit 54E includes an individual identifier display unit 541, a message display unit 542, and a BML decryption unit 544.
  • the configuration other than the BML decoding unit 544 is the same as the configuration of the digital broadcast receiving apparatus 5A described with reference to FIG.
  • the BML decoding unit 544 visualizes (renders) the BML data that is the content of the data broadcast decoded by the data carousel decoding unit 61. That is, the BML decryption unit 544 is a browser that analyzes BML text and ECMAScript data that are BML data and displays them on the screen.
  • the BML decoding unit 544 reads the individual identifier ID2 from the storage unit 53 and displays it on the screen when an instruction (procedure) for displaying the individual identifier ID2 is described in the BML data.
  • the BML data is a program that displays the individual identifier ID2 in hexadecimal
  • the individual identifier ID2 is displayed in hexadecimal on the screen
  • if it is a program that displays decimal the individual identifier is displayed in decimal on the screen.
  • ID2 is displayed.
  • the screen display form of the individual identifier ID2 is shared by all digital broadcast receiving apparatuses by data broadcasting.
  • the individual identifier ID2 is displayed by the BML decoding unit 544 from the data broadcasting screen or the individual identifier ID2 is displayed by the individual identifier display unit 541 from the setting screen unique to the receiving apparatus is freely determined by the viewer. It is a choice and either one can be used. For example, when the broadcaster inquires the viewer about the individual identifier ID2, it can be said that it is preferable that the viewer selects the display based on the data broadcast in which the display form is shared by all the digital broadcast receiving apparatuses.
  • the BML decoding unit 544 refers to the value of the message control information Mc in the storage unit 53, and Switch.
  • broadcasters can by contract viewers to change the presentation contents of the data broadcast in a digital broadcast receiving apparatus 5A 2.
  • the operation of the digital broadcast system according to the modification of the first embodiment is basically the same as the operation described in FIG.
  • the digital broadcast receiving apparatus 5A is, at step S10 in FIG. 5 by individual identifier display means 541, while displaying the individual identifier ID2 in the setting screen, the digital broadcast receiving apparatus 5A 2, depending BML decoding means 544, The difference is that a function for displaying the individual identifier ID2 is added to the data broadcasting screen. That is, the digital broadcast transmission device 1A 2 (FIG. 6) transmits BML data Dt for displaying the individual identifier ID2 and the like as a data broadcast by the data carousel encoding means 24 before step S10 in FIG.
  • the digital broadcast receiving apparatus 5A 2 decodes data (DII, DDB) transmitted by carousel transmission into BML data Dt by the data carousel decoding means 61, and stores the storage means 53 by the BML decoding means 544.
  • the individual identifier ID2 is read out from the screen and displayed on the screen (step S10). The subsequent operation, for the same operation as the digital broadcast system S A described in FIG. 5, the description thereof is omitted.
  • the second modification a function of distributing a plurality of messages at the same time and switching and receiving the messages on the receiving device side is added.
  • the plurality of message information are different messages for each type of conditional access system on the receiving device side, for example.
  • the system configuration of the second modification the digital broadcasting transmission apparatus 1A 3 (FIG. 8) of the digital broadcasting system S A digital broadcast transmitting apparatus 1A and a digital broadcast receiving apparatus 5A of that shown in FIG. 1, described later, respectively and a digital The configuration is replaced with the broadcast receiving device 5A 3 (FIG. 9).
  • the digital broadcast transmitting apparatus 1A 3 includes a plurality of configurations (message generating means 70) for generating a common message and individual messages in the digital broadcast transmitting apparatus 1A described with reference to FIG. 3, and each message generating means 70 is configured to include CAT generation means 71 for adding information for identifying message information generated by 70.
  • messages generating means 70 for generating a common message and individual messages in the digital broadcast transmitting apparatus 1A described with reference to FIG. 3
  • each message generating means 70 is configured to include CAT generation means 71 for adding information for identifying message information generated by 70.
  • the message generation means 70 has a plurality of configurations (70 1 ,..., 70 n ) for generating common messages and individual messages.
  • the number of the message generation means 70 is not particularly limited, but it is sufficient that the number of messages to be transmitted at least simultaneously.
  • FIG. 8 only an identifier for identifying the digital broadcast receiving device 5A 3 (FIG. 9) and a configuration related to message delivery using the identifier are illustrated, and functions of a general digital broadcast transmitting device, for example, The configuration related to content distribution including data broadcasting is not shown.
  • the message generating means 70 is configured to generate a message so that a plurality of messages can be generated at one time (here, the individual identifier registering means 10, the message information storing means 11, the message control information storing means 12, the message A plurality of control information individual update means 13, identifier storage means 14, common message generation means 15, and individual message generation means 16) are provided.
  • Each means constituting the message generating means 70 is basically the same as the structure of the digital broadcast transmitting apparatus 1A already described with reference to FIG. However, the common message generating means 15A (15) or individual message generating means 16A (16) via an input means (not shown) from the outside, the message generating means 70 1, ..., a message is 70 n generates ( The packet identification (PID) of TS (transport stream), which is information for identifying the (EMM message), is input and notified to the broadcast transmission means 17A (17).
  • PID packet identification
  • TS transport stream
  • the broadcast transmitting means 17A (17) is basically the same as the digital broadcast transmitting apparatus 1A described with reference to FIG. 3, but the CAT generated by the CAT generating means 71 described later is generated using the MPEG-2 TS system. Multiplex and transmit.
  • the broadcast transmission unit 17A transmits a message (EMM message) generated by each message generation unit 70 1 ,..., 70 n as TS packet data to which the notified PID is added.
  • EMM message a message generated by each message generation unit 70 1 ,..., 70 n as TS packet data to which the notified PID is added.
  • the CAT generation means (message identification table generation means) 71 generates a table describing information for identifying a message.
  • This CAT generation means 71 is a reception method identification that is an identifier stored in advance on the receiving apparatus side for receiving a limited message from a plurality of messages, and a packet for transmitting a common message and individual messages.
  • a plurality of packet identifiers that are identifiers are input from the outside, and for each conditional access system identification, a CA service descriptor (service descriptor) indicating that message transmission is performed including the conditional access system identification, and conditional access
  • a message identification table including a plurality of conditional access system descriptors in which system identifications and packet identifiers are associated is generated.
  • This message identification table can be in a CAT (Conditional Access Table) data format standardized by ARIB STD-B10.
  • the CAT generated by the CAT generating means 71 includes a section header including a table identification for identifying the table, a descriptor area in which various descriptors are arranged, a CRC ( Checksum).
  • a descriptor area In this descriptor area, a plurality of CA service descriptors generated by the CA service descriptor generation unit 711, which will be described later, and conditional access method descriptors generated by the conditional access method descriptor generation unit 712 are arranged. .
  • the CAT generation means 71 includes a plurality of CA service descriptor generation means 711 and conditional access system descriptor generation means 712, respectively.
  • the number of the means (711, 712) is not particularly limited, but at least the number of messages to be transmitted at the same time is sufficient.
  • the CA service descriptor generation means 711 generates a descriptor describing information for specifying a business entity that is delivering a message (message service).
  • the CA service descriptor generation unit 711 generates a CA service descriptor to be arranged in the CAT shown in FIG.
  • this CA service descriptor includes a descriptor tag, a descriptor length, a conditional access system identification, an entity identification, a message control, and an extended area. Consists of data.
  • “Business entity identification” is a unique code for identifying the business entity that implements the message service. This code is assumed to be known information in advance in each CA service descriptor generation means 711 1 ,..., 711 n .
  • “Limited reception method identification” is an identifier (CA System id) for identifying the type of the limited reception method on the receiving device side. This identifier is input from the outside via an input means (not shown). The contents of the other CA service descriptors are the same as the contents of a general CA service identifier, and thus the description thereof is omitted.
  • the CA service descriptor generation unit 711 generates the CA service descriptor as shown in FIG. 55B, and thus the message service is implemented in the business entity on the receiving device side. Can be recognized. Further, the CA service descriptor generation unit 711 sets the conditional access method identifier (CA System id) in the CA service identifier, thereby generating the conditional access method descriptor generated by the conditional access method descriptor generation unit 712 described later. Can be associated.
  • CA System id conditional access method identifier
  • the conditional access system descriptor generating means 712 generates a descriptor describing information for identifying a message to be received by the receiving apparatus among a plurality of messages.
  • the conditional access method descriptor generating means 712 generates a conditional access method descriptor to be placed in the CAT shown in FIG.
  • this conditional access system descriptor is composed of data having a descriptor tag, descriptor length, conditional access system identification, conditional access PID, and extension area as items. Is done.
  • “Limited reception method identification” is the same identifier (CA System id) as the conditional access method identification described with reference to FIG. This identifier is input from the outside via an input means (not shown). With this identifier, the conditional access system descriptor and the CA service identifier are associated with each other.
  • the “restricted reception PID” is an identifier for identifying and receiving a message on the receiving device side.
  • conditional access PID is a packet identifier (PID) when the EMM generated by the common message generating unit 15 or the individual message generating unit 16 is distributed by MPEG-2 TS.
  • PID packet identifier
  • This identifier is input from the outside via an input means (not shown). With this identifier, the receiving apparatus can identify which PID is used to receive the EMM.
  • the CAT generation means 71 generates a CAT including a plurality of CA service descriptors and conditional access system descriptors, and outputs the generated CAT to the broadcast transmission means 17A (17).
  • the digital broadcast transmission apparatus 1A 3 can transmit multiple simultaneously a different message different PID.
  • the digital broadcast receiving apparatus 5A 3 includes a broadcast reception unit 50A (50), and a common message processor 51, the individual message processing unit 52, a storage unit 53, a display unit 54, an initialization unit 55, Storage means 62 and CAT processing means 63 are provided.
  • FIG 9 shows only relevant configuration message delivery using an identifier and the identifier for identifying the digital broadcast receiving apparatus 5A 3, the general functions of the digital broadcast receiving apparatus, for example, a data broadcast
  • the illustration of the configuration related to content reception is omitted.
  • the configuration other than the broadcast receiving unit 50A, the storage unit 62, and the CAT processing unit 63 is the same as the configuration of the digital broadcast receiving device 5A described with reference to FIG. To do.
  • the broadcast receiving means 50A is basically the same as the broadcast receiving means 50 described in FIG. 4, but differs in the following functions.
  • the broadcast receiving means 50A extracts CAT from the stream data transmitted from the digital broadcast transmitting apparatus 1A 3 (see FIG. 8), and outputs the extracted CAT to the CAT processing means 63.
  • the broadcast receiving means 50A can extract the CAT from the stream data by searching for the PID of the TS predetermined for the CAT.
  • the broadcast receiving means 50A separates and extracts the common message and the individual message corresponding to the PID from the received stream data based on the EMM PID notified from the CAT processing means 63 described later.
  • the extracted common message is output to the common message processing unit 51, and the individual message is output to the individual message processing unit 52.
  • Storing means (limited access system identification memory means) 62 a message (common message, individual message) used for storing an identifier for identifying whether the message to the digital broadcast receiving apparatus 5A 3
  • a general storage medium such as a ROM.
  • the storage means 62 stores the identifier in advance.
  • a conditional access system identification (CA System id) that is an identifier for identifying the type of the conditional access system is used.
  • CAT processing unit (message identification table receiving means) 63 analyzes the CAT, and acquires the packet ID of the message to the digital broadcast receiving apparatus 5A 3 (PID). That is, the CAT processing unit 63 includes a service descriptor indicating that message transmission is performed including the conditional access method identification, and a conditional access method descriptor in which the conditional access method identification and the packet identifier are associated with each other. A plurality of CATs (message identification tables) are received via the broadcast receiving means 50A.
  • the CAT processing means 63 includes CA service descriptor analysis means 631 and conditional access system descriptor analysis means 632.
  • the CA service descriptor analysis unit (service descriptor analysis unit) 631 analyzes the CA service descriptor (service descriptor) described in the CAT and determines whether or not the message service is being implemented. Specifically, the CA service descriptor analysis unit 631 uses the CA service descriptor (see FIG. 55B) having the conditional access system identification (CA System id) stored in the storage unit 62 as the CAT (see FIG. If the CA service descriptor having the same conditional access system identification exists, it is determined that the message service is being implemented. Here, if it is determined that the message service is being implemented, this is notified to the conditional access method descriptor analysis means 632.
  • CA System id conditional access system identification
  • the conditional access system descriptor analyzing means 632 analyzes the conditional access system descriptor described in the CAT, and extracts an identifier (PID) of a packet transmitting a message (common message, individual message). . Specifically, the conditional access method descriptor analyzing unit 632 receives the notification that the message service is being performed from the CA service descriptor analyzing unit 631, and then stores the conditional access method stored in the storage unit 62. A conditional access system descriptor having an identification (CA ⁇ System ⁇ id) (see FIG. 55C) is searched in the CAT (see FIG. 55A) and has the same conditional access system identifier. The EMM PID (limited reception PID) is extracted. The PID extracted here is output to the broadcast receiving means 50A.
  • Digital broadcasting system S B a plurality of broadcasters A, B, digital broadcast transmitting apparatus 1B (1) having ... is, 1B (1), ... and the digital broadcast receiving apparatus 5B installed in each home such as (5 ), 5B (5),..., And is a system in which content (broadcast program) transmitted by digital broadcast from the digital broadcast transmission device 1B is received by the digital broadcast reception device 5B and viewed by the viewer.
  • the digital broadcasting system S B is a digital broadcast receiving apparatus 5B, 5B, ... in advance unique identifier (individual identifier ID2 [ID2 1, ID2 2, ...]) has a digital broadcast receiving apparatus 5B is an individual identifier ID2 Regarding the point that it is possible to transmit the unique message information addressed to the digital broadcast receiving device 5B via the broadcast wave W from the digital broadcast transmitting device 1B by notifying the digital broadcast transmitting device 1B. It is the same as S A (see FIG. 1). However, the digital broadcasting system S B from the digital broadcast receiving apparatus 5B, when notifying the individual identifier ID2 in the digital broadcasting transmitting apparatus 1B, telephone line, differences point to notify through the network N using the Internet line or the like is doing.
  • the digital broadcast transmitting apparatus 1B includes an individual identifier registration unit 10B, a message information storage unit 11, a message control information storage unit 12, a message control information individual update unit 13, an identifier storage unit 14, and a common message generation. Means 15, individual message generation means 16, broadcast transmission means 17, and communication transmission / reception means 18 are provided.
  • FIG. 11 illustrates only an identifier for identifying the digital broadcast receiving device 5B and a configuration related to message delivery using the identifier, and relates to a function of a general digital broadcast transmission device, for example, content delivery. The illustration of the configuration to be performed is omitted.
