WO2010110358A1 - 受信装置、プログラム、及び受信方法 - Google Patents
受信装置、プログラム、及び受信方法 Download PDFInfo
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- WO2010110358A1 WO2010110358A1 PCT/JP2010/055191 JP2010055191W WO2010110358A1 WO 2010110358 A1 WO2010110358 A1 WO 2010110358A1 JP 2010055191 W JP2010055191 W JP 2010055191W WO 2010110358 A1 WO2010110358 A1 WO 2010110358A1
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04H—BROADCAST COMMUNICATION
- H04H60/00—Arrangements for broadcast applications with a direct linking to broadcast information or broadcast space-time; Broadcast-related systems
- H04H60/76—Arrangements characterised by transmission systems other than for broadcast, e.g. the Internet
- H04H60/81—Arrangements characterised by transmission systems other than for broadcast, e.g. the Internet characterised by the transmission system itself
- H04H60/82—Arrangements characterised by transmission systems other than for broadcast, e.g. the Internet characterised by the transmission system itself the transmission system being the Internet
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04N—PICTORIAL COMMUNICATION, e.g. TELEVISION
- H04N5/00—Details of television systems
- H04N5/44—Receiver circuitry for the reception of television signals according to analogue transmission standards
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04B—TRANSMISSION
- H04B1/00—Details of transmission systems, not covered by a single one of groups H04B3/00 - H04B13/00; Details of transmission systems not characterised by the medium used for transmission
- H04B1/06—Receivers
- H04B1/16—Circuits
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04H—BROADCAST COMMUNICATION
- H04H20/00—Arrangements for broadcast or for distribution combined with broadcast
- H04H20/20—Arrangements for broadcast or distribution of identical information via plural systems
- H04H20/24—Arrangements for distribution of identical information via broadcast system and non-broadcast system
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04H—BROADCAST COMMUNICATION
- H04H60/00—Arrangements for broadcast applications with a direct linking to broadcast information or broadcast space-time; Broadcast-related systems
- H04H60/09—Arrangements for device control with a direct linkage to broadcast information or to broadcast space-time; Arrangements for control of broadcast-related services
- H04H60/14—Arrangements for conditional access to broadcast information or to broadcast-related services
- H04H60/15—Arrangements for conditional access to broadcast information or to broadcast-related services on receiving information
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04H—BROADCAST COMMUNICATION
- H04H60/00—Arrangements for broadcast applications with a direct linking to broadcast information or broadcast space-time; Broadcast-related systems
- H04H60/35—Arrangements for identifying or recognising characteristics with a direct linkage to broadcast information or to broadcast space-time, e.g. for identifying broadcast stations or for identifying users
- H04H60/38—Arrangements for identifying or recognising characteristics with a direct linkage to broadcast information or to broadcast space-time, e.g. for identifying broadcast stations or for identifying users for identifying broadcast time or space
- H04H60/41—Arrangements for identifying or recognising characteristics with a direct linkage to broadcast information or to broadcast space-time, e.g. for identifying broadcast stations or for identifying users for identifying broadcast time or space for identifying broadcast space, i.e. broadcast channels, broadcast stations or broadcast areas
- H04H60/42—Arrangements for identifying or recognising characteristics with a direct linkage to broadcast information or to broadcast space-time, e.g. for identifying broadcast stations or for identifying users for identifying broadcast time or space for identifying broadcast space, i.e. broadcast channels, broadcast stations or broadcast areas for identifying broadcast areas
Definitions
- the present invention relates to a receiving apparatus capable of receiving broadcasts and receiving contents distributed in parallel with the broadcasts.
- IP retransmission that distributes video and audio of the same content as broadcasting in almost real time has been performed through a dedicated IP communication network.
- IP re-transmission since the broadcast target area is defined by law, distribution outside the broadcast target area permitted by the broadcast station is not possible. For this reason, content is not distributed outside the broadcast target area by controlling the area to be distributed via a closed communication network different from the Internet called NGN (Next Generation Network).
- NGN Next Generation Network
- the analog broadcast when the broadcast performed via the broadcast network is a conventional analog broadcast, the analog broadcast is more effective than the broadcast performed via the mobile communication network or the Internet network.
- the quality since the quality is generally inferior, there is a problem that the receiver preferentially receives an analog broadcast having a lower quality. That is, when the quality of the content on the broadcast network side is low, the content is switched to the mobile communication network and the content of the mobile communication network is output. If the broadcast wave from the broadcast network is an analog broadcast wave, the analog broadcast The quality of the wave content is usually inferior to the quality of the broadcast content via the Internet, and the user views the low-quality broadcast with priority.
- An object of the present invention is to provide a broadcast receiver, a control method, and a program that can improve the usability of the broadcast receiver.
