CN101340573B - Host equipment for meeting with deployment point and method for processing broadcasting data - Google Patents

Host equipment for meeting with deployment point and method for processing broadcasting data Download PDF

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Publication number
CN101340573B
CN101340573B CN2008101356130A CN200810135613A CN101340573B CN 101340573 B CN101340573 B CN 101340573B CN 2008101356130 A CN2008101356130 A CN 2008101356130A CN 200810135613 A CN200810135613 A CN 200810135613A CN 101340573 B CN101340573 B CN 101340573B
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China
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data
grouping
broadcast data
main process
process equipment
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Expired - Fee Related
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CN2008101356130A
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CN101340573A (en
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车尚勋
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LG Electronics Inc
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LG Electronics Inc
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    • 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
    • H04N21/43Processing of content or additional data, e.g. demultiplexing additional data from a digital video stream; Elementary client operations, e.g. monitoring of home network or synchronising decoder's clock; Client middleware
    • H04N21/436Interfacing a local distribution network, e.g. communicating with another STB or one or more peripheral devices inside the home
    • H04N21/4367Establishing a secure communication between the client and a peripheral device or smart card
    • HELECTRICITY
    • H03ELECTRONIC CIRCUITRY
    • H03MCODING; DECODING; CODE CONVERSION IN GENERAL
    • H03M13/00Coding, decoding or code conversion, for error detection or error correction; Coding theory basic assumptions; Coding bounds; Error probability evaluation methods; Channel models; Simulation or testing of codes
    • H03M13/03Error detection or forward error correction by redundancy in data representation, i.e. code words containing more digits than the source words
    • H03M13/05Error detection or forward error correction by redundancy in data representation, i.e. code words containing more digits than the source words using block codes, i.e. a predetermined number of check bits joined to a predetermined number of information bits
    • H03M13/09Error detection only, e.g. using cyclic redundancy check [CRC] codes or single parity bit
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N21/00Selective content distribution, e.g. interactive television or video on demand [VOD]
    • H04N21/20Servers specifically adapted for the distribution of content, e.g. VOD servers; Operations thereof
    • H04N21/23Processing of content or additional data; Elementary server operations; Server middleware
    • H04N21/236Assembling of a multiplex stream, e.g. transport stream, by combining a video stream with other content or additional data, e.g. inserting a URL [Uniform Resource Locator] into a video stream, multiplexing software data into a video stream; Remultiplexing of multiplex streams; Insertion of stuffing bits into the multiplex stream, e.g. to obtain a constant bit-rate; Assembling of a packetised elementary stream
    • H04N21/23614Multiplexing of additional data and video streams
    • 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
    • H04N21/43Processing of content or additional data, e.g. demultiplexing additional data from a digital video stream; Elementary client operations, e.g. monitoring of home network or synchronising decoder's clock; Client middleware
    • H04N21/434Disassembling of a multiplex stream, e.g. demultiplexing audio and video streams, extraction of additional data from a video stream; Remultiplexing of multiplex streams; Extraction or processing of SI; Disassembling of packetised elementary stream
    • H04N21/4343Extraction or processing of packetized elementary streams [PES]
    • 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
    • H04N21/43Processing of content or additional data, e.g. demultiplexing additional data from a digital video stream; Elementary client operations, e.g. monitoring of home network or synchronising decoder's clock; Client middleware
    • H04N21/438Interfacing the downstream path of the transmission network originating from a server, e.g. retrieving MPEG packets from an IP network
    • H04N21/4382Demodulation or channel decoding, e.g. QPSK demodulation
    • 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
    • H04N21/45Management operations performed by the client for facilitating the reception of or the interaction with the content or administrating data related to the end-user or to the client device itself, e.g. learning user preferences for recommending movies, resolving scheduling conflicts
    • H04N21/462Content or additional data management, e.g. creating a master electronic program guide from data received from the Internet and a Head-end, controlling the complexity of a video stream by scaling the resolution or bit-rate based on the client capabilities
    • H04N21/4627Rights management associated to the content
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N21/00Selective content distribution, e.g. interactive television or video on demand [VOD]
    • H04N21/60Network structure or processes for video distribution between server and client or between remote clients; Control signalling between clients, server and network components; Transmission of management data between server and client, e.g. sending from server to client commands for recording incoming content stream; Communication details between server and client 
    • H04N21/63Control signaling related to video distribution between client, server and network components; Network processes for video distribution between server and clients or between remote clients, e.g. transmitting basic layer and enhancement layers over different transmission paths, setting up a peer-to-peer communication via Internet between remote STB's; Communication protocols; Addressing
    • H04N21/643Communication protocols
    • H04N21/64322IP
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L12/00Data switching networks
    • H04L12/54Store-and-forward switching systems 
    • H04L12/56Packet switching systems
    • H04L12/5601Transfer mode dependent, e.g. ATM
    • H04L2012/5619Network Node Interface, e.g. tandem connections, transit switching
    • H04L2012/562Routing

Abstract

A host device interfacing with a point of deployment (POD) and a method of processing broadcast data are disclosed. Herein, an Internet Protocol (IP) physical interface unit receives an Ethernet frame including broadcast data; and a routing engine transforms the Ethernet frame to an IP packet when a destination address included in the Ethernet frame matches with an address of a pod and routs the transformed IP packet to an extended channel connected to the POD. Accordingly, it is possible to protect contents using a conditional access provided by the existing cable card and process broadcast data received on all types of transmission protocols including an IP protocol over a wired/wireless network using a channel provided for connection between the existing cable card and the host device.

Description

Carry out the main process equipment of interface and the method for processing broadcast data with the deployment point
The application requires in the rights and interests of the korean patent application No.10-2007-0067645 of submission on July 5th, 2007, and wherein this application is incorporated herein by reference, and is all stated at this as it.In addition, the application also requires in the U.S. Provisional Application No.60/952 of submission on July 30th, 2007,839 rights and interests, and this application is incorporated herein by reference.
Technical field
The present invention relates to a kind of main process equipment and a kind of method of processing broadcast data, and relate in particular to a kind of main process equipment and a kind of method of processing broadcast data of the broadcast data for the treatment of transmitting based on Internet Protocol (IP).
Background technology
Existing TV (TV) service provides as follows, the content that is wherein