  • the individual identifier registration unit 10B receives the individual identifier ID2 that is an identifier unique to the digital broadcast receiving device 5B and the personal information PD of the viewer via the communication transmission / reception unit 18, and stores the identifier in the storage unit (identifier storage unit 14). Register as a database. Further, the individual identifier registration unit 10B outputs the received individual identifier ID2 to the message control information notification generation unit 161 of the individual message generation unit 16.
  • the communication transmitting / receiving means 18 transmits / receives communication data to / from the digital broadcast receiving device 5B via the network N, and is, for example, a communication control board.
  • the communication transmitting / receiving means 18 receives the individual identifier ID2 and the personal information PD as communication data from the individual digital broadcast receiving apparatus 5B, and receives the received individual identifier ID2 and personal information PD in the individual identifier registration means 10B. Output.
  • the digital broadcast transmitting apparatus 1B does not need to manage a unique identifier for each receiving apparatus in advance in the broadcasting company like the card number of the conventional CAS card.
  • the digital broadcast transmitting apparatus 1B can automate the identifier registration process without registering an identifier (individual identifier ID2) without human intervention such as an operator.
  • the individual identifier registering means 10B like the individual identifier registering means 10 (see FIG. 3), the individual identifier ID2 and the personal information PD notified from the viewer by telephone, postcard, Internet, etc. May be further provided with a function of writing and storing (registering) the individual identifier ID2 and the personal information PD in the identifier storage means 14 by inputting them through an input means (not shown) such as a keyboard.
  • the digital broadcast transmission device 1B can perform registration processing by the operator for the digital broadcast reception device 5 that does not have a communication function.
  • the digital broadcast transmitting apparatus 1B can be operated by a program (message transmission program) that causes a general computer to function as each of the above-described means.
  • the digital broadcast transmission device 1B is configured to transmit one message to the digital broadcast reception device 5B (FIG. 12).
  • the digital broadcast transmission apparatus 1B like the digital broadcast transmission apparatus 1A 3 described in FIG. 8, a plurality configure (message generating means) for generating a common message and individual messages,
  • each message generator What is necessary is just to comprise and comprise the CAT production
  • the message generating means includes an individual identifier registration means 10B, a message information storage means 11, a message control information storage means 12, a message control information individual update means 13, an identifier storage means 14, and a common message generation.
  • the means 15 and the individual message generation means 16 may be configured.
  • the common message generation unit 15 and the individual message generation unit 16 identify messages (EMM messages) generated by each message generation unit (not shown) via an input unit (not shown) from the outside.
  • the packet identification (PID) of the TS which is information for this, is input and notified to the broadcast transmission means 17.
  • the broadcast transmitting unit 17 multiplexes the CAT generated by the CAT generating unit 71 (FIG. 8) using the MPEG-2 TS system.
  • the digital broadcast transmitting apparatus 1B can simultaneously transmit a plurality of different messages.
  • the digital broadcast receiving device 5B includes a broadcast receiving unit 50, a common message processing unit 51, an individual message processing unit 52, a storage unit 53, a display unit 54B, an initialization unit 55, and an individual identifier registration request. Means 56 and communication transmitting / receiving means 57 are provided. Note that FIG. 12 illustrates only an identifier for identifying the digital broadcast receiving device 5B and a configuration related to message delivery using the identifier, and relates to a function of a general digital broadcast receiving device, for example, content reception. The illustration of the configuration to be performed is omitted.
  • the configuration other than the display unit 54B, the individual identifier registration request unit 56, and the communication transmission / reception unit 57 is the same as the configuration of the digital broadcast receiving apparatus 5A described with reference to FIG. Is omitted.
  • the display means 54B displays display data on a display device (not shown) such as a liquid crystal display.
  • a display device such as a liquid crystal display.
  • the display unit 54B is configured by omitting the individual identifier display unit 541 from the display unit 54 described in FIG.
  • the individual identifier registration request means 56 sends a request (identifier registration request) for registering the individual identifier ID2 and the personal information PD stored in the storage means 53 via the communication transmitting / receiving means 57 to the digital broadcast transmitting apparatus 1B.
  • the individual identifier registration request unit 56 reads the individual identifier ID2 and the personal information PD from the storage unit 53 at the time of initial setting such as channel setting, for example, generates an identifier registration request, and transmits it to the digital broadcast transmission apparatus 1B. By registering this individual identifier ID2 in the digital broadcast transmitting apparatus 1B, the digital broadcast transmitting apparatus 1B can transmit a message addressed to the individual identifier ID2 to the digital broadcast receiving apparatus 5B.
  • the personal information PD does not necessarily need to be memorize
  • FIG. If the environment is connected to the network N, the personal information PD is input via an input means (not shown) such as a keyboard and stored in the storage means 53 without being stored in the storage means 53. It is good also as notifying a person.
  • the communication transmitting / receiving unit 57 transmits / receives communication data to / from the digital broadcast transmitting apparatus 1B via the network N, and is, for example, a communication control board.
  • the communication transmitting / receiving unit 57 transmits the identifier registration request input from the individual identifier registration requesting unit 56 to the digital broadcast transmitting apparatus 1B.
  • the digital broadcast receiving device 5B receives the message unique to the digital broadcast receiving device 5B by registering the value of the individual identifier stored in the digital broadcast receiving device 5B in advance in the digital broadcast transmitting device 1B. It becomes possible. Further, a conventional CAS card for each receiving apparatus is not necessary, and the cost can be reduced.
  • the digital broadcast receiving device 5B may be configured such that the display unit 54B includes the individual identifier display unit 541 similarly to the display unit 54 (see FIG. 4). Thus, when the communication environment is not prepared at the installation location of the digital broadcast receiving device 5B, the viewer can confirm the individual identifier ID2 on the screen and notify the broadcaster. Further, the digital broadcast receiving apparatus 5B can be operated by a program (message receiving program) that causes a general computer to function as each of the means described above.
  • the digital broadcast receiving apparatus 5B is configured to receive one message from the digital broadcast transmitting apparatus 1B (FIG. 8). However, as described with reference to FIG. It may be a form in which a message to 5B is extracted and received.
  • the digital broadcast receiving apparatus 5B like the digital broadcast receiving apparatus 5A 3 described in FIG. 9, broadcast and storage means 62, further comprising a CAT processing unit 63 has been described a broadcast receiving unit 50 in FIG. 9 What is necessary is just to comprise by replacing with the receiving means 50A. Accordingly, the digital broadcast receiving device 5B can extract and receive a message to itself from different messages.
  • the digital broadcast receiving apparatus 5B 2 includes the broadcast receiving means 50, the common message processing means 51, the individual message processing means 52B, the storage means 53B, the display means 54B, the initialization means 55, and the individual identifier registration.
  • Requesting means 56B and communication transmitting / receiving means 57 are provided.
  • Digital broadcast receiving apparatus 5B (see FIG. 12), as a unique identifier, is used to separate identifier ID2 by the manufacturer or the like is preset in the storage unit 53, the digital broadcast receiving apparatus 5B 2 is a unique identifier, a communication transceiver The difference is that the unique identifier of the means 57 is used.
  • the configuration other than the individual message processing unit 52B, the storage unit 53B, and the individual identifier registration request unit 56B is the same as the configuration of the digital broadcast receiving device 5B described with reference to FIG. To do.
  • Individual message processor (individual message receiving means) 52B analyzes the individual message is a separate message for each digital broadcast receiving apparatus 5B 2 received via the broadcast receiving unit 50, and performs processing corresponding to the message is there.
  • the individual message processing means 52B includes message control information notification analysis means 521B.
  • the message control information notification analysis unit 521B has the same function as the message control information notification analysis unit 521 described with reference to FIG. However, the message control information notification analyzing section 521B is transmitted message control information notified as individual messages (see FIG. 49 (b)) is, when analyzing whether the message of the digital broadcast receiving apparatus 5B 2 destined The difference is that, instead of using the individual identifier stored in the storage means 53, individual information preset in the communication transmitting / receiving means 57 is used.
  • the individual information set in the communication transmitting / receiving means 57 is, for example, a MAC address of a network interface card (NIC). This MAC address is given a unique address for each NIC. Accordingly, the digital broadcast receiving apparatus 5B 2 is a unique identifier (individual identifier ID2), and the use of MAC address.
  • NIC network interface card
  • the storage unit 53B is the same as the storage unit 53 described with reference to FIG. 4 except that the individual identifier ID2 is not stored.
  • the individual identifier registration requesting unit 56B issues a request (identifier registration request) to register the individual information (individual identifier ID2) set in the communication transmitting / receiving unit 57 and the personal information PD stored in the storage unit 53B. Except for transmitting to the digital broadcast transmitting apparatus 1B via the communication transmitting / receiving means 57, it is the same as the individual identifier registration requesting means 56 described in FIG.
  • the digital broadcast receiving device 5B 2 registers the individual information (MAC address) set in advance in the communication transmitting / receiving means 57 of the digital broadcast receiving device 5B 2 as an individual identifier in the digital broadcast transmitting device 1B. It is possible to receive the digital broadcast receiving apparatus 5B 2-specific messages. Further, a conventional CAS card for each receiving apparatus is not necessary, and the cost can be reduced. Further, it is possible to save the trouble of the manufacturer writing the unique identifier for each receiving device in the storage means 53B.
  • the digital broadcast receiving apparatus 5B 2 can be operated by a program that causes a general computer as each means described above (message receiving program).
  • the digital broadcast receiving apparatus 5B reads the individual identifier ID2 and the personal information PD stored in the storage unit 53 by the individual identifier registration request unit 56 (step S10B). Then, the digital broadcast receiving device 5B transmits the individual identifier ID2 and the personal information PD read in step S10B to the digital broadcast transmitting device 1B by the communication transmitting / receiving means 57 (step S11B).
  • the digital broadcast transmitting apparatus 1B receives the individual identifier ID2 and the personal information PD transmitted in step S11B by the communication transmitting / receiving means 18 (step S12B). Then, the digital broadcast transmitting apparatus 1B registers the value of the individual identifier ID2 received in step S12B with the individual identifier registration unit 10B in the identifier database of the identifier storage unit 14 in association with the personal information PD (step S14). Through the operations from step S10B to S14, an identifier (individual identifier ID2) unique to the digital broadcast receiving device 5B is registered in the digital broadcast transmitting device 1B. Note that the digital broadcast receiving device 5B 2 described with reference to FIG. 13 differs only in that the individual information (MAC address) of the communication transmitting / receiving means 57 is read as the individual identifier ID2 in step S10B, and the subsequent operations are the same.
  • Digital broadcasting system S C has a plurality of broadcasters A, B, ... has a digital broadcast transmitting apparatus 1C (1), 1C (1 ), ... and the digital broadcast receiving apparatus 5C installed in the home or the like (5 , 5C (5),... Is a system in which content (broadcast program) transmitted by digital broadcast from the digital broadcast transmission device 1C is received by the digital broadcast reception device 5C and viewed by the viewer.
  • the broadcast wave W may be wireless or wired, such as terrestrial digital broadcast, satellite broadcast, and cable broadcast.
  • the digital broadcasting system S C is an individual identifier generated by the digital broadcast receiving apparatus 5C, by notifying the digital broadcasting transmission apparatus 1C, the addressed digital broadcast receiving apparatus 5C via the broadcast wave W from the digital broadcast transmission apparatus 1C It is possible to send individual message information.
  • the digital broadcast transmission device 1C transmits content to the digital broadcast reception device 5C via the broadcast wave W. Further, the digital broadcast transmitting apparatus 1C has a function of performing duplication confirmation on the individual identifier notified from the digital broadcast receiving apparatus 5C, and transmitting message information addressed to the digital broadcast receiving apparatus 5C using an individual identifier that does not overlap. Furthermore, the digital broadcast transmitting device 1C has a function of grouping individual digital broadcast receiving devices 5C and transmitting message information to a specific group.
  • the digital broadcast receiving device 5C receives content via the broadcast wave W.
  • the digital broadcast receiving device 5C has a function of notifying the digital broadcast transmitting device 1C of the individual identifier generated by itself and acquiring message information addressed to the individual identifier transmitted from the digital broadcast transmitting device 1C via the broadcast wave W.
  • the individual identifier generated by the digital broadcast receiving device 5C is displayed on the display screen, and the viewer notifies the broadcaster of the displayed individual identifier ID2 by telephone, postcard, Internet, or the like (step SC1). ). Then, the broadcaster registers the individual identifier ID2 in the digital broadcast transmission device 1C. Then, in the subsequent operations, the digital broadcast transmission device 1C specifies the individual digital broadcast reception device 5C with the individual identifier ID2, and transmits an individual message (individual message).
  • the broadcaster wants to manage the digital broadcast receiving device 5C by dividing it into a predetermined group
  • the digital broadcast receiving device 5C is to be grouped according to the presence / absence of a broadcast channel contract, viewing area, etc.
  • 1C is an individual message whose destination is the individual identifier ID2, and transmits message control information for specifying the type of group to the digital broadcast receiving apparatus 5C (step SC2).
  • the digital broadcast transmitting apparatus 1C describes the message control information as a destination in the common message that is a message common to all the digital broadcast receiving apparatuses 5C, and transmits the message information (step SC3).
  • the digital broadcast receiving device 5C grouped with the message control information receives the message information.
  • the digital broadcasting system S C to notify the individual identifier ID2 of the digital broadcast receiving apparatus 5C is generated to the broadcasting provider side, individually IC card such as a conventional CAS card There is no need to distribute to each receiving device, and there is no need to manage the identifier (card number) of the IC card.
  • individually IC card such as a conventional CAS card
  • the digital broadcast transmitting apparatus 1C includes a message information storage unit 11, a message control information storage unit 12, a message control information individual update unit 13, an identifier storage unit 14, a common message generation unit 15, and an individual message generation.
  • Means 16, broadcast transmission means 17, and identifier registration means 19 are provided.
  • the configuration other than the identifier registration unit 19 is the same as the configuration of the digital broadcast transmitting apparatus 1A described with reference to FIG. 3, the same reference numerals are given and description thereof is omitted.
  • the identifier registration means 19 inputs an individual identifier ID2 that is an identifier generated by the digital broadcast receiving device 5C and the personal information PD of the viewer from the outside, and registers them in the storage means (identifier storage means 14) as an identifier database. It is.
  • the identifier registration unit 19 includes an individual identifier duplication determination unit 191 and an individual identifier registration unit 192.