- a receiving apparatus basically includes a broadcast receiving unit that receives, reproduces and outputs a broadcast of an instructed frequency, and a signal level of the broadcast.
- a signal level determination unit that determines whether or not the broadcast signal level is equal to or higher than a predetermined value, and reception and playback of content distributed via a predetermined network that is permitted to be viewed on the condition that the broadcast signal level is equal to or higher than the predetermined value
- the content receiving unit outputs the content in parallel, and the content receiving unit receives and outputs the content in parallel for a period until the determination of the signal level is made after the reception frequency is instructed. It operates so as to perform processing necessary for performing the above.
- processing necessary for receiving and outputting the content includes processing for establishing communication with a server that distributes the content and performing predetermined authentication.
- the processing necessary for receiving and outputting the content is from acquisition of information for accessing the content to start playback of the content. Processing is included.
- the period further includes a period for performing a process of confirming whether or not the current position is within the broadcast target area of the broadcast.
- the content is distributed in parallel with the broadcast by a broadcaster of the broadcast with a plan to be distributed within the broadcast target area. .
- the receiving apparatus has found that the signal level of the broadcast has fallen below a predetermined value by the determination by the signal level determination unit after the content reproduction unit has started playback and output of the content.
- the output of the content is stopped, the output by the broadcast receiving unit is started, and then the signal level of the broadcast is determined by the determination by the signal level determining unit.
- a controller that stops output by the broadcast receiving unit and starts outputting content by the content receiving unit when it is determined that is equal to or greater than a predetermined value.
- the receiving apparatus basically includes a broadcast receiving unit that receives, reproduces, and outputs a broadcast of an instructed frequency, and whether the signal level of the broadcast is equal to or higher than a predetermined value.
- a signal level determination unit for determining whether or not content is received on condition that the signal level of the broadcast is equal to or higher than a predetermined value, and received and played back and output via a predetermined network And the reception of the content by the content receiving unit when the signal level determining unit determines that the signal level of the broadcast has fallen below a predetermined value after the content reproduction unit starts to output the content.
- the output of the content is stopped and the output by the broadcast receiving unit is started, and then the signal level determining unit Determined by, when the signal level of the broadcast is found to be equal to or larger than a predetermined value, the output from the broadcast receiving unit is stopped, and a control unit to start the output of the content by the content receiving unit.
- the present invention can be grasped as a program according to a third aspect for causing a computer to function as the receiving apparatus according to the first and second aspects.
- the receiving method includes a broadcast receiving step of receiving, reproducing and outputting a broadcast of an instructed frequency, and a signal for determining whether the signal level of the broadcast is equal to or higher than a predetermined value.
- the content receiving step after the reception frequency is instructed, a process necessary for receiving and outputting the content is performed in parallel until the determination on the signal level is made. It is.
- FIG. 1 It is a figure which shows the structure of the system which concerns on one Embodiment of this invention. It is a block diagram which shows the structure of the receiver in the system of FIG. It is a figure which shows an example of the URL database stored in the receiver of FIG. 3 is a flowchart showing a channel selection process in the receiver of FIG. 2. It is a flowchart which shows the reception level monitoring process in the receiver of FIG. FIG. 5 is a diagram illustrating an effect of the channel selection process of FIG. 4. It is a figure which shows the effect by the reception level monitoring process of FIG. 12 is a flowchart illustrating another example of channel selection processing.
- FIG. 1 shows the configuration of a system according to an embodiment of the present invention.
- 11 is a broadcasting station for broadcasting companies to produce and broadcast programs
- 12 is a stationary receiver for viewers to receive programs broadcast by the broadcasting station 11
- 13 is broadcasting station 11.
- 14 and 15 are the Internet and wireless or wired IP communication network interposed between the broadcast station 11 and the receivers 12 and 13, and 16 is a receiver It is a GPS satellite for providing position information to the aircraft 13.
- the broadcasting station 11 has a broadcasting network 11a composed of a transmitting station and a relay station.
- a broadcaster broadcasts a pre-recorded program or a live broadcast program via the broadcast network 11a.
- the predetermined content is distributed to the receivers 12 and 13 via the Internet 14 by IP broadcast or the like. Service (hereinafter referred to as "Internet service").
- Internet service Service
- the predetermined content for example, the same content as a program that is broadcast in parallel, or the content added with other content corresponds to this.
- the broadcast by the broadcast network 11a is a terrestrial analog radio broadcast, it corresponds to an audio content having the same content as the broadcast program, and a video, a still image, advertisement information, etc. added thereto.
- the content may be unrelated to the broadcast program.
- the receivers 12 and 13 can perform reproduction output based on the Internet service corresponding to the broadcast only when it can be confirmed that the receiver 12 or 13 exists in the broadcast target area of the received broadcast.