  • the individual identifier duplication determination unit 191 determines whether or not the individual identifier ID2 input from the outside is registered (stored) in the identifier storage unit 14. When the individual identifier ID2 is already registered in the identifier storage unit 14, the individual identifier duplication determination unit 191 displays that fact on a display device (not shown). At this time, the operator of the digital broadcast transmitting apparatus 1C notifies the viewer that the individual identifier ID is duplicated by telephone or the like, and has the digital broadcast receiving apparatus 5C generate the individual identifier again. And On the other hand, if the individual identifier ID2 is not yet registered in the identifier storage unit 14, a registration instruction is notified to the individual identifier registration unit 192.
  • the individual identifier registration unit 192 registers (stores) the individual identifier ID2 and the viewer's personal information PD in the identifier storage unit 14.
  • the individual identifier registration unit 192 registers the individual identifier ID2 in the identifier storage unit 14 in association with the personal information PD when the individual identifier duplication determination unit 191 instructs to register the individual identifier ID2.
  • the individual identifier registration unit 192 outputs the input individual identifier ID2 to the message control information notification generation unit 161 of the individual message generation unit 16.
  • the output to the message control information notification generating means 161 is performed in order to receive registration from the digital broadcast receiving apparatus 5C and distribute an individual message notifying message control information when the individual identifier ID2 is input. Is.
  • the digital broadcast transmitting apparatus 1C does not need to manage a unique identifier for each receiving apparatus in advance in the broadcasting company, unlike the card number of the conventional CAS card.
  • the digital broadcast transmission apparatus 1C can be operated by a program (message transmission program) that causes a general computer to function as each of the above-described means.
  • the digital broadcast transmitting apparatus 1C is configured to transmit one message to the digital broadcast receiving apparatus 5C (FIG. 18).
  • the digital broadcast transmission apparatus 1C like the digital broadcast transmission apparatus 1A 3 described in FIG. 8, a plurality configure (message generating means) for generating a common message and individual messages,
  • each message generator What is necessary is just to comprise and comprise the CAT production
  • the message generation means includes message information storage means 11, message control information storage means 12, message control information individual update means 13, identifier storage means 14, common message generation means 15, and individual message generation.
  • the means 16 and the identifier registration means 19 may be configured.
  • the common message generation unit 15 and the individual message generation unit 16 identify messages (EMM messages) generated by each message generation unit (not shown) via an input unit (not shown) from the outside.
  • the packet identification (PID) of the TS which is information for this, is input and notified to the broadcast transmission means 17.
  • the broadcast transmitting unit 17 multiplexes the CAT generated by the CAT generating unit 71 (FIG. 8) using the MPEG-2 TS system. Thereby, the digital broadcast transmitting apparatus 1C can transmit a plurality of different messages simultaneously.
  • the digital broadcast receiving apparatus 5C includes a broadcast receiving unit 50, a common message processing unit 51, an individual message processing unit 52, a storage unit 53C, a display unit 54, an initialization unit 55, and an individual identifier resetting. Means 58, timing means 59, and individual identifier generation means 60 are provided.
  • FIG. 18 illustrates only an identifier for identifying the digital broadcast receiving device 5C and a configuration related to message delivery using the identifier, and relates to a function of a general digital broadcast receiving device, for example, content reception. The illustration of the configuration to be performed is omitted.
  • the configuration other than the storage unit 53C, the individual identifier resetting unit 58, the timing unit 59, and the individual identifier generation unit 60 is the same as the configuration of the digital broadcast receiving apparatus 5A described with reference to FIG. The description will be omitted.
  • the storage unit 53C stores information unique to the digital broadcast receiving device 5C, and is a general storage medium such as a nonvolatile memory (NVRAM).
  • the storage means 53C stores message control information Mc, individual identifier ID2, personal information PD, and receiver information Ti.
  • the message control information Mc and the personal information PD are the same as those described in the storage means 53 of the digital broadcast receiving apparatus 5A in FIG.
  • the individual identifier ID2 is an identifier for identifying the digital broadcast receiving device 5C. This individual identifier ID2 is generated and written by the individual identifier generating means 60. The individual identifier ID2 is set to an initial value that is not used as an identifier in advance. For example, the value “0” is set as the initial value of each identification value. As a result, it is possible to prevent a message that is not a message addressed to the digital broadcast receiving device 5C from being erroneously received before the initial setting.
  • the receiver information Ti is unique information such as the manufacturer and model of the digital broadcast receiving device 5C.
  • the receiver information Ti is data in which character codes such as manufacturer names and model names (model numbers) are digitized. This receiver information Ti is registered in advance by the manufacturer of the digital broadcast receiving apparatus 5C.
  • the individual identifier resetting means 58 inputs an instruction for resetting the individual identifier ID2 from the outside.
  • the individual identifier resetting unit 58 is newly instructed to the individual identifier generating unit 60 by receiving a resetting instruction from an input unit (not shown) such as a switch, or resetting on the resetting screen.
  • An instruction to generate a unique individual identifier (individual identifier regeneration instruction) is notified.
  • the individual identifier ID2 since the individual identifier ID2 is generated by the individual identifier generation means 60 described later, the individual identifier ID2 may be duplicated in each digital broadcast receiving device 5C. Therefore, the individual identifier resetting means 58 is such that the viewer notifies the broadcaster of the individual identifier ID2 displayed on the screen by the individual identifier display means 541 by telephone or the like, and the individual identifier ID2 is duplicated. Is used when the individual identifier ID2 is set again by the viewer.
  • Time measuring means 59 is an internal clock that measures the time and holds the current time. For example, the time measuring means 59 measures year / month / day / hour / minute / second as the current time. Here, the current time measured by the time measuring means 59 is read by the individual identifier generating means 60.
  • the individual identifier generating means 60 generates an identifier (individual identifier ID2) for identifying the digital broadcast receiving device 5C based on the internal information of the digital broadcast receiving device 5C.
  • the individual identifier generation unit 60 includes a random number generation unit 601, a temporary identifier generation unit 602, and a hash function calculation unit 603.
  • the individual identifier generating means 60 generates an individual identifier using internal information such as a random number, the current time, and receiver information.
  • the random number generation means 601 generates a random number (pseudo random number).
  • the random number generation algorithm in the random number generation means 601 can use a general method, and the method is not limited to a congruent method, an M-sequence, or the like.
  • the random number generation means 601 is set to several bytes (for example, 6 bytes).
  • the random number generated by the random number generator 601 is output to the temporary identifier generator 602.
  • the temporary identifier generation means 602 generates a temporary identifier (temporary identifier ID1) for generating the individual identifier ID2.
  • the temporary identifier generating unit 602 connects the receiver information Ti stored in the storage unit 53C, the current time measured by the time measuring unit 59, and the random number generated by the random number generating unit 601.
  • a temporary identifier ID1 is generated.
  • the temporary identifier ID1 generated by the temporary identifier generation unit 602 is output to the hash function calculation unit 603.
  • the hash function calculation means 603 generates the individual identifier ID2 by calculating the hash value (digest value) of the temporary identifier ID1 generated by the temporary identifier generation means 602.
  • the hash function used in the hash function calculation means 603 is not particularly limited, but is MD5, SHA-1, or the like.
  • the hash function calculation unit 603 generates a 16-byte individual identifier ID2 when MD5 is used as a hash function, and generates a 20-byte individual identifier ID2 when SHA-1 is used.
  • the hash function calculation means 603 may add a checksum to the calculation result of the hash function to obtain the individual identifier ID2.
  • the individual identifier ID2 generated by the hash function calculation unit 603 is written and stored in the storage unit 53C.
  • the temporary identifier generation means 602 generates the temporary identifier ID1 using the receiver information Ti, which is internal information, the random number, and the current time in order to ensure the randomness of the generated individual identifier ID2.
  • the temporary identifier ID1 may be generated from at least one internal information of the receiver information Ti, a random number, and the current time.
  • the temporary identifier generating unit 602 is omitted from the configuration, and the hash function calculating unit 603 generates a hash value for the receiver information Ti, the random number, or the internal information of the current time. Just calculate.
  • the individual identifier generating means 60 is assumed to operate at the time of initial setting of the digital broadcast receiving device 5C.
  • the individual identifier generating means 60 is also operated when an instruction to generate a new individual identifier (individual identifier regeneration instruction) is notified from the individual identifier resetting means 58.
  • the individual identifier generation means 60 may generate the individual identifier ID2 in the format shown in FIG.
  • the individual identifier generating unit 60 further includes a receiver type adding unit (not shown), and the receiver type adding unit assigns the hash value, which is the calculation result of the hash function calculating unit 603, to the individual number PN.
  • the individual identifier ID2 is generated by adding the receiver type PK and further adding the checksum CRC. At this time, the receiver type PK is described in advance in the receiver information Ti of the storage unit 53C.
  • the digital broadcast receiving apparatus 5C generates the individual identifier ID2 from the random temporary identifier ID1 generated by the individual identifier generation unit 60 using the receiver information Ti, the random number, and the current time. Thereby, it is possible to suppress the possibility that the individual identifier ID2 is duplicated in each digital broadcast receiving apparatus 5C as much as possible. Further, since the digital broadcast receiving device 5C can receive a message specific to the digital broadcast receiving device 5C by the individual identifier generated by the digital broadcast receiving device 5C, a conventional CAS card or the like for each receiving device. The IC card is unnecessary, and the cost can be reduced.
  • the digital broadcast receiving apparatus 5C can be operated by a program (message receiving program) that causes a general computer to function as each of the means described above.
  • the digital broadcast receiving apparatus 5C receives one message from the digital broadcast transmitting apparatus 1C (FIG. 17). However, as described in FIG. 9, the digital broadcast receiving apparatus 5C receives a plurality of messages. It is also possible to extract and receive a message for 5C.
  • the digital broadcast receiving apparatus 5C like the digital broadcast receiving apparatus 5A 3 described in FIG. 9, broadcast and storage means 62, further comprising a CAT processing unit 63 has been described a broadcast receiving unit 50 in FIG. 9 What is necessary is just to comprise by replacing with the receiving means 50A. Accordingly, the digital broadcast receiving device 5C can extract and receive a message to itself from different messages.
  • the digital broadcast receiving device 5C generates the individual identifier ID2 by the individual identifier generation means 60 at the time of initial setting (step S10C). Specifically, the digital broadcast receiving device 5 ⁇ / b> C first generates a random number by the random number generation unit 601 of the individual identifier generation unit 60. Then, the digital broadcast receiving apparatus 5C uses the temporary identifier generating unit 602 to receive the receiver information Ti stored in the storage unit 53C, the current time measured by the time measuring unit 59, and the random number generated by the random number generating unit 601. Are combined to generate a temporary identifier ID1. Further, the digital broadcast receiving apparatus 5C generates the individual identifier ID2 by calculating the hash value of the temporary identifier ID1 by the hash function calculating unit 603.
  • the digital broadcast receiving device 5C writes and stores the individual identifier ID2 generated in step S10C in the storage unit 53C by the individual identifier generation unit 60 (hash function calculation unit 603) (step S10D).
  • step S10C displays the individual identifier ID2 generated in step S10C on the display screen by the individual identifier display unit 541 of the display unit 54 (step S10). Since the step S11 and subsequent operations are the same as the operation basically the digital broadcasting system S A described in FIG. 5, the description thereof is omitted. However, in the digital broadcasting system S C, in step S11 ⁇ 13, if the individual identifier overlap, the process returns to step S10C, again, the operation from the step of generating an individual identifier is performed.
  • the individual identifier ID2 is displayed on a screen such as a setting screen by the individual identifier display means 541 of the display means 54 so that the viewer can be notified of the individual identifier ID2 from the viewer. It was a form to display.
  • a function for displaying the individual identifier ID2 is added on the screen displayed as the data broadcast, similarly to the modified example of the first embodiment described with reference to FIGS.
  • the digital broadcasting transmission apparatus 1C 2 (FIG. 20) of the digital broadcasting system S C of the digital broadcast transmitting apparatus 1C and the digital broadcast receiving apparatus 5C, described below, respectively shown in FIGS. 15 and digital broadcast
  • the configuration is replaced with the receiving device 5C 2 (FIG. 21).
  • This digital broadcast transmission apparatus 1C 2 is configured by adding data broadcast data storage means 23 and data carousel encoding means 24 to the digital broadcast transmission apparatus 1C described with reference to FIG.
  • data broadcast data storage means 23 and a data carousel coding means 24 is a digital broadcast transmission apparatus 1A 2 same structure as described in FIG.
  • the configuration other than the data broadcast data storage unit 23 and the data carousel encoding unit 24 is the same as that of the digital broadcast transmission device 1C described with reference to FIG. Therefore, here, the same components as those of the digital broadcast transmission device 1A 2 (FIG. 6) and the digital broadcast transmission device 1C (FIG. 17) are denoted by the same reference numerals and description thereof is omitted.
  • the digital broadcast receiving apparatus 5C 2 is a digital broadcast receiving apparatus 5C described in FIG. 18, by adding data carousel decoding means 61, further, as a new display unit 54E adds the BML decoding unit 544 to the display unit 54 It is composed.
  • the configuration other than the data carousel decoding unit 61 and the BML decoding unit 544 is the same as that of the digital broadcast receiving apparatus 5C described with reference to FIG. Therefore, the same components as those of the digital broadcast receiving device 5A 2 (FIG. 7) and the digital broadcast receiving device 5C (FIG. 18) are denoted by the same reference numerals and description thereof is omitted.
  • the operation of the digital broadcast system according to the modification of the third embodiment is basically the same as the operation described in FIG.
  • the digital broadcast receiving apparatus 5C is, in step S10 in FIG. 19, the individual identifier display means 541, while displaying the individual identifier ID2 in the setting screen, the digital broadcast receiving apparatus 5C 2, depending BML decoding means 544, The difference is that a function for displaying the individual identifier ID2 is added to the data broadcasting screen.
  • the digital broadcast transmission device 1C 2 uses the data carousel encoding means 24 to display the individual identifier ID2 and the like as data broadcast after step S10D of FIG. 19 and before step S10. Dt is transmitted.
  • the digital broadcast receiver 5C 2 decodes data (DII, DDB) transmitted by carousel transmission into BML data Dt by the data carousel decoding means 61, and storage means 53C by the BML decoding means 544.
  • the individual identifier ID2 is read out from the screen and displayed on the screen (step S10).
  • the subsequent operation for the same operation as the digital broadcasting system S C described in FIG. 19, the description thereof is omitted.
  • the digital broadcast system SD includes digital broadcast transmitters 1D (1), 1D (1),... Possessed by a plurality of broadcasters A, B,..., And digital broadcast receivers 5D (5 ), 5D (5),... Is a system in which content (broadcast program) transmitted by digital broadcast from the digital broadcast transmission device 1D is received by the digital broadcast reception device 5D and viewed by the viewer.