- the broadcast target area is defined as “a certain area where it is recognized that it is possible to simultaneously receive broadcasts of the same broadcast program” defined by the Broadcasting Law. Whether or not it exists in the broadcast target area is confirmed based on the reception signal level of the broadcast and the success or failure of predetermined authentication.
- FIG. 2 is a block diagram showing the configuration of the receivers 12 and 13. As shown in the figure, the receiver includes a main control unit 17 that controls each unit of the receiver, a tuner unit 18 that receives an instructed frequency in response to an instruction from the main control unit 17, and a tuner unit 18.
- a demodulator 19 that demodulates the received signal and supplies it to the main controller 17, a current position detector 20 that acquires the current position and supplies it to the main controller 17 in accordance with an instruction from the main controller 17, and the main controller 17 ROM 21 for storing programs and data used by the CPU, RAM 22 used as a work area by the main control unit 17, a speaker 23 for outputting audio, and supplying audio signals to the speaker 23 in accordance with instructions from the main control unit 17,
- An audio output control unit 24 that controls the output of the audio signal, a display device 25 for displaying images and characters, and a video signal is supplied to the display device 25 according to instructions from the main control unit 17, and Yo A communication unit 28 for the display control unit 26, operation unit 27, and the main control unit 17 for performing an instruction operation to the main control unit 17 for controlling the display to access a server on the Internet.
- the current position detection unit 20 acquires the current position using a GPS receiver or the like.
- the main control unit 17 receives a broadcast performed by the broadcast station 12 via the broadcast network 11a by the tuner unit 18 and simultaneously transmits content distributed by the Internet service of the broadcast station 12 by the communication unit 28. Receive. At that time, the content is reproduced and output only when it is confirmed that the broadcast can be sufficiently received so that the content can be viewed only in the broadcast target area of the broadcast, and the user can view the content. . If the broadcast wave from the broadcast network 11a cannot be received or sufficient reception quality cannot be ensured, the broadcast is regarded as outside the broadcast target area, and the corresponding content is reproduced and output. Not performed.
- FIG. 3 shows an example of the URL database stored in the ROM 21.
- the frequency of each broadcast station, the name of the broadcast station, and the URL of the resource related to the Internet service provided by the broadcast station are registered for each prefecture.
- the reception frequency and URL of each broadcasting station such as “AAA_FM”, “BBB_FM”, and “CCC_FM” are registered.
- the main control unit 17 Based on the current position and the frequency being received, the main control unit 17 refers to the URL database, and can acquire the URL related to the Internet service by the broadcasting station of the frequency.
- a plurality of URLs may correspond to one broadcasting station.
- the broadcast station provides an Internet service using a plurality of URLs.
- the main control unit 17 can switch the content viewed by the user by accessing the server indicated by each URL in accordance with the user's instruction. For broadcast stations that perform only one IP broadcast as an Internet service, only one URL is registered. For a broadcasting station in which no URL is registered, this means that no internet service is provided. In this case, the main control unit 17 unconditionally performs reproduction output based on the broadcast wave.
- the main control unit 17 needs to associate the current position obtained by the current position detecting unit 20 with the prefecture. is there. If the current position obtained by the current position detection unit 20 is based on latitude and longitude, if the receiver is incorporated in a device having a function that can specify a prefecture, such as a car navigation device, Using this function, the prefecture corresponding to the latitude and longitude can be specified. Even when such a function cannot be used, the name of the prefecture can be acquired by making an inquiry to a server on the Internet having a function of specifying the corresponding prefecture based on the latitude and longitude.
- URLs related to Internet services are registered, but instead of URLs, other information that enables access to resources related to Internet services, for example, servers that provide Internet services An IP address may be registered.
- URL information of each broadcasting station is managed in units of prefectures, classification by municipalities may be provided below the prefectures, and management may be performed in units of combinations of prefectures and municipalities.
- URL information of each broadcasting station is managed in units of prefectures, but not limited to this, units for other predetermined regions, For example, you may make it manage in a unit according to the actual situation of a region like a country unit, a state unit, a county unit, a city unit, a town unit.
- one frequency is associated with one broadcast station, but there may be a case where one broadcast station broadcasts from a plurality of relay stations at different frequencies. These frequencies may be associated with each other.
- FIG. 4 is a flowchart showing channel selection processing by the main control unit 17 in the receiver 12 or 13. This process is performed according to the selection of the broadcast station 11 to be viewed by the user according to a predetermined program stored in the ROM 21.
- the receiver 12 or 13 receives the terrestrial analog radio broadcast from the broadcast station 11 and, when a predetermined condition is satisfied, receives content distributed by IP broadcast as a corresponding Internet service. be able to.
- the main control unit 17 first responds to the video and audio based on the broadcast wave or IP broadcast that has been received so far. Is stopped (steps 401 and 402). If the IP broadcast has been received so far, since the connection with the server that is performing the IP broadcast has been established, the connection with the server is disconnected (step 403). Next, the tuner unit 18 is instructed to change the reception frequency to the selected frequency (step 404).
- the current position is acquired by the current position detector 20 (step 405).
- the URL database is referred to as described above to identify the broadcasting station of the frequency (step 406), and whether or not the broadcasting station is performing IP broadcasting. Is determined (step 407). As described above, this determination can be made based on whether or not the URL associated with the broadcast station is registered in the URL database. If it is determined that the IP broadcast is not performed, a request to start decoding of the broadcast wave having the changed frequency is made to the demodulator 19 (step 418), and the process proceeds to step 419.
- step 407 If it is determined in step 407 that IP broadcast is being performed, in order to access the resource of the URL related to the IP broadcast, an attempt is made to establish communication with the server indicated by the URL (step 408). Is determined (step 409). If it is determined that it has not been established, the demodulator 19 is requested to start decoding the broadcast wave having the changed frequency (step 418), and the process proceeds to step 419.
- step 409 If it is determined in step 409 that the communication has been established, a predetermined authentication process is performed with the connection destination server (step 410), and it is determined whether the authentication has been successful (step 411). . If it is determined that the authentication is successful, the reproduction of the content distributed as IP broadcast from the connection destination server is started (step 412), and the process proceeds to step 419. If it is determined that the authentication has not been successful, a request to start decoding the broadcast wave having the changed frequency is made to the demodulator 19 (step 413), and the process proceeds to step 419. It is to be noted that the authentication is required to receive the IP broadcast because it is possible to receive the IP broadcast using a personal computer from any region as long as the URL related to the IP broadcast is known.
- IP broadcasts Since it will lead to the provision of IP broadcasts to any area far beyond the broadcast target area authorized as a broadcaster, restrictions are imposed so that the IP broadcast can be viewed only on specific devices. It is to do.
- the authentication means user authentication, device authentication, or the like can be used.
- steps 414 to 417 it is confirmed whether or not the reception quality after the change of the reception frequency (step 404) is sufficiently secured. That is, after waiting for the state of the reception signal after the reception frequency change to stabilize (step 414), the reception signal level is acquired (step 415), and it is determined whether the reception signal level is equal to or higher than a predetermined value. (Tep 416). If it is determined that the value is not equal to or greater than the predetermined value, the demodulator 19 is requested to start decoding of the broadcast wave having the changed frequency (step 417), and the process proceeds to step 419.
- the process proceeds to step 419 without requesting the start of broadcast wave decoding.
- step 419 it is determined whether a broadcast wave decoding start request (steps 413, 417, or 418) has been received. If it is determined that there is a request, a sound source for audio output is set on the demodulator 19 side (step 420). In other words, in this case, since viewing of the IP broadcast corresponding to the broadcast after the frequency change cannot be permitted, the audio output control unit is configured so that the program can be viewed based on the broadcast wave of the broadcast after the frequency change. 24, the audio signal from the demodulator 19 is output. Furthermore, the stop state of the sound output via the sound output control unit 24 is canceled (step 421), and the process of FIG. In this case, the user can view the terrestrial analog radio broadcast from the broadcast station 11.
- step 419 If it is determined in step 419 that there has been no broadcast wave decoding start request, the audio output sound source is switched to the IP broadcast decoder in order to enable viewing of the IP broadcast corresponding to the received broadcast after the frequency change.
- step 422 the audio output and video output stop states are canceled (steps 423 and 424). That is, based on the content of the IP broadcast received by the communication unit 28, the output of the audio signal to the audio output control unit 24 and the output of the image signal to the display control unit 26 are performed, thereby enabling the viewing of the IP broadcast. Thereafter, the process of FIG. 4 is terminated. In this case, the user can view the IP broadcast from the broadcast station 11.
- FIG. 5 is a flowchart showing reception level monitoring processing by the main control unit 17. This process is repeatedly performed at predetermined intervals after the channel selection process of FIG. 4 according to a predetermined program stored in the ROM 21.
- reception level monitoring process based on the received signal level of the terrestrial analog radio broadcast that is being received, a process for switching a target that can be viewed between the analog broadcast and the corresponding IP broadcast is performed as necessary.
- the main control unit 17 first acquires the received signal level from the demodulating unit 19 for the analog broadcast being received (step 501). Next, it is determined whether the acquired received signal level is equal to or higher than a predetermined value (step 502). If it is determined that the received signal level is not equal to or higher than the predetermined value, the receivers 12 and 13 cannot regard the analog broadcast being received as being within the broadcast target area. Therefore, in this case, viewing of the corresponding IP broadcast cannot be permitted. Therefore, it is determined whether or not the IP broadcast is being viewed (step 516). If it is determined that the IP broadcast is being viewed, the continuation of the IP broadcast cannot be permitted, so that the target of the viewing is switched to the analog broadcast being received.