  • This digital broadcast system SD notifies the individual identifier generated by the digital broadcast receivers 5D, 5D,... To the digital broadcast transmitter 1D, thereby receiving the digital broadcast from the digital broadcast transmitter 1D via the broadcast wave W. It is the same as the digital broadcasting system S C (see FIG. 15) that it is possible to transmit unique message information addressed to the device 5D. However, the digital broadcast system SD is different in that the digital broadcast receiving device 5D notifies the digital broadcast transmitting device 1D of the individual identifier ID2 via the network N using a telephone line, an Internet line, or the like. is doing.
  • the digital broadcast transmitting apparatus 1D includes a message information storage unit 11, a message control information storage unit 12, a message control information individual update unit 13, an identifier storage unit 14, a common message generation unit 15, and an individual message generation.
  • Means 16, broadcast transmission means 17, communication transmission / reception means 18, and identifier registration means 19B are provided.
  • FIG. 23 illustrates only an identifier for identifying the digital broadcast receiving device 5D and a configuration related to message delivery using the identifier, and relates to a function of a general digital broadcast transmission device, for example, content delivery. The illustration of the configuration to be performed is omitted.
  • the communication transmitting / receiving means 18 transmits / receives communication data to / from the digital broadcast receiving device 5D via the network N, and is, for example, a communication control board.
  • the communication transmitting / receiving means 18 receives the individual identifier ID2 and the personal information PD of the user of the digital broadcast receiving apparatus 5D as communication data from each digital broadcast receiving apparatus 5D, and outputs them to the identifier registration means 19B. .
  • the identifier registration unit 19B receives the individual identifier ID2 that is an identifier generated by the digital broadcast receiving device 5D through the communication transmission / reception unit 18, and also stores the personal information PD together with the personal information PD received through the communication transmission / reception unit 18. It is registered (registered in the identifier database) in the identifier storage means 14).
  • the identifier registration unit 19B includes an individual identifier duplication determination unit 191B, an individual identifier registration unit 192B, and an individual identifier re-request unit 193B.
  • the individual identifier duplication determination unit 191B determines whether or not the individual identifier ID2 received via the communication transmission / reception unit 18 is registered (stored) in the identifier storage unit 14. If it is determined that the individual identifier ID2 is not yet registered in the identifier storage unit 14, the individual identifier duplication determination unit 191B outputs an instruction to register the individual identifier ID2 to the individual identifier registration unit 192B. On the other hand, when it is determined that the individual identifier ID2 has already been registered in the identifier storage unit 14, the individual identifier duplication determination unit 191B issues an instruction to request (re-request) another individual identifier ID2 as an individual identifier re-request. Output to means 193B.
  • the individual identifier registration unit 192B registers (stores) the individual identifier ID2 in the identifier storage unit 14.
  • the individual identifier registration unit 192B corresponds to the individual information PD received via the communication transmitting / receiving unit 18 when the individual identifier duplication determination unit 191B has received an instruction to register the individual identifier ID2.
  • the personal information PD is, for example, the name, address, telephone number, etc. of the viewer.
  • the individual identifier registration unit 192B outputs the received individual identifier ID2 to the message control information notification generation unit 161 of the individual message generation unit 16.
  • the output to the message control information notification generating means 161 is performed in order to receive registration from the digital broadcast receiving device 5D and distribute an individual message for notifying message control information when the individual identifier ID2 is input. Is.
  • the individual identifier re-request means 193B requests the individual identifier ID2 from the digital broadcast receiving device 5D.
  • the individual identifier re-requesting unit 193B gives an instruction to request another individual identifier ID2 when the individual identifier duplication determining unit 191B receives a request for re-requesting the individual identifier ID2, and the communication transmitting / receiving unit 18 To the digital broadcast receiver 5D.
  • another individual identifier ID2 is retransmitted from the digital broadcast receiving apparatus 5D, and if it is not duplicated, it is registered in the identifier storage means 14.
  • the digital broadcast transmitting apparatus 1D does not need to manage a unique identifier for each receiving apparatus in advance in the broadcasting company like the card number of the conventional CAS card. Also, the digital broadcast transmission device 1D can automate the identifier registration process without registering an identifier (individual identifier ID2) without human intervention.
  • the digital broadcast transmission apparatus 1D can be operated by a program (message transmission program) that causes a general computer to function as each of the above-described means.
  • the digital broadcast transmitting apparatus 1D transmits one message to the digital broadcast receiving apparatus 5D (FIG. 24). However, as described with reference to FIG. 8, the digital broadcast transmitting apparatus 1D transmits a plurality of messages simultaneously. It does not matter. In this case, the digital broadcast transmission apparatus 1D, like the digital broadcast transmission apparatus 1A 3 described in FIG. 8, a plurality configure (message generating means) for generating a common message and individual messages, In addition, each message generator What is necessary is just to comprise and comprise the CAT production
  • the message generation means includes message information storage means 11, message control information storage means 12, message control information individual update means 13, identifier storage means 14, common message generation means 15, and individual message generation. What is necessary is just to comprise by the means 16 and the identifier registration means 19B.
  • the common message generation unit 15 and the individual message generation unit 16 identify messages (EMM messages) generated by each message generation unit (not shown) via an input unit (not shown) from the outside.
  • the packet identification (PID) of the TS which is information for this, is input and notified to the broadcast transmission means 17.
  • the broadcast transmitting unit 17 multiplexes the CAT generated by the CAT generating unit 71 (FIG. 8) using the MPEG-2 TS system. As a result, the digital broadcast transmission device 1D can simultaneously transmit a plurality of different messages.
  • the digital broadcast receiving device 5D includes a broadcast receiving unit 50, a common message processing unit 51, an individual message processing unit 52, a storage unit 53C, a display unit 54B, an initialization unit 55, and an individual identifier registration request.
  • Means 56C, communication transmitting / receiving means 57, timing means 59, and individual identifier generation means 60 are provided.
  • FIG. 24 illustrates only an identifier for identifying the digital broadcast receiving device 5D and a configuration related to message delivery using the identifier, and relates to functions of a general digital broadcast receiving device, for example, content reception.
  • the individual identifier registration request means 56C sends a request (identifier registration request) for registering the individual identifier ID2 and the personal information PD stored in the storage means 53C via the communication transmitting / receiving means 57 to the digital broadcast transmitting apparatus 1D.
  • the individual identifier registration requesting unit 56C reads the individual identifier ID2 and the personal information PD from the storage unit 53C at the time of initial setting such as channel setting, generates an identifier registration request, and transmits it to the digital broadcast transmission device 1D.
  • the individual identifier registration request unit 56C instructs the individual identifier generation unit 60 to generate the individual identifier ID2 when the digital broadcast transmission apparatus 1D requests resetting of the individual identifier ID2. Then, the individual identifier registration request unit 56C sends a request (identifier registration request) for registering the new individual identifier ID2 and the personal information PD at the stage when the new individual identifier ID2 is generated. Is transmitted to the digital broadcast transmission apparatus 1D.
  • the communication transmission / reception means 57 transmits / receives communication data to / from the digital broadcast transmission apparatus 1D via the network N, and is, for example, a communication control board.
  • the communication transmitting / receiving means 57 transmits the identifier registration request input from the individual identifier registration requesting means 56C to the digital broadcast transmitting apparatus 1D via the network N, and the digital broadcast transmitting apparatus 1D requests resetting of the identifier. If so, the fact is output to the individual identifier registration requesting means 56C.
  • the digital broadcast receiving apparatus 5D can be operated by a program (message receiving program) that causes a general computer to function as each of the means described above.
  • the digital broadcast receiving apparatus 5D receives one message from the digital broadcast transmitting apparatus 1D (FIG. 23). However, as described in FIG. 9, the digital broadcast receiving apparatus 5D receives a plurality of messages from the digital broadcast receiving apparatus. It may be a form in which a message to 5D is extracted and received.
  • the digital broadcast receiving apparatus 5D like the digital broadcast receiving apparatus 5A 3 described in FIG. 9, broadcast and storage means 62, further comprising a CAT processing unit 63 has been described a broadcast receiving unit 50 in FIG. 9 What is necessary is just to replace and comprise the receiving means 50A. Thereby, the digital broadcast receiving device 5D can extract and receive a message to itself from different messages.
  • the digital broadcast receiving device 5D generates the individual identifier ID2 by the individual identifier generating means 60 at the time of initial setting (step S10E). Then, the digital broadcast receiving apparatus 5D transmits the individual identifier ID2 generated in step S10E and the personal information PD stored in the storage unit 53C by the individual identifier registration request unit 56C via the communication transmission / reception unit 57. It transmits to the apparatus 1D (step S10F).
  • the digital broadcast transmitting apparatus 1D receives the individual identifier ID2 and the personal information PD transmitted in step S10F by the communication transmitting / receiving means 18 (step S12B). Then, the digital broadcast transmitting apparatus 1D determines whether or not the individual identifier ID2 received in step S12B is registered (stored) in the identifier storage unit 14 by the individual identifier duplication determination unit 191B of the identifier registration unit 19B (duplication). Confirmation) (step S13B).
  • the individual identifier re-requesting unit 193B transmits an instruction to request another individual identifier ID2 to the digital broadcast receiving device 5D via the communication transmitting / receiving unit 18. . Then, the digital broadcast receiving device 5D again generates the individual identifier ID2 by the individual identifier generation unit 60, and retransmits the individual identifier ID2 by the individual identifier registration request unit 56C (duplication confirmation processing: step S11C).
  • the individual identifier generating unit 60 registers the individual identifier ID2 generated (or regenerated) in step S10E in the storage unit 53C (step S11D).
  • the individual identifier registration unit 192B of the identifier registration unit 19 registers the individual identifier ID2 in the identifier storage unit 14 in association with the personal information PD (step S14).
  • the step S15 and subsequent operations are the same as the operation of the digital broadcasting system S C described in FIG 19.
  • the digital broadcasting system SD can transmit a message to the identifier of each receiving device without giving an IC card to the receiving device in advance.
  • the digital broadcast system SE includes digital broadcast transmission devices 1E (1), 1E (1),..., An identifier management device 3, and digital devices installed in each home.
  • the broadcast receiving devices 5E (5), 5E (5),... Are received by the digital broadcast receiving device 5E and received by the viewer.
  • the digital broadcasting system S E is a digital broadcast transmitting apparatus 1E has an identifier (specified identifier) identifier management apparatus 3 manages digital broadcast receiving apparatus 5E, 5E, ... delivered separately for each, using the designated identifier Thus, individual message information addressed to the digital broadcast receiver 5E can be transmitted.
  • this specified identifier is different from the individual identifier held or generated by the digital broadcast receiving apparatus described in the first to fourth embodiments described above, and each digital broadcast receiving apparatus is managed on the broadcaster side. Therefore, it is an identifier assigned to each digital broadcast receiving apparatus. That is, this designated identifier is an identifier systematized on the broadcaster side.
  • the digital broadcast transmitting apparatus 1E transmits content to the digital broadcast receiving apparatus 5E via the broadcast wave W.
  • the digital broadcast transmission device 1E has a function of transmitting the designated identifier acquired from the identifier management device 3 to the digital broadcast reception device 5E with the individual identifier notified from the digital broadcast reception device 5E as a destination.
  • the digital broadcast transmission device 1E has a function of grouping individual digital broadcast reception devices 5E and transmitting message information to a specific group.
  • the identifier management device 3 manages individual identifiers for each of the digital broadcast receiving devices 5E, 5E,.
  • the identifier management device 3 generates a new identifier (designated identifier) managed by the identifier management device 3 for the individual identifier of the digital broadcast reception device 5E notified from the digital broadcast transmission device 1E.
  • 1E has a function to transmit.
  • the digital broadcast receiving device 5E receives content via the broadcast wave W.
  • an individual identifier ID2 is set in advance. This individual identifier ID2 is notified to the digital broadcast transmission device 1E, and the digital broadcast reception device 5E holds the designated identifier distributed from the digital broadcast transmission device 1E to the individual identifier via the broadcast wave W. It has a function of acquiring message information addressed to a specified identifier transmitted from the transmitting apparatus 1E via the broadcast wave W.
  • the designated identifier is generated by the identifier management device 3, but the specified identifier is not necessarily generated by the individually prepared identifier management device 3. For example, it may be configured by being incorporated in a predetermined digital broadcast transmission apparatus 1E.
  • the viewer notifies the broadcaster of the individual identifier ID2 displayed on the display screen of the digital broadcast receiving device 5E by telephone, postcard, Internet, or the like (step SE1). Then, when the broadcaster registers the individual identifier ID2 in the digital broadcast transmission device 1E, the digital broadcast transmission device 1E acquires a new identifier (designated identifier ID3) from the identifier management device 3 (step SE2). Then, the digital broadcast transmitting device 1E transmits the specified identifier ID3 to the digital broadcast receiving device 5E by an individual message with the individual identifier ID2 as the destination (step SE3). Then, in the subsequent operation, the digital broadcast transmission device 1E specifies the individual digital broadcast reception device 5E with the designated identifier ID3 and transmits the individual message.
  • a new identifier designated identifier ID3
  • the digital broadcast transmitting device 1E is an individual message whose destination is the designated identifier ID3, and transmits message control information for specifying the group type to the digital broadcast receiving apparatus 5E (step SE4). Then, the digital broadcast transmitting device 1E describes message control information as a destination in a common message that is a message common to all the digital broadcast receiving devices 5E, and transmits the message information (step SE5). As a result, even for a common message, only the digital broadcast receiving device 5E grouped with the message control information receives the message information.
  • the digital broadcasting system S E is different from the individual identifier ID2 sent from the digital broadcast receiving apparatus 5E, for allocating a unique identifier designated ID3, such as conventional CAS card There is no need to distribute IC cards individually for each receiving apparatus, and there is no need to manage IC card identifiers (card numbers).
  • ID3 a unique identifier designated as conventional CAS card
  • the digital broadcast transmitting apparatus 1E includes an individual identifier registration unit 10C, a message information storage unit 11, a message control information storage unit 12, a message control information individual update unit 13B, an identifier storage unit 14B, and a common message generation.
  • Means 15, individual message generation means 16B, broadcast transmission means 17, communication transmission / reception means 20, and designated identifier acquisition means 21 are provided.
  • the individual identifier registering unit 10C inputs the individual identifier ID2 that is an identifier unique to the digital broadcast receiving device 5E and the personal information PD of the viewer, and registers them as an identifier database in the storage unit (identifier storage unit 14B). For example, the individual identifier registration unit 10C inputs the individual identifier ID2 notified from the viewer by telephone, postcard, Internet, etc. and the personal information PD of the viewer, such as a keyboard, by the operator who operates the digital broadcast transmitting apparatus 1E. By being input by means (not shown), the individual identifier ID2 is written and stored (registered) in the identifier storage means 14B in association with the personal information PD. The individual identifier registration unit 10C outputs an instruction to acquire the specified identifier ID3 to the specified identifier acquisition unit 21 when the individual identifier ID2 and the personal information PD of the viewer are input.
  • the message control information individual updating means 13B is for individually updating the message control information Mc stored in the digital broadcast receiving device 5E.
  • the message control information individual updating means 13B inputs the designated identifier 1D3 of the digital broadcast receiving apparatus 5E to be updated and new message control information Mc from the outside via an input means (not shown). Then, it instructs the individual message generating means 16B to generate an individual message for transmitting the message control information Mc to the digital broadcast receiving device 5E.
  • the identifier storage unit 14B stores the individual identifier ID2 and the personal information PD registered by the individual identifier registration unit 10C in association with the specified identifier ID3 acquired by the specified identifier acquisition unit 21. It is a general storage medium.
  • the identifier storage unit 14B creates a database by associating information such as the name, address, and telephone number, which is the personal information PD of the viewer, for each individual identifier ID2 and designated identifier ID3. It is assumed that a predetermined initial value that is not recognized as an identifier is set in the database of the identifier storage unit 14B until the individual identifier ID2 and the designated identifier ID3 are registered.
  • the individual message generation means 16B generates a message (individual message) to be transmitted individually to each digital broadcast receiving device 5E.
  • the individual message generation unit 16B includes a message control information notification generation unit 161B and a designated identifier notification generation unit 162.
  • the message control information notification generating unit 161B generates a message for transmitting the message control information Mc to the digital broadcast receiving device 5E as an individual message.
  • the individual message generated by the message control information notification generation unit 161B is output to the broadcast transmission unit 17.
  • the message control information notification generating unit 161B generates a message (message control information notification) having the specified identifier ID3 as the destination and the message control information Mc as the content. That is, the message control information notification generation unit 161B generates an individual message (message control information notification) for the digital broadcast receiving device 5E that holds the designated identifier ID3.
  • the message control information Mc is transmitted to the digital broadcast receiving device 5E, the individual digital broadcast receiving devices 5E are grouped according to the value of the message control information.
  • the message control information notification generating unit 161B may generate an individual message when the message control information Mc and the designated identifier ID3 are input via an input unit (not shown), or may perform message control in advance.
  • a time table describing the delivery time and delivery destination of the message control information Mc may be stored in the information storage unit 12, and an individual message may be generated according to the time table.
  • the message control information notification generating unit 161B receives a notification from the message control information individual updating unit 13B to transmit new message control information Mc to the digital broadcast receiving device 5E indicated by the designated identifier ID3, An individual message is generated using the input designated identifier ID3 and message control information Mc. As a result, new message control information Mc is registered in the digital broadcast receiving device 5E.
  • the designated identifier notification generating unit 162 generates a message for transmitting the designated identifier ID3 to the digital broadcast receiving device 5E as an individual message.
  • the individual message generated by the designated identifier notification generation unit 162 is output to the broadcast transmission unit 17.
  • the designated identifier notification generating unit 162 generates a message (designated identifier notification) having the individual identifier ID2 as a destination and the specified identifier ID3 as contents. That is, the designated identifier notification generating unit 162 generates an individual message (specified identifier notification) for the digital broadcast receiving device 5E holding the individual identifier ID2.
  • the designated identifier notification generating unit 162 receives the individual message (designated identifier notification) when the individual identifier ID2 and the personal information PD are registered by the individual identifier registering unit 10C and the designated identifier ID3 is obtained by the designated identifier obtaining unit 21. Will be generated.
  • the designated identifier notification generation unit 162 may also notify the message control information Mc when notifying the designated identifier ID3.
  • the message information notification generation unit 151 sets message destination as “message control information (Mc)” and message content as “message information (Msg)”. Generate a notification.
  • the message information notification format may be the data format of the EMM common message standardized by ARIB STD-B25.
  • the message information notification generating unit 151 describes the message control information Mc in the area R1 in the EMM message section header of the EMM common message section structure, and the message code body area of the EMM message body.
  • a common message is generated by describing message information Msg in R2.
  • the message control information notification generating unit 161B sets the message destination as “designated identifier (ID3)” and the message content as “message control information (Mc)”.
  • ID3 designated identifier
  • Mc message control information
  • the designated identifier notification generating unit 162 sets the message destination as “individual identifier (ID2)” and the message content as “designated identifier (ID3)”. Generate a specified identifier notification that is a message.
  • the specified identifier notification generating unit 162 sets the message destination to “individual identifier (ID2) as shown in (b-3) of FIG. ) ”, And the content of the message is“ message control information (Mc) ”and“ designated identifier (ID3) ”, and a designated identifier notification (with message control information) that is an individual message is generated.
  • the individual message in FIG. 51 (b) has a separate type such as whether the individual message is a message control information notification, a specified identifier notification, or a specified identifier notification (with message control information). Needless to say, it is added.
  • the format of the message control information notification and the designated identifier notification may be the data format of the EMM individual message standardized by STD-B25.
  • An individual message is generated by describing the destination of the message and describing the content of the message in the message code area R4 of the EMM message body (1, 2,..., N).
  • the communication transmitting / receiving means 20 transmits / receives communication data to / from the identifier management device 3 via the network N, and is, for example, a communication control board.
  • the communication transmitting / receiving unit 20 transmits a request (specified identifier request) for acquiring the specified identifier ID3 input from the specified identifier acquiring unit 21 to the identifier management device 3 as communication data, and returns a response from the identifier management device 3
  • the designated identifier ID3 is received as communication data.
  • the received designated identifier ID3 is output to the designated identifier acquisition means 21.
  • the designated identifier obtaining unit 21 obtains the designated identifier ID3 from the identifier management device 3 via the communication transmitting / receiving unit 20.
  • the designated identifier acquisition unit 21 includes a designated identifier request unit 211 and a designated identifier registration unit 212.
  • the designated identifier request unit 211 generates a request for obtaining the designated identifier ID3 (designated identifier request), and transmits the designated identifier request to the identifier management device 3.
  • the designated identifier request unit 211 generates a designated identifier request message when the instruction to acquire the designated identifier ID3 is notified from the individual identifier registration unit 10C, and via the communication transmission / reception unit 20, A designated identifier request is transmitted to the identifier management device 3.
  • the designated identifier registration unit 212 registers the designated identifier ID3 acquired from the identifier management device 3 in the identifier database of the identifier storage unit 14B.
  • the designated identifier registration unit 212 registers the designated identifier ID3 in the identifier storage unit 14B at the stage of obtaining the designated identifier ID3 via the communication transmitting / receiving unit 20. Since the designated identifier registration unit 212 registers the designated identifier ID3 in the identifier database of the identifier storage unit 14B and then can centrally manage the digital broadcast receiving device 5E using the designated identifier ID3, the individual identifier ID2 corresponding to the designated identifier ID3 is stored. May be initialized or invalidated.
  • the designated identifier registration unit 212 may set the priority order for referring to the designated identifier ID3 higher than the priority order for referring to the individual identifier ID2. .
  • the individual message generating means 16B generates an individual message using the individual identifier ID2 until the designated identifier ID3 is registered, and after the designated identifier ID3 is registered, the individual message using the designated identifier ID3. Can also be generated.
  • the designated identifier registration unit 212 outputs the designated identifier ID3 to the individual message generation unit 16B when acquiring the designated identifier ID3 in order to notify the digital broadcast receiving device 5E of the designated identifier ID3. I will do it.
  • the digital broadcast transmitting apparatus 1E can set an identifier (designated identifier) for each receiving apparatus later without distributing an IC card (CAS card or the like) to the receiving apparatus in advance. Thereby, the cost of IC cards and the cost of managing them can be reduced.
  • the digital broadcast transmission apparatus 1E can be operated by a program (message transmission program) that causes a general computer to function as each of the means described above.
  • the digital broadcast transmitting apparatus 1E transmits one message to the digital broadcast receiving apparatus 5E (FIG. 30). However, as described with reference to FIG. 8, the digital broadcast transmitting apparatus 1E transmits a plurality of messages simultaneously. It does not matter. In this case, the digital broadcast transmitting apparatus 1E, like the digital broadcast transmission apparatus 1A 3 described in FIG. 8, a plurality configure (message generating means) for generating a common message and individual messages, In addition, each message generator What is necessary is just to comprise the CAT production
  • the message generation means includes an individual identifier registration means 10C, a message information storage means 11, a message control information storage means 12, a message control information individual update means 13B, an identifier storage means 14B, and a common message generation. What is necessary is just to comprise by the means 15, the separate message production
  • the common message generation unit 15 and the individual message generation unit 16B identify messages (EMM messages) generated by each message generation unit (not shown) from the outside via an input unit (not shown).
  • the broadcast transmitting unit 17 multiplexes the CAT generated by the CAT generating unit 71 (FIG. 8) using the MPEG-2 TS system.
  • the digital broadcast transmitting apparatus 1E can simultaneously transmit a plurality of different messages.
  • the identifier management device 3 includes a communication transmission / reception unit 30, a specified identifier distribution unit 31, a specified identifier generation unit 32, and a specified identifier storage unit 33.
  • the communication transmission / reception means 30 transmits / receives communication data to / from the digital broadcast transmission apparatus 1E via the network N, and is, for example, a communication control board.
  • the communication transmitting / receiving means 30 outputs a designated identifier request, which is a message received as communication data from the digital broadcast transmitting apparatus 1E, to the designated identifier request receiving means 311.
  • the communication transmitting / receiving unit 30 transmits the specified identifier ID3 output from the specified identifier transmitting unit 312 to the requested digital broadcast transmitting device 1E as communication data.
  • the designated identifier distribution means 31 distributes (transmits) the designated identifier ID3 to the requested digital broadcast transmission apparatus 1E via the communication transmitting / receiving means 30.
  • the specified identifier distribution unit 31 includes a specified identifier request receiving unit 311 and a specified identifier transmitting unit 312.
  • the designated identifier request receiving unit 311 receives a request (designated identifier request) to acquire the designated identifier ID3 from the digital broadcast transmitting device 1E via the communication transmitting / receiving unit 30.
  • the designated identifier request receiving unit 311 outputs a request to the designated identifier generating unit 32 to generate the designated identifier ID3.
  • the designated identifier transmitting unit 312 transmits the designated identifier ID3 generated by the specified identifier generating unit 32 to the requested digital broadcast transmitting apparatus 1E via the communication transmitting / receiving unit 30.
  • the designated identifier generating means 32 generates a unique identifier (specified identifier ID3) for each digital broadcast transmitting apparatus 1E.
  • the generation method of the designated identifier ID3 is not particularly limited as long as it does not have a duplicate value.
  • the designated identifier generating unit 32 generates the designated identifier ID3 so that the sequential numbers are sequentially obtained when requested.
  • the designated identifier generating means 32 generates a designated identifier ID3 and outputs it to the designated identifier transmitting means 312 when a request for generating the designated identifier ID3 is input from the designated identifier request receiving means 311. It is written and stored in the designated identifier storage means 33.
  • the designated identifier storage unit 33 stores the designated identifier ID3 generated by the specified identifier generation unit 32, and is a general storage medium such as a hard disk.
  • the identifier management device 3 sequentially generates an identifier (designated identifier ID3) for identifying each digital broadcast transmission device 1E in response to a request, so that the card number of the IC card (CAS card or the like)
  • CAS card CAS card or the like
  • the digital broadcast receiving apparatus 5E includes a broadcast receiving unit 50, a common message processing unit 51, an individual message processing unit 52C, a storage unit 53D, a display unit 54C, and an initialization unit 55B.
  • FIG. 30 illustrates only an identifier for identifying the digital broadcast receiving device 5E and a configuration related to message distribution using the identifier, and relates to a function of a general digital broadcast receiving device, for example, content reception. The illustration of the configuration to be performed is omitted.
  • the configuration other than the individual message processing unit 52C, the storage unit 53D, the display unit 54C, and the initialization unit 55B is the same as the configuration of the digital broadcast receiving apparatus 5A described with reference to FIG. To do.
  • the individual message processing means (individual message receiving means) 52C analyzes an individual message that is an individual message for each digital broadcast receiving device 5E input via the broadcast receiving means 50, and performs processing according to the message. is there.
  • the individual message processing unit 52C includes a message control information notification analysis unit 521C and a designated identifier notification analysis unit 522.
  • the message control information notification analysis unit 521C analyzes whether or not the message control information notification (see FIGS. 51B and 51B) transmitted as an individual message is a message addressed to the digital broadcast receiving device 5E. When the message is addressed to the digital broadcast receiving apparatus 5E, the message control information notified by the message control information notification is processed.
  • the message control information notification analyzing unit 521C receives the specified identifier ID3 stored in the storage unit 53D as the specified identifier that is the destination of the message control information notification (see FIGS. 51B and 51B). Is matched, the message control information which is the content of the message control information notification is written in the storage means 53D.
  • the message control information notification analyzing unit 521C has the same message identifier as the specified identifier stored in the storage unit 53D, and the message control information that is the content of the individual message is “broadcast channel contract exists”. If (0x0001) ", the value" 0x0001 "is written in the message control information Mc of the storage means 53D.
  • the designated identifier notification analyzing unit 522 analyzes whether the designated identifier notification (see FIGS. 51 (b) and (b-2)) transmitted as the individual message is a message addressed to the digital broadcast receiving device 5E. When the message is addressed to the digital broadcast receiving apparatus 5E, the designated identifier notified by the designated identifier notification is processed.
  • the designated identifier notification analyzing unit 522 matches the individual identifier that is the destination of the designated identifier notification (see FIGS. 51B and 51B) with the individual identifier ID2 stored in the storage unit 53D.
  • the specified identifier that is the content of the specified identifier notification is written in the storage means 53D.
  • the format of the individual message designation identifier notification is “message control information (Mc)” and “designation identifier (ID3)”.
  • the designated identifier notification analyzing unit 522 stores the designated identifier which is the content of the designated identifier notification when the individual identifier as the destination matches the individual identifier ID2 stored in the storage unit 53D. In addition to writing to the means 53D, message control information which is the content of the designated identifier notification is written to the storage means 53D.
  • the storage unit 53D stores information unique to the digital broadcast receiving device 5E, and is a general storage medium such as a nonvolatile memory (NVRAM).
  • the storage means 53D stores message control information Mc, a specified identifier ID3, an individual identifier ID2, and personal information PD. Information other than the designated identifier ID3 is the same as that described in the storage means 53 of the digital broadcast receiving apparatus 5A in FIG.