- step 517 and 518 the output of video and audio is stopped (steps 517 and 518), the sound source for audio output is switched to the broadcast wave decoder to cancel the stop of audio output (steps 519 and 520), and the processing of FIG. . If it is determined in step 516 that the IP broadcast is not being viewed, the processing in FIG. In this case, analog broadcast viewing is continued.
- step 502 if it is determined in step 502 that the received signal level is equal to or higher than the predetermined value, the receivers 12 and 13 can be regarded as existing in the broadcast target area for the analog broadcast being received. Therefore, in this case, viewing of the corresponding IP broadcast can be permitted. Therefore, it is determined whether or not the IP broadcast is being viewed (step 503). If it is determined that viewing is in progress, viewing of the IP broadcast may be continued as it is, and the processing of FIG. If it is determined that the IP broadcast is not being viewed, it is determined whether the IP broadcast is being reproduced (step 504). If it is determined that playback is in progress, IP broadcast viewing can be started by simply switching the sound source for audio output to the IP broadcast decoder.
- step 504 If it is determined in step 504 that the reproduction is not being performed, it is checked whether or not other conditions for viewing the IP broadcast are satisfied, and if satisfied, reproduction based on the IP broadcast is started (steps 504 to 510). . That is, it is determined whether there is a corresponding IP broadcast for the analog broadcast being received (step 505). This determination can be made in the same manner as in steps 405 to 407 in FIG. If it is determined that the IP broadcast exists, communication with the IP broadcast server is established, authentication is performed, and playback based on the IP broadcast is started in the same manner as in steps 408 to 412 of FIG. 4 (step 506). To 510). Thereafter, the process proceeds to step 511.
- step 511 the video and audio output is stopped (steps 511 and 512), and viewing of the IP broadcast corresponding to the analog broadcast being received is started in the same manner as in steps 422 to 424 in FIG. Therefore, the sound source for audio output is switched to the IP broadcast decoder, the audio output and video output off states are canceled (steps 513 to 515), and the processing in FIG. 5 is terminated. In this case, viewing of the IP broadcast is started. If it is determined in step 505 that there is no IP broadcast, if it is determined in step 507 that communication has not been established, and if it is determined in step 509 that authentication has not been successful, the process of FIG. Exit. In this case, analog broadcast viewing is continued.
- FIG. 6 shows the effect of the tuning process of FIG.
- FIG. 6 (a) shows the progress status when each process in the channel selection process is performed in order
- FIG. 6 (b) shows the progress status of each process in the channel selection process of this embodiment of FIG. It is shown.
- the frequency change period A from the time t1 (step 904) when the frequency change instruction is given until the frequency change is completed, and the frequency change.
- step 905 the reception level acquisition waiting period B until the reception level is acquired (step 906), the connection with the IP broadcast server is established, and authentication is completed (step 908 to 914) network connection period C, IP broadcast reproduction start D (step 915), IP broadcast display wait E (steps 916, 917), and IP broadcast display start F (step 918) proceed in series and are completed. At the time t2, viewing of the IP broadcast is started.
- the frequency change from the time t1 (step 404) when the frequency change instruction is given until the frequency change is completed.
- network connection period C steps 405 to 411)
- IP broadcast reproduction start D step 412
- the IP broadcast display wait E steps 422 and 423
- the IP broadcast display start F step 424
- FIG. 7 shows the effect of the reception level monitoring process of FIG.
- FIG. 7A shows the progress status when each process in the reception level monitoring process is performed in order
- FIG. 7B shows the progress status of the reception level monitoring process of the present embodiment of FIG. It is shown.
- the IP broadcast is started to be viewed.
- FIG. As shown in FIG.
- the network connection period G (steps 107 to 110), IP broadcast playback start H (step 111), and IP broadcast display wait
- the period I (step 112) and the IP broadcast display start J (steps 113 and 114) proceed in series, and at the time t2 when completed, viewing of the IP broadcast is started.
- the reception level monitoring process of the present embodiment as shown in FIG. 7B, when the IP broadcast that starts viewing is already played, the IP broadcast can be viewed.
- time t3 when only the IP broadcast display start processing period J (steps 511 to 515) elapses from time t1 (step 504) at which it is determined that IP broadcast viewing is started. Therefore, according to the reception level monitoring process of the present embodiment, when the IP broadcast has already been reproduced, the IP broadcast can be viewed from the point when it is determined that the IP broadcast can be viewed. It is possible to shorten the time until it becomes.
- FIG. 8 is a flowchart showing another example of the channel selection process.
- This channel selection process adds step 801 to the channel selection process of FIG. 4, replaces steps 405 and 406 of FIG. 4 with step 806, replaces steps 416 and 417 of FIG. 4 with steps 820 to 824, Steps 813, 814, 816, and 817 are added.