  • the designated identifier ID3 is an identifier for identifying the digital broadcast receiving device 5E notified from the digital broadcast transmitting device 1E by notification of the designated identifier of the individual message.
  • the designated identifier ID3 is written by the designated identifier notification analyzing unit 522.
  • the designated identifier ID3 is set to an initial value that is not used as an identifier in advance.
  • the value “0” is set as the initial value of each identification value.
  • the display means 54C displays display data on a display device (not shown) such as a liquid crystal display.
  • the display unit 54C includes an individual identifier display unit 541, a message display unit 542, and a designated identifier display unit 543. Since the configuration other than the designated identifier display unit 543 is the same as that described in the display unit 54 of the digital broadcast receiving apparatus 5A in FIG.
  • the designated identifier display unit 543 displays the designated identifier ID3 stored in the storage unit 53D as display data.
  • the designated identifier display unit 543 reads out the designated identifier ID3 from the storage unit 53D when instructed to display the initial setting screen by an input unit (not shown) such as a remote control device, for example.
  • the value of the designated identifier ID3 is displayed as text data (a character string expressed by decimal numbers) in a predetermined area.
  • the viewer can notify the broadcasting company of the designated identifier ID3 displayed on the screen by telephone or the like, thereby making it possible to change the viewing contract or the contract.
  • the designated identifier display unit 543 functions after the designated identifier ID3 is registered in the storage unit 53D.
  • the initialization unit 55B initializes the message control information Mc and the designated identifier ID3 stored in the storage unit 53D.
  • the initialization unit 55B receives message control information Mc stored in the storage unit 53D by receiving an initialization instruction from an input unit (not shown) such as a switch or an initialization instruction on an initial setting screen.
  • the designated identifier ID3 is set to an initial value. For example, when “0x0000” is “no broadcast channel contract” and “0x0001” is “broadcast channel contract” as the message control information Mc, the initialization unit 55B sets the message control information Mc to an initial value “ Set to 0x0000 ".
  • the initialization unit 55B sets an initial value (eg, a value “0”) that is not used as an identifier in the designated identifier ID3. Thereby, even when the owner of the digital broadcast receiving device 5E changes, the digital broadcast receiving device 5E can be reset to the initial state.
  • an initial value eg, a value “0”
  • the viewer notifies the broadcaster of the value of the individual identifier stored in the digital broadcast receiving device 5E in advance, and the designated identifier managed by the broadcaster is allocated.
  • a conventional IC card such as a CAS card for each receiving device is not necessary, and the cost can be reduced.
  • the digital broadcast receiving apparatus 5E can be operated by a program (message receiving program) that causes a general computer to function as each of the means described above.
  • the digital broadcast receiving device 5E is configured to receive one message from the digital broadcast transmitting device 1E (FIG. 28). However, as described in FIG. 9, the digital broadcast receiving device 5E receives a plurality of messages. It may be a form in which a message to 5E is extracted and received.
  • the digital broadcast receiving apparatus 5E like the digital broadcast receiving apparatus 5A 3 described in FIG. 9, broadcast and storage means 62, further comprising a CAT processing unit 63 has been described a broadcast receiving unit 50 in FIG. 9 What is necessary is just to comprise by replacing with the receiving means 50A. As a result, the digital broadcast receiving device 5E can extract and receive a message to itself from different messages.
  • the digital broadcast receiving device 5E reads out the individual identifier ID2 stored in the storage unit 53D by the individual identifier display unit 541 of the display unit 54C and displays it on the screen (step S10). Then, the viewer notifies the broadcaster of the value of the individual identifier ID2 displayed on the screen together with personal information PD such as a name by telephone, postcard, Internet, or the like (step S11).
  • the broadcaster acquires the individual identifier ID2 unique to the digital broadcast receiving device 5E (step S12).
  • the operator of the broadcasting company inputs the value of the individual identifier ID2 notified from the viewer by the input means (not shown) in the digital broadcast receiving device 5E together with the personal information PD (step S13).
  • the digital broadcast transmitting apparatus 1E registers the value of the individual identifier ID2 input in step S13 with the individual identifier registration unit 10C in the identifier database of the identifier storage unit 14B in association with the personal information PD (step S14).
  • an identifier (individual identifier ID2) unique to the digital broadcast receiving device 5E is registered in the digital broadcast transmitting device 1E.
  • the digital broadcast transmitting apparatus 1E uses the specified identifier request unit 211 of the specified identifier acquisition unit 21 to request that the specified identifier ID3 be acquired ( A designated identifier request is generated, and the designated identifier request is transmitted to the identifier management device 3 via the communication transmitting / receiving means 20 (step S30).
  • the identifier management device 3 receives the designated identifier request via the communication transmitting / receiving means 30 by the designated identifier request receiving means 311 of the designated identifier distribution means 31 (step S31). Thereafter, the identifier management device 3 generates the specified identifier ID3 by the specified identifier generation means 32 (step S32). Furthermore, the identifier management device 3 writes and stores the designated identifier ID3 generated in step S32 in the designated identifier storage unit 33 (identifier database) by the designated identifier generation unit 32 (step S33).
  • the identifier management device 3 sends the designated identifier ID3 generated in step S32 by the designated identifier transmission unit 312 of the designated identifier distribution unit 31 to the requested digital broadcast transmission device 1E via the communication transmission / reception unit 30. Transmit (step S34).
  • the digital broadcast transmitting apparatus 1E receives the designated identifier ID3 from the identifier management apparatus 3 via the communication transmitting / receiving means 20 by the designated identifier registration means 212 of the designated identifier acquisition means 21 (step S35), and the identifier storage means 14B. Is registered in the identifier database (step S36).
  • the digital broadcast transmitting apparatus 1E then receives the individual identifier ID2 input in step S13 by the designation identifier notification generation unit 162 of the individual message generation unit 16B, the message control information Mc, and the designation identifier ID3 received in step S35.
  • the individual message (designated identifier notification [with message control information]) is generated (step S37). For example, it is assumed here that the message control information Mc is “broadcast channel contracted (0x0001)”.
  • the digital broadcast transmission device 1E transmits the individual message (designated identifier notification [with message control information]) generated in step S37 by the broadcast transmission means 17 to the digital broadcast reception device 5E via the broadcast wave W. (Step S38).
  • the digital broadcast receiver 5E receives the individual message via the broadcast wave W by the broadcast receiving means 50 (step S39). Then, in the digital broadcast receiving device 5E, the designation identifier notification analysis unit 522 of the individual message processing unit 52C causes the designation identifier notification (with message control information) of the individual message received in step S39 to be sent to the digital broadcast reception device 5E. Whether or not the message is a message is analyzed.
  • the message control information Mc notified by the designation identifier notification is written and stored in the storage means 53D (step S40).
  • the designated identifier ID3 notified by the identifier notification is written and stored in the storage means 53D (step S41).
  • “with broadcast channel contract (0x0001)” is written as message control information Mc in the storage means 53D of the digital broadcast receiver 5E.
  • the digital broadcast transmitting apparatus 1E generates a common message for notifying message information by the message information notification generating unit 151 of the common message generating unit 15 (step S42).
  • the common message generation means 15 is a common message (message information notification) having the message control information of “No broadcast channel contract (0x0000)” as the destination and the message information of “This channel is not contracted”. Is generated.
  • the digital broadcast transmitting device 1E transmits the common message (message information notification) generated in step S42 by the broadcast transmitting unit 17 to the digital broadcast receiving device 5E via the broadcast wave W (step S43).
  • the digital broadcast receiving device 5E receives the common message via the broadcast wave W by the broadcast receiving means 50 (step S44). Then, the digital broadcast receiving apparatus 5E uses the message control notification Mc stored in the storage unit 53D to store the message information notification destination of the common message received in step S44 by the message information notification analysis unit 511 of the common message processing unit 51. It is analyzed whether or not the common message is a message addressed to the digital broadcast receiving device 5E depending on whether or not they match.
  • step S45 when the common message received in step S44 is a message addressed to the digital broadcast receiving device 5E, the digital broadcast receiving device 5E processes the message information Msg notified by the message information notification (step S45). For example, when the message information Msg stored in the storage means 53D is “No broadcast channel contract (0x0000)”, the message control information that is the destination of the common message is “No broadcast channel contract (0x0000)”. When the message information which is the message content “This channel is not subscribed” is received, the digital broadcast receiving device 5E displays “This channel is not subscribed” on the screen by the message display means 542. indicate.
  • the message display means 542 does not display “This channel is not contracted” on the screen. End the operation.
  • the digital broadcast receiving device 5E is grouped (here, grouped based on the presence / absence of a contract) based on the message control information Mc.
  • a function for displaying the individual identifier ID2 is added on the screen displayed as the data broadcast, similarly to the modified example of the first embodiment described with reference to FIGS.
  • a digital broadcast transmitting apparatus 1E 2 (FIG. 32) to a digital broadcasting system S digital broadcast transmitting apparatus 1E and the digital broadcast receiving apparatus 5E of E shown in FIG. 27, described later, respectively and the digital broadcast The configuration is replaced with the receiving device 5E 2 (FIG. 33).
  • This digital broadcast transmission apparatus 1E 2 is configured by adding a data broadcast data storage means 23 and a data carousel encoding means 24 to the digital broadcast transmission apparatus 1E described in FIG.
  • data broadcast data storage means 23 and a data carousel coding means 24 is a digital broadcast transmission apparatus 1A 2 same structure as described in FIG.
  • the configuration other than the data broadcast data storage unit 23 and the data carousel encoding unit 24 is the same as that of the digital broadcast transmission device 1E described with reference to FIG. Therefore, here, the same components as those of the digital broadcast transmission device 1A 2 (FIG. 6) and the digital broadcast transmission device 1E (FIG. 28) are denoted by the same reference numerals, and description thereof is omitted.
  • the BML data Dt is added with a program describing the operation of reading the designated identifier ID3 stored in the storage means 53D of the digital broadcast receiving device 5E 2 (FIG. 33) and displaying it on the screen. .
  • This digital broadcast receiving device 5E 2 adds a data carousel decoding means 61 to the digital broadcast receiving device 5E described in FIG. It is composed.
  • the configuration other than the data carousel decoding unit 61 and the BML decoding unit 544 is the same as the configuration of the digital broadcast receiving device 5E described with reference to FIG. Therefore, here, the same components as those of the digital broadcast receiving device 5A 2 (FIG. 7) and the digital broadcast receiving device 5E (FIG. 30) are denoted by the same reference numerals and description thereof is omitted.
  • the BML decoding unit 544 reads the designated identifier ID3 from the storage unit 53D and displays it on the screen.
  • the operation of the digital broadcast system according to the modification of the fifth embodiment is basically the same as the operation described in FIG.
  • the digital broadcast receiving apparatus 5E is, in step S10 of FIG. 31, the individual identifier display means 541, while displaying the individual identifier ID2 in the setting screen, the digital broadcast receiving apparatus 5E 2 is the BML decoding means 544, The difference is that a function for displaying the individual identifier ID2 is added to the data broadcasting screen.
  • the digital broadcast transmission device 1E 2 (FIG. 32) transmits BML data Dt for displaying the individual identifier ID2 and the like as a data broadcast by the data carousel encoding means 24 before step S10 in FIG.
  • the digital broadcast receiving apparatus 5E 2 (FIG. 33) decodes data (DII, DDB) transmitted by carousel transmission into BML data Dt by the data carousel decoding means 61, and storage means 53D by the BML decoding means 544.
  • the individual identifier ID2 is read out from the screen and displayed on the screen (step S10).
  • the subsequent operation for the same operation as the digital broadcasting system S E described in FIG. 31, the description thereof is omitted.
  • the digital broadcast system SF includes digital broadcast transmission devices 1F (1), 1F (1),..., An identifier management device 3, and digital installed in each home.
  • the broadcast receiving devices 5F (5), 5F (5),... Are received by the digital broadcast receiving device 5F for content (broadcast programs) transmitted from the digital broadcast transmitting device 1F and viewed by the viewer. System.
  • the digital broadcasting system S F is a digital broadcast transmitting apparatus 1F is an identifier (specified identifier) identifier management apparatus 3 manages digital broadcast receiving apparatus 5F, 5F, ... and delivered separately for each, using the designated identifier Thus, it is the same as the digital broadcast system S E (see FIG. 26) that the individual message information addressed to the digital broadcast receiving device 5F can be transmitted. However, the digital broadcasting system S F from the digital broadcast receiver 5F, when notifying the individual identifier ID2 which is the destination for delivering the specified identifier to the digital broadcasting transmission apparatus 1F, and, from the digital broadcast transmission apparatus 1F, designated identifier ID3 Is notified through the network N 2 using a telephone line, an Internet line, or the like.
  • step SF1 the digital broadcast receiver 5F, transmits communication (network N 2) by a separate identifier ID2 in the digital broadcasting transmitting apparatus 1F, in step SF3, the digital broadcast transmission apparatus 1F, that transmits the specified identifier ID3 are different by communication (network N 2) .
  • the digital broadcast transmitting apparatus 1F includes an individual identifier registration unit 10D, a message information storage unit 11, a message control information storage unit 12, a message control information individual update unit 13B, an identifier storage unit 14C, and a common message generation.
  • Means 15, individual message generation means 16C, broadcast transmission means 17, communication transmission / reception means 20, designated identifier acquisition means 21, and second communication transmission / reception means 22 are provided. Note that FIG.
  • 36 illustrates only an identifier for identifying the digital broadcast receiving device 5F and a configuration related to message delivery using the identifier, and relates to a function of a general digital broadcast transmission device, for example, content delivery.
  • the illustration of the configuration to be performed is omitted.
  • the configuration other than the individual identifier registration unit 10D, the identifier storage unit 14C, the individual message generation unit 16C, and the second communication transmission / reception unit 22 is the same as the configuration of the digital broadcast transmission device 1E described in FIG.
  • the same reference numerals are given and the description is omitted.
  • the individual identifier registration unit 10D receives the individual identifier ID2 that is an identifier unique to the digital broadcast receiving device 5F and the personal information PD of the viewer via the second communication transmitting / receiving unit 22, and transmits the individual identifier ID2 Along with the network address Adr of the broadcast receiving device 5F, it is registered (stored) in the identifier storage means 14C.
  • the individual identifier registration unit 10D outputs an instruction to acquire the specified identifier ID3 to the specified identifier acquisition unit 21 when the individual identifier ID2 and the personal information PD of the viewer are received.
  • the identifier storage unit 14C associates the individual identifier ID2 registered by the individual identifier registration unit 10D, the personal information PD and the network address Adr of the digital broadcast receiving device 5F with the specified identifier ID3 acquired by the specified identifier acquiring unit 21. It is a general storage medium such as a hard disk.
  • the identifier storage unit 14C creates a database by associating the personal information PD such as the viewer's name, address, and telephone number with each individual identifier ID2 and designated identifier ID3. It is assumed that a predetermined initial value that is not recognized as an identifier is set in the database of the identifier storage unit 14C until the individual identifier ID2 and the designated identifier ID3 are registered.
  • the individual message generation means 16C generates a message (individual message) to be transmitted individually to each digital broadcast receiving device 5F.
  • the individual message generation unit 16C includes a message control information notification generation unit 161C and a designated identifier notification generation unit 162C.
  • the message control information notification generation unit 161C has the same function as the message control information notification generation unit 161B described in FIG. However, the message control information notification generation unit 161C the generated individual message (message control information notification), the second communication transmitting and receiving means 22, via the network N 2, points different from that sent to the digital broadcast receiving apparatus 5F Yes. That is, the message control information notification generation unit 161C sends an individual message (message control information notification) to the digital broadcast receiving device 5F ahead of the network address Adr corresponding to the designated identifier ID3 associated with the identifier storage unit 14C. Send.
  • the designated identifier notification generating unit 162C has the same function as the designated identifier notification generating unit 162 described with reference to FIG. However, designated identifier notification generation unit 162C is generated individually message (designated identifier notification), the second communication transmitting and receiving means 22, via the network N 2, the point of transmission is different from the digital broadcast receiving apparatus 5F. That is, the designated identifier notification generating unit 162C transmits an individual message (designated identifier notification) to the digital broadcast receiving device 5F ahead of the network address Adr corresponding to the individual identifier ID2 associated with the identifier storage unit 14C. .
  • the designated identifier notification generating unit 162C may transmit the designated identifier notification by the second communication transmitting / receiving unit 22 and delete the individual identifier ID2 from the identifier storage unit 14C at the timing when the reception confirmation notification is received. This is because the digital broadcast receiving device 5F can be specified by the designated identifier ID3 in the subsequent operations.
  • the individual message generation unit 16C does not need to transmit all individual messages as communication data, but includes message control information notification generated by the message control information notification generation unit 161C and designation identifier generated by the designation identifier notification generation unit 162C. Individual messages other than notifications, such as e-mails, may be transmitted as broadcast data via the broadcast transmission means 17.
  • the second communication transceiver unit 22 through the network N be one for transmitting and receiving communication data between the digital broadcast receiver 5F, for example, a communication control board.
  • the second communication transceiver unit 22 the individual messages generated by individual message generation unit 16C, and transmits the communication data via the network N 2 to the digital broadcast receiving apparatus 5F.
  • the second communication transmitting / receiving means 22 receives the individual identifier ID2 and the personal information PD for registration from the digital broadcast receiving apparatus 5F, and outputs them to the individual identifier registration means 10D.
  • the digital broadcast transmitting apparatus 1F does not need to manage a unique identifier for each receiving apparatus in advance in the broadcasting company like the card number of the conventional CAS card. Also, the digital broadcast transmitting apparatus 1F can automate the identifier registration process without registering an identifier (individual identifier ID2) without human intervention.
  • the digital broadcast transmission apparatus 1F can be operated by a program (message transmission program) that causes a general computer to function as each of the above-described means.
  • the digital broadcast transmitting apparatus 1F is configured to transmit one message to the digital broadcast receiving apparatus 5F (FIG. 37).
  • the digital broadcast transmitting apparatus 1F similar to the digital broadcasting transmission apparatus 1A 3 described in FIG. 8, a plurality configure (message generating means) for generating a common message and individual messages,
  • each message generator What is necessary is just to comprise and comprise the CAT production
  • the message generation means includes an individual identifier registration means 10D, a message information storage means 11, a message control information storage means 12, a message control information individual update means 13B, an identifier storage means 14C, and a common message generation. What is necessary is just to comprise by the means 15, the separate message production
  • the common message generation unit 15 and the individual message generation unit 16C identify messages (EMM messages) generated by each message generation unit (not shown) from the outside via an input unit (not shown).
  • the broadcast transmitting unit 17 multiplexes the CAT generated by the CAT generating unit 71 (FIG. 8) using the MPEG-2 TS system. Thereby, the digital broadcast transmitting apparatus 1F can transmit a plurality of different messages simultaneously.
  • the digital broadcast receiving apparatus 5F includes a broadcast receiving unit 50, a common message processing unit 51, an individual message processing unit 52D, a storage unit 53D, a display unit 54D, an initialization unit 55B, and an individual identifier registration request. Means 56D and communication transmitting / receiving means 57B are provided. Note that FIG. 37 illustrates only an identifier for identifying the digital broadcast receiving device 5F and a configuration related to message delivery using the identifier, and relates to functions of a general digital broadcast receiving device, for example, content reception. The illustration of the configuration to be performed is omitted.
  • the configuration other than the individual message processing unit 52D, the display unit 54D, the individual identifier registration request unit 56D, and the communication transmitting / receiving unit 57B is the same as the configuration of the digital broadcast receiving apparatus 5E described in FIG.
  • the same reference numerals are given and the description is omitted.
  • the individual message processing means (individual message receiving means) 52D analyzes an individual message that is an individual message for each digital broadcast receiving device 5F input via the communication transmitting / receiving means 57B, and performs processing according to the message. is there.
  • the individual message processing unit 52D includes a message control information notification analysis unit 521D and a designated identifier notification analysis unit 522D.
  • the message control information notification analysis unit 521D has the same function as the message control information notification analysis unit 521C described with reference to FIG. However, the message control information notification analyzing unit 521D is the communication transmitting and receiving means 57B individual message (message control information notification), that receives, via the network N 2 are different.
  • the designated identifier notification analyzing unit 522D has the same function as the designated identifier notification analyzing unit 522 described with reference to FIG. However, designated identifier notification analyzing unit 522D is the communication transmitting and receiving means 57B individual messages (specified identifier notification), that receives, via the network N 2 are different.
  • the display means 54D displays display data on a display device (not shown) such as a liquid crystal display.
  • the display unit 54D is configured by omitting the individual identifier display unit 541 from the display unit 54C described in FIG.
  • the individual identifier registration request unit 56D sends a request (identifier registration request) for registering the individual identifier ID2 and the personal information PD stored in the storage unit 53D via the communication transmission / reception unit 57B to the digital broadcast transmission device 1F.
  • a request identifier registration request
  • the individual identifier registration requesting unit 56D reads the individual identifier ID2 from the storage unit 53D at the time of initial setting such as channel setting and generates an identifier registration request using the personal information PD that is also set at the time of initial setting. Then, the data is transmitted to the digital broadcast transmission device 1F.
  • the individual identifier registration request unit 56D monitors whether an individual message (designated identifier notification) is notified after the identifier registration request is transmitted, or whether the designated identifier ID3 is registered in the storage unit 53D. If notification or registration is not performed within a predetermined time, the identifier registration request may be transmitted again. This ensures that the specified identifier is registered.
  • the individual identifier registration requesting unit 56D uses, for example, the MAC address of the network interface card (NIC) as the individual information set in the communication transmitting / receiving unit 57B. May be used as the individual identifier ID2.
  • NIC network interface card
  • Communications transceiver unit 57B via the network N 2 be one for transmitting and receiving communication data between the digital broadcast transmission apparatus 1F, for example, a communication control board.
  • the communication transceiver means 57B outputs the individual message received via the network N 2 to the individual message processing unit 52D.
  • the communication transceiver unit 57B transmits the identifier registration request inputted from the individual identifier registration request unit 56D, via the network N 2 to a digital broadcast transmitting apparatus 1F.
  • the digital broadcast receiving apparatus 5F can be operated by a program (message receiving program) that causes a general computer to function as each of the above-described means.
  • the digital broadcast receiving device 5F is configured to receive one message from the digital broadcast transmitting device 1F (FIG. 37). However, as described with reference to FIG. It is also possible to extract and receive a message to 5F.
  • the digital broadcast receiving apparatus 5F like the digital broadcast receiving apparatus 5A 3 described in FIG. 9, broadcast and storage means 62, further comprising a CAT processing unit 63 has been described a broadcast receiving unit 50 in FIG. 9 What is necessary is just to comprise by replacing with the receiving means 50A. Accordingly, the digital broadcast receiving device 5F can extract and receive a message to itself from different messages.
  • the digital broadcast receiving device 5F reads the individual identifier ID2 and the personal information PD stored in the storage unit 53D by the individual identifier registration request unit 56D (step S10B). Then, the digital broadcast receiving device 5F transmits the individual identifier ID2 and the personal information PD read in step S10B to the digital broadcast transmitting device 1F by the communication transmitting / receiving means 57B (step S11B).
  • the digital broadcast transmitting apparatus 1F receives the individual identifier ID2 and the personal information PD transmitted in step S11B by the second communication transmitting / receiving means 22 (step S12B). Then, the digital broadcast transmission device 1F uses the individual identifier registration unit 10D to associate the individual identifier ID2 received in step S12B, the personal information PD, and the network address Adr of the digital broadcast reception device 5F that transmitted the individual identifier ID2. At the same time, it is registered in the identifier database of the identifier storage means 14C (step S14). Through the operations from step S10B to S14, an identifier (individual identifier ID2) unique to the digital broadcast receiving device 5F is registered in the digital broadcast transmitting device 1F.
  • step S30 and subsequent operations are the same as the operation of the basic digital broadcasting system S E described in FIG 31.
  • the digital broadcast transmitting apparatus 1F is different in that the individual message is transmitted by communication (network) in step S38B.
  • the digital broadcasting system S F without imparting IC card in advance the receiving apparatus, and managing the identifier of each receiving apparatus, it is possible to send a message.
  • the digital broadcast system SG includes digital broadcast transmission devices 1G (1), 1G (1),..., An identifier management device 3 and digital devices installed in each household.
  • the broadcast receiving devices 5G (5), 5G (5),... Are received by the digital broadcast receiving device 5G and received by the viewer.
  • the digital broadcasting system S G is an identifier (specified identifier) identifier management apparatus 3 manages digital broadcast receiving apparatus 5G, 5G, ... delivered separately for each, using the designated identifier, the digital broadcast receiving apparatus 5G It is possible to send individual message information addressed to.
  • the digital broadcasting system S G is capable of transmitting individual message information addressed to the digital broadcasting receiving device 5G by using the designated identifier managed by the identifier managing device 3.
  • the digital broadcasting system S E See FIG. 27.
  • the digital broadcasting system S G is a discrete identifier ID2 for notifying the digital broadcasting receiving apparatus 5G into digital broadcast transmitting apparatus 1F, except that it generates the digital broadcast receiving apparatus 5G are different.
  • An overview of the operation of the digital broadcasting system S G is omitted because it is similar to the operation of the digital broadcasting system S E described in FIG 27.
  • Identifier management apparatus 3 will be omitted digital broadcasting system S E and is for the same configuration.
  • the digital broadcast transmission apparatus 1G includes message information storage means 11, message control information storage means 12, message control information individual update means 13B, identifier storage means 14B, common message generation means 15, and individual message generation.
  • Means 16B, broadcast transmission means 17, identifier registration means 19C, communication transmission / reception means 20, and designated identifier acquisition means 21 are provided.
  • the configuration other than the identifier registration unit 19C is the same as the configuration of the digital broadcast transmission apparatus 1E described with reference to FIG. 28, the same reference numerals are given and description thereof is omitted.
  • the identifier registering unit 19C inputs an individual identifier ID2 that is an identifier generated by the digital broadcast receiving device 5G and the personal information PD of the viewer from the outside, and registers them in the identifier database of the storing unit (identifier storing unit 14B). It is.
  • the identifier registration unit 19C includes an individual identifier duplication determination unit 191C and an individual identifier registration unit 192C.
  • the individual identifier duplication determination unit 191C determines whether or not the individual identifier ID2 input from the outside is registered (stored) in the identifier storage unit 14B. When the individual identifier ID2 is already registered in the identifier storage unit 14B, the individual identifier duplication determination unit 191C displays that fact on a display device (not shown). On the other hand, when the individual identifier ID2 is not yet registered in the identifier storage unit 14B, the instruction for registration is notified to the individual identifier registration unit 192C, and the designation identifier acquisition unit 21 is instructed to acquire the designation identifier ID3. To be notified.
  • the individual identifier registration unit 192C registers (stores) the individual identifier ID2 and the viewer's personal information PD in the identifier storage unit 14B.
  • the individual identifier registration unit 192C registers the individual identifier ID2 in association with the personal information PD in the identifier storage unit 14B when the individual identifier duplication determination unit 191C instructs to register the individual identifier ID2.
  • the individual identifier registration unit 192C outputs the input individual identifier ID2 to the designated identifier notification generation unit 162 of the individual message generation unit 16B.
  • the output to the designated identifier notification generating means 162 is performed to receive registration from the digital broadcast receiving device 5E and deliver an individual message notifying the designated identifier ID3 when the individual identifier ID2 is inputted. It is.
  • the digital broadcast transmitting apparatus 1G can set an identifier (designated identifier) for each receiving apparatus later without distributing an IC card (CAS card or the like) to the receiving apparatus in advance. Thereby, the cost of IC cards and the cost of managing them can be reduced.
  • the digital broadcast transmission apparatus 1G can be operated by a program (message transmission program) that causes a general computer to function as each of the above-described means.
  • the digital broadcast transmitting apparatus 1G is configured to transmit one message to the digital broadcast receiving apparatus 5G (FIG. 41).
  • the digital broadcast transmission apparatus 1G similar to the digital broadcasting transmission apparatus 1A 3 described in FIG. 8, a plurality configure (message generating means) for generating a common message and individual messages,
  • each message generator What is necessary is just to comprise and comprise the CAT production
  • the message generation means includes message information storage means 11, message control information storage means 12, message control information individual update means 13B, identifier storage means 14B, common message generation means 15, and individual message generation.
  • the means 16B, the identifier registration means 19C, and the designated identifier acquisition means 21 may be configured.
  • the common message generation unit 15 and the individual message generation unit 16B identify messages (EMM messages) generated by each message generation unit (not shown) from the outside via an input unit (not shown).
  • the packet identification (PID) of the TS which is information for this, is input and notified to the broadcast transmission means 17.
  • the broadcast transmitting unit 17 multiplexes the CAT generated by the CAT generating unit 71 (FIG. 8) using the MPEG-2 TS system. Thereby, the digital broadcast transmitting apparatus 1G can transmit a plurality of different messages simultaneously.
  • the digital broadcast receiving device 5G includes a broadcast receiving unit 50, a common message processing unit 51, an individual message processing unit 52C, a storage unit 53E, a display unit 54C, an initialization unit 55B, and an individual identifier resetting. Means 58, timing means 59, and individual identifier generation means 60 are provided.