- Steps 401 to 404 in FIG. 4 are the same as steps 802 to 805 in FIG. 8
- steps 407 to 413 in FIG. 4 are the same as steps 807 to 812 and 815 in FIG. 8 and step 414 in FIG.
- And 415 are the same processes as steps 818 and 819 in FIG. 8 and steps 418 to 424 in FIG. 4 are the same processes as steps 825 to 831 in FIG.
- the frequency to be set is associated with the broadcast station in advance, so that the corresponding broadcast station and the URL associated with the corresponding IP broadcast are immediately identified from the set frequency. The Then, before confirming whether or not the current position is within the broadcast target area of the broadcast station, the connection is made to the IP broadcast server.
- the main control unit 17 sets the IP broadcast reception determination value J to undetermined (step 801).
- the IP broadcast reception determination value J stores whether or not it has been determined whether or not viewing of the IP broadcast corresponding to the broadcast being received is permitted at the current position, and the determination result.
- an initial value a value indicating that the determination is not yet performed, for example, “0” is set.
- an instruction is given to set the reception frequency to the frequency of the broadcasting station selected by the user (steps 802 to 805), and based on the set frequency.
- the broadcast station is identified, and it is determined whether or not the broadcaster of the broadcast station provides the IP broadcast (steps 806 and 807).
- This determination is performed in a predetermined database in which URLs indicating IP broadcast resources provided by each broadcast frequency, broadcast stations that broadcast at each broadcast frequency, and broadcasters of the respective broadcast stations are associated and registered. Can be done on the basis. That is, if the IP broadcast URL corresponding to the broadcast station of the set frequency is registered in the database, it can be determined that the IP broadcast is provided, and if it is not registered, the IP broadcast is not provided. .
- This database is constructed, for example, when the frequency of each broadcasting station is preset by a user operation.
- steps 810 to 817 and the processing of steps 818 to 824 are performed in parallel. That is, in the processing of steps 818 to 824, first, it is determined whether or not the received signal level is equal to or higher than a predetermined value as in the case of steps 414 to 416 in FIG. 4 (steps 818 to 820). When it is determined that the current position is equal to or greater than the predetermined value, the current position is acquired, and it is determined whether the broadcast station selected by the user is permitted to view at the current position (steps 821 and 822).
- This determination can be made with reference to a database in which each broadcast target area is associated with a broadcast station that can be viewed in each broadcast target area.
- the URL database shown in FIG. 3 can be used as this database.
- a selected broadcast station for example, “CCC_FM”
- the IP broadcast reception determination value J is set to a value indicating the determination result, for example, “1” (step 823), and the process proceeds to step 826.
- the IP broadcast reception determination value J is set to a value indicating the determination result, for example, “2” (step 824), and the process proceeds to step 826.
- Steps 810 to 817 first, when authentication is successful as in Steps 410 to 413 of FIG. 4, IP broadcast playback is started (Steps 810 to 812), or authentication is not successful. In this case, a broadcast wave decoding request is made (steps 810, 811 and 815).
- the apparatus further waits until the value of the IP broadcast determination value J is not determined, for example, “0” (step 813). That is, it waits for the setting of the IP broadcast determination value J in step 823 or 824 to be completed.
- the value of the IP broadcast determination value J is a value indicating that viewing is permitted, for example “1”, or viewing is permitted.
- step 814 It is determined whether or not the value is “2”, for example (step 814). If it is determined that the value indicates that viewing is permitted, the process proceeds directly to step 826. If it is determined that the value indicates that viewing is not permitted, a broadcast wave decoding request is made (step 815), reproduction of the IP broadcast is stopped (step 816), and the network with the IP broadcast server After disconnecting the communication (step 817), the process proceeds to step 826.
- step 807 determines whether there is no IP broadcast, or if it is determined in step 809 that communication cannot be established.
- a broadcast wave decoding request is made (step 825), and the flow proceeds to step 826.
- step 826 analog broadcasting or IP broadcasting can be viewed by broadcast waves in the same manner as in steps 419 to 424 in FIG. 4 (steps 826 to 831).
- Step 805 after the instruction to change the frequency (step 805), until the reception state after the frequency change is stabilized and the IP broadcast reception determination value J can be set ( Steps 818 to 824)
- the channel selection operation is performed and the analog broadcast is performed.
- the time until the IP broadcast can be viewed can be shortened.
- the present embodiment it is possible to shorten the time until the content corresponding to the broadcast of the frequency can be viewed after the reception frequency is instructed. Therefore, the usability of the broadcast receiver can be improved.
- the tuner unit 18, the demodulator 19, the main control unit 17 and the audio output control unit 24 are broadcast reception units
- the main control unit signal 17 is a signal level determination unit
- the communication unit 28 and the main control unit 17 are The content receiving unit and the main control unit 17 each function as a control unit.