  • FIG. 41 illustrates only an identifier for identifying the digital broadcast receiving device 5G and a configuration related to message distribution using the identifier, and relates to a function of a general digital broadcast receiving device, for example, content reception. The illustration of the configuration to be performed is omitted.
  • the broadcast receiving means 50, the common message processing means 51, the individual message processing means 52C, the display means 54C and the initialization means 55B are the same as the configuration of the digital broadcast receiving apparatus 5E described in FIG. The description will be omitted.
  • the individual identifier resetting means 58, the timing means 59, and the individual identifier generating means 60 are the same as the configuration of the digital broadcast receiving apparatus 5C described with reference to FIG. .
  • the various information stored in the storage unit 53E is obtained by adding the receiver information Ti stored in the storage unit 53C of FIG. 18 to the various information stored in the storage unit 53D of FIG.
  • the digital broadcast receiving device 5G generates the individual identifier ID2 from the random temporary identifier ID1, thereby minimizing the possibility that the individual identifier ID2 is duplicated in the individual digital broadcast receiving device 5G. Further, since the digital broadcast receiving device 5G can receive a message unique to the digital broadcast receiving device 5G by a designated identifier managed by the broadcaster, an IC such as a conventional CAS card for each receiving device can be received. No card is required, and costs can be reduced.
  • the digital broadcast receiving apparatus 5G can be operated by a program (message receiving program) that causes a general computer to function as each of the means described above.
  • the digital broadcast receiving device 5G is configured to receive one message from the digital broadcast transmitting device 1G (FIG. 40). However, as described in FIG. 9, the digital broadcast receiving device 5G receives a plurality of messages. It may be a form in which a message to 5G is extracted and received.
  • the digital broadcast receiving apparatus 5G like the digital broadcast receiving apparatus 5A 3 described in FIG. 9, broadcast and storage means 62, further comprising a CAT processing unit 63 has been described a broadcast receiving unit 50 in FIG. 9 What is necessary is just to comprise by replacing with the receiving means 50A. Thereby, the digital broadcast receiving device 5G can extract and receive a message to itself from different messages.
  • FIG 42 shows a flowchart illustrating the operation of a digital broadcasting system S G according to a seventh embodiment.
  • the operation from step S10C to step S14 the same operation as the digital broadcasting system S C described in FIG 19.
  • the step S30 and subsequent operations are the same as the operation of the digital broadcasting system S E described in FIG 31. Therefore, here, the same step number is attached and description is abbreviate
  • the individual identifier ID2 is displayed on a screen such as a setting screen by the individual identifier display unit 541 of the display unit 54C in order to have the viewer notify the broadcaster of the individual identifier ID2. It was a form to display.
  • a function for displaying the individual identifier ID2 is added on the screen displayed as the data broadcast, similarly to the modified example of the first embodiment described with reference to FIGS.
  • a digital broadcast transmitting apparatus 1G 2 (FIG. 43) of the digital broadcasting system S digital broadcast transmitting apparatus 1G and the digital broadcast receiver 5G of G shown in FIG. 39, described later, respectively and the digital broadcast The configuration is replaced with the receiving device 5G 2 (FIG. 44).
  • the digital broadcast transmission apparatus 1G 2 is configured by adding a data broadcast data storage means 23 and a data carousel encoding means 24 to the digital broadcast transmission apparatus 1G described with reference to FIG.
  • data broadcast data storage means 23 and a data carousel coding means 24 is a digital broadcast transmission apparatus 1A 2 same structure as described in FIG.
  • the configuration other than the data broadcast data storage unit 23 and the data carousel encoding unit 24 is the same as that of the digital broadcast transmission apparatus 1G described with reference to FIG. Therefore, here, the same components as those of the digital broadcast transmission device 1A 2 (FIG. 6) and the digital broadcast transmission device 1G (FIG. 40) are denoted by the same reference numerals and description thereof is omitted.
  • the BML data Dt is added with a program that describes the operation of reading the designated identifier ID3 stored in the storage means 53E of the digital broadcast receiving device 5G 2 (FIG. 44) and displaying it on the screen. .
  • the digital broadcast receiver 5G 2 is a digital broadcast receiving apparatus 5G described in FIG. 41, by adding data carousel decoding means 61, further, as a new display unit 54F by adding BML decoding unit 544 to the display unit 54C It is composed.
  • the configuration other than the data carousel decoding unit 61 and the BML decoding unit 544 is the same as that of the digital broadcast receiving device 5G described with reference to FIG. Therefore, here, the same components as those of the digital broadcast receiving device 5A 2 (FIG. 7) and the digital broadcast receiving device 5G (FIG. 41) are denoted by the same reference numerals and description thereof is omitted.
  • the BML decoding unit 544 reads the designated identifier ID3 from the storage unit 53E and displays it on the screen.
  • the operation of the digital broadcast system according to the modification of the seventh embodiment is basically the same as the operation described in FIG.
  • the digital broadcast receiving apparatus 5G is, in step S10 of FIG. 42, the individual identifier display means 541, while displaying the individual identifier ID2 in the setting screen, the digital broadcast receiver 5G 2 is the BML decoding means 544, The difference is that a function for displaying the individual identifier ID2 is added to the data broadcasting screen.
  • the digital broadcast transmitting apparatus 1G 2 uses the data carousel encoding means 24 to display the individual identifier ID2 and the like as data broadcast after step S10D of FIG. 42 and before step S10. Dt is transmitted.
  • the digital broadcast receiving apparatus 5G 2 decodes data (DII, DDB) transmitted by carousel transmission into BML data Dt by the data carousel decoding means 61, and storage means 53E by the BML decoding means 544.
  • the individual identifier ID2 is read out from the screen and displayed on the screen (step S10).
  • the subsequent operation for the same operation as the digital broadcasting system S G described in FIG 42, a description thereof will be omitted.
  • the digital broadcast system SH includes digital broadcast transmission devices 1H (1), 1H (1),..., An identifier management device 3, and digital devices installed in each home.
  • the broadcast receiving devices 5H (5), 5H (5),... Are received by the digital broadcast receiving device 5H for content (broadcast programs) transmitted from the digital broadcast transmitting device 1H and viewed by the viewer. System.
  • This digital broadcast system SH uses an identifier (designated identifier) managed by the identifier management device 3 to transmit individual message information addressed to the digital broadcast reception device 5H. This is the same as the system SF (see FIG. 34). However, the digital broadcasting system S H is the individual identifier ID2 of notifying the digital broadcasting transmitting apparatus 1H from the digital broadcast receiver 5H, except that it generates the digital broadcast receiving apparatus 5H is different.
  • Identifier management apparatus 3 will be omitted digital broadcasting system S E and is for the same configuration.
  • the digital broadcast transmission apparatus 1H includes message information storage means 11, message control information storage means 12, message control information individual update means 13B, identifier storage means 14C, common message generation means 15, and individual message generation.
  • Means 16C, broadcast transmission means 17, identifier registration means 19D, communication transmission / reception means 20, designated identifier acquisition means 21, and second communication transmission / reception means 22 are provided.
  • FIG. 46 illustrates only an identifier for identifying the digital broadcast receiving device 5H and a configuration related to message delivery using the identifier, and relates to a function of a general digital broadcast transmission device, for example, content delivery.
  • the identifier registration unit 19D receives the individual identifier ID2 that is the identifier generated by the digital broadcast receiving device 5H from the second communication transmitting / receiving unit 22 and registers it in the identifier database of the storage unit (identifier storage unit 14C).
  • the identifier registration unit 19D includes an individual identifier duplication determination unit 191D, an individual identifier registration unit 192D, and an individual identifier re-request unit 193D.
  • Individual identifier overlap determination unit 191D is individual identifier ID2 received by the second communication transmitting and receiving means 22 through the network N 2 is intended to determine whether or not it is registered (stored) in the identifier storage unit 14C. When it is determined that the individual identifier ID2 is not yet registered in the identifier storage unit 14C, the individual identifier duplication determination unit 191D outputs an instruction to register the individual identifier ID2 to the individual identifier registration unit 192D.
  • the individual identifier duplication determination unit 191D issues an instruction to request (re-request) another individual identifier ID2 as an individual identifier re-request. Output to means 193D.
  • the individual identifier registration unit 192D registers (stores) the individual identifier ID2, the personal information PD, and the network address Adr of the digital broadcast receiving device 5F that has transmitted the individual identifier ID2 in the identifier storage unit 14C.
  • the individual identifier registration unit 192D associates the individual identifier ID2, the personal information PD, and the network address Adr and stores the identifier when the individual identifier duplication determination unit 191D instructs to register the individual identifier ID2. Register in the means 14C.
  • the individual identifier registration unit 192D outputs the individual identifier ID2 to the designated identifier notification generation unit 162C of the individual message generation unit 16C.
  • the output to the designated identifier notification generating unit 162C is performed in order to receive the registration to the digital broadcast receiving device 5H and distribute the individual message notifying the designated identifier ID3 when the individual identifier ID2 is received. .
  • the digital broadcast transmitting apparatus 1H does not need to manage a unique identifier for each receiving apparatus in advance in the broadcasting company like the card number of the conventional CAS card.
  • the digital broadcast transmitting apparatus 1H can automate the identifier registration process without registering an identifier (individual identifier ID2) without human intervention.
  • the digital broadcast transmitting apparatus 1H can be operated by a program (message transmission program) that causes a general computer to function as each of the above-described means.
  • the digital broadcast transmitting apparatus 1H transmits one message to the digital broadcast receiving apparatus 5H (FIG. 47).
  • the digital broadcast transmitting apparatus 1H transmits a plurality of messages simultaneously. It does not matter.
  • the digital broadcast transmitting apparatus 1H like the digital broadcast transmission apparatus 1A 3 described in FIG. 8, a plurality configure (message generating means) for generating a common message and individual messages,
  • each message generator What is necessary is just to comprise and comprise the CAT production
  • the message generation means includes message information storage means 11, message control information storage means 12, message control information individual update means 13B, identifier storage means 14C, common message generation means 15, and individual message generation.
  • the means 16C, identifier registration means 19D, and designated identifier acquisition means 21 may be configured.
  • the common message generation unit 15 and the individual message generation unit 16C identify messages (EMM messages) generated by each message generation unit (not shown) from the outside via an input unit (not shown).
  • the packet identification (PID) of the TS which is information for this, is input and notified to the broadcast transmission means 17.
  • the broadcast transmitting unit 17 multiplexes the CAT generated by the CAT generating unit 71 (FIG. 8) using the MPEG-2 TS system.
  • the digital broadcast transmitting apparatus 1H can transmit a plurality of different messages simultaneously.
  • the digital broadcast receiving apparatus 5H includes a broadcast receiving unit 50, a common message processing unit 51, an individual message processing unit 52D, a storage unit 53E, a display unit 54D, an initialization unit 55B, and an individual identifier registration request.
  • Means 56C, communication transmission / reception means 57B, timing means 59, and individual identifier generation means 60 are provided.
  • the configuration other than the storage unit 53E, the individual identifier registration request unit 56C, the timing unit 59, and the individual identifier generation unit 60 is the same as the configuration of the digital broadcast receiving device 5F described with reference to FIG.
  • the individual identifier registration requesting means 56C, the timing means 59 and the individual identifier generating means 60 are the same as the configuration of the digital broadcast receiving apparatus 5D described with reference to FIG. Are the same. Therefore, here, the same reference numerals are given and description thereof is omitted.
  • the digital broadcast receiving device 5H can be operated by a program (message receiving program) that causes a general computer to function as each of the means described above.
  • the digital broadcast receiving apparatus 5H receives one message from the digital broadcast transmitting apparatus 1H (FIG. 46). However, as described in FIG. 9, the digital broadcast receiving apparatus 5H receives a plurality of messages from the digital broadcast receiving apparatus. It may be a form in which a message to 5H is extracted and received.
  • the digital broadcast receiver 5H like the digital broadcast receiving apparatus 5A 3 described in FIG. 9, broadcast and storage means 62, further comprising a CAT processing unit 63 has been described a broadcast receiving unit 50 in FIG. 9 What is necessary is just to comprise by replacing with the receiving means 50A. Thereby, the digital broadcast receiving device 5H can extract and receive a message to itself from different messages.
  • FIG 48 shows a flowchart illustrating the operation of a digital broadcasting system S H according to the eighth embodiment.
  • the operation from step S10E to step S14 is the same as the operation of the digital broadcast system SD described in FIG.
  • the step S30 and subsequent operations are the same as the operation of the digital broadcasting system S F described in FIG 38. Therefore, here, the same step number is attached and description is abbreviate

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  • Engineering & Computer Science (AREA)
  • Signal Processing (AREA)
  • Multimedia (AREA)
  • General Engineering & Computer Science (AREA)
  • Two-Way Televisions, Distribution Of Moving Picture Or The Like (AREA)

Abstract

L'invention porte sur un dispositif de transmission de message qui peut individuellement spécifier des dispositifs de réception et distribuer des messages provenant d'un fournisseur de radiodiffusion, même sans utiliser des cartes IC. Un dispositif de transmission de message (1C) comprend un moyen d'enregistrement d'identificateurs (19) dans lequel des identificateurs individuels servant à identifier des dispositifs de réception de message sont introduits depuis l'extérieur, et ensuite stockés par écriture dans un moyen de stockage d'identificateurs (14). Le dispositif de transmission de message (1C) est caractérisé par un moyen de génération de message individuel (16) générant des messages individuels adressés aux identificateurs individuels stockés dans le moyen de stockage d'identificateurs (14).
PCT/JP2011/055755 2011-03-11 2011-03-11 Dispositif de transmission de message, dispositif de réception de message et système de distribution de message WO2012124013A1 (fr)

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PCT/JP2011/055755 WO2012124013A1 (fr) 2011-03-11 2011-03-11 Dispositif de transmission de message, dispositif de réception de message et système de distribution de message

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PCT/JP2011/055755 WO2012124013A1 (fr) 2011-03-11 2011-03-11 Dispositif de transmission de message, dispositif de réception de message et système de distribution de message

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WO2012124013A1 true WO2012124013A1 (fr) 2012-09-20

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Citations (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2011044950A (ja) * 2009-08-21 2011-03-03 Nippon Hoso Kyokai <Nhk> メッセージ送信装置、メッセージ受信装置およびメッセージ配信システム

Patent Citations (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2011044950A (ja) * 2009-08-21 2011-03-03 Nippon Hoso Kyokai <Nhk> メッセージ送信装置、メッセージ受信装置およびメッセージ配信システム

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