- the present invention is not limited to the above-described embodiment, and can be implemented with appropriate modifications.
- the case where a terrestrial analog radio broadcast is performed as a broadcast performed via the broadcast network 11a has been described.
- the invention can be applied.
- 11 broadcast station, 11a: broadcast network, 12: stationary receiver, 13: mobile receiver, 14: internet, 15: IP communication network, 16: GPS satellite, 17: main control unit, 18: tuner unit, 19: Demodulation unit, 20: Current position detection unit, 21: ROM, 22: RAM, 23: Speaker, 24: Audio output control unit, 25: Display device, 26: Display control unit, 27: Operation unit, 28: Communication Department.
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Abstract
Description
つまり、上述ステップ823又は824におけるIP放送判定値Jの設定が完了するのを待つ。未判定であることを示す値でなくなったことを検出すると、IP放送判定値Jの値が、視聴が認められていることを示す値、たとえば「1」であるか、又は視聴が認められていないことを示す値、たとえば「2」であるかどうかを判定する(ステップ814)。視聴が認められていることを示す値であると判定した場合には、そのままステップ826へ進む。視聴が認められていないことを示す値であると判定した場合には、放送波のデコード要求を行い(ステップ815)、IP放送の再生を停止し(ステップ816)、さらにIP放送サーバとのネットワーク通信を切断してから(ステップ817)、ステップ826へ進む。
Claims (9)
- 指示された周波数の放送を受信し、再生して出力する放送受信部と、
前記放送の信号レベルが所定値以上かどうかを判定する信号レベル判定部と、
前記放送の信号レベルが所定値以上であることを条件として視聴が認められ、所定のネットワークを介して配信されるコンテンツを受信し、再生して出力するコンテンツ受信部とを備え、
前記コンテンツ受信部は、前記受信周波数の指示がなされた後、前記信号レベルについての判定がなされるまでの期間、並行して、前記コンテンツの受信及び出力を行うために必要な処理を行うものであることを特徴とする受信装置。 - 前記コンテンツの受信及び出力を行うために必要な処理には、前記コンテンツの配信を行うサーバとの通信を確立し、所定の認証を行う処理が含まれることを特徴とする請求項1に記載の受信装置。
- 前記コンテンツの受信及び出力を行うために必要な処理には、前記コンテンツにアクセスするための情報の取得から、前記コンテンツの再生を開始するまでの処理が含まれることを特徴とする請求項1又は2に記載の受信装置。
- 前記期間にはさらに、現在位置が前記放送の放送対象地域内にあるかどうかを確認する処理を行う期間が含まれることを特徴とする請求項1~3のいずれか1項に記載の受信装置。
- 前記コンテンツは前記放送と並行して前記放送の放送事業者により前記放送の放送対象地域内に配信することを予定して配信されるものであることを特徴とする請求項1~4のいずれか1項に記載の受信装置。
- 前記コンテンツ受信部によるコンテンツの再生出力の開始後、前記信号レベル判定部による判定により、前記放送の信号レベルが所定値を下回ったことが判明したとき、前記コンテンツ受信部によるコンテンツの受信を継続したまま、該コンテンツの出力を停止させ、前記放送受信部による出力を開始させるとともに、その後、前記信号レベル判定部による判定により、前記放送の信号レベルが所定値以上となったことが判明したとき、前記放送受信部による出力を停止させ、前記コンテンツ受信部によるコンテンツの出力を開始させる制御部を有することを特徴とする請求項1~5のいずれか1項に記載の受信装置。
- 指示された周波数の放送を受信し、再生して出力する放送受信部と、
前記放送の信号レベルが所定値以上かどうかを判定する信号レベル判定部と、
前記放送の信号レベルが所定値以上であることを条件として視聴が認められ、所定のネットワークを介して配信されるコンテンツを受信し、再生して出力するコンテンツ受信部と、
前記コンテンツ受信部によるコンテンツの再生出力の開始後、前記信号レベル判定部による判定により、前記放送の信号レベルが所定値を下回ったことが判明したとき、前記コンテンツ受信部によるコンテンツの受信を継続したまま、該コンテンツの出力を停止させ、前記放送受信部による出力を開始させるとともに、その後、前記信号レベル判定部による判定により、前記放送の信号レベルが所定値以上となったことが判明したとき、前記放送受信部による出力を停止させ、前記コンテンツ受信部によるコンテンツの出力を開始させる制御部とを具備することを特徴とする受信装置。 - コンピュータを請求項1~7の受信装置として機能させることを特徴とするプログラム。
- 指示された周波数の放送を受信し、再生して出力する放送受信工程と、
前記放送の信号レベルが所定値以上かどうかを判定する信号レベル判定工程と、
前記放送の信号レベルが所定値以上であることを条件として視聴が認められ、所定のネットワークを介して配信されるコンテンツを受信し、再生して出力するコンテンツ受信工程とを備え、
前記コンテンツ受信工程では、前記受信周波数の指示がなされた後、前記信号レベルについての判定がなされるまでの間、並行して、前記コンテンツの受信及び出力を行うために必要な処理を行うことを特徴とする受信方法。
Priority Applications (3)
Application Number | Priority Date | Filing Date | Title |
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EP10756154.0A EP2413509A4 (en) | 2009-03-27 | 2010-03-25 | RECEPTION DEVICE, PROGRAM, AND RECEPTION METHOD |
US13/259,682 US20120033765A1 (en) | 2009-03-27 | 2010-03-25 | Reception device, program, and reception method |
CN2010800222596A CN102439858A (zh) | 2009-03-27 | 2010-03-25 | 接收装置、程序、及接收方法 |
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JP2010053701A JP2010252315A (ja) | 2009-03-27 | 2010-03-10 | 受信装置、プログラム、及び受信方法 |
JP2010-053701 | 2010-03-10 |
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US (1) | US20120033765A1 (ja) |
EP (1) | EP2413509A4 (ja) |
JP (1) | JP2010252315A (ja) |
KR (1) | KR20120016043A (ja) |
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JP5866636B2 (ja) * | 2012-03-30 | 2016-02-17 | 住友電気工業株式会社 | ストリーム取得装置、再生処理装置、番組処理システム、ストリーム処理方法およびストリーム処理プログラム |
JP6195540B2 (ja) * | 2014-05-26 | 2017-09-13 | 三菱電機株式会社 | ラジオ受信機 |
Citations (4)
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JP2005136879A (ja) | 2003-10-31 | 2005-05-26 | Ntt Docomo Inc | 視聴システム |
JP2007158492A (ja) * | 2005-12-01 | 2007-06-21 | Matsushita Electric Ind Co Ltd | 地上デジタルテレビジョン受信機 |
JP2008182604A (ja) | 2007-01-25 | 2008-08-07 | Sony Corp | 視聴制限機能付き受信装置 |
JP2008288814A (ja) | 2007-05-16 | 2008-11-27 | Tv Portal:Kk | Ip放送システム、ip放送端末、およびip放送サーバ |
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US20030097654A1 (en) * | 1998-06-05 | 2003-05-22 | Franken Kenneth A. | System and method of geographic authorization for television and radio programming distributed by multiple delivery mechanisms |
US6618585B1 (en) * | 1999-12-14 | 2003-09-09 | Nortel Networks Limited | Internet-enable broadcast receiving apparatus |
US20030088768A1 (en) * | 2001-11-02 | 2003-05-08 | International Business Machines Corporation | Transmitting a broadcast via the internet within a limited distribution base of listeners |
US7555768B2 (en) * | 2003-07-14 | 2009-06-30 | Brain Tree International, Inc | Apparatus method and system for providing enhanced digital services using an analog broadcast license |
WO2005043797A2 (en) * | 2003-10-31 | 2005-05-12 | Warner Bros. Entertainment Inc. | Method and system for limiting content diffusion to local receivers |
US8442524B2 (en) * | 2006-07-19 | 2013-05-14 | Sony Corporation | Methods, systems, and devices for identifying and providing access to broadcast media content using a mobile terminal |
US20080139109A1 (en) * | 2006-12-11 | 2008-06-12 | Ewertz Carl Christian | Portable device with combined broadcast and web radio |
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- 2010-03-10 JP JP2010053701A patent/JP2010252315A/ja active Pending
- 2010-03-25 US US13/259,682 patent/US20120033765A1/en not_active Abandoned
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- 2010-03-25 CN CN2010800222596A patent/CN102439858A/zh active Pending
- 2010-03-25 KR KR1020117022606A patent/KR20120016043A/ko not_active Application Discontinuation
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Patent Citations (4)
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JP2005136879A (ja) | 2003-10-31 | 2005-05-26 | Ntt Docomo Inc | 視聴システム |
JP2007158492A (ja) * | 2005-12-01 | 2007-06-21 | Matsushita Electric Ind Co Ltd | 地上デジタルテレビジョン受信機 |
JP2008182604A (ja) | 2007-01-25 | 2008-08-07 | Sony Corp | 視聴制限機能付き受信装置 |
JP2008288814A (ja) | 2007-05-16 | 2008-11-27 | Tv Portal:Kk | Ip放送システム、ip放送端末、およびip放送サーバ |
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CN102439858A (zh) | 2012-05-02 |
EP2413509A4 (en) | 2013-09-25 |
KR20120016043A (ko) | 2012-02-22 |
JP2010252315A (ja) | 2010-11-04 |
EP2413509A1 (en) | 2012-02-01 |
US20120033765A1 (en) | 2012-02-09 |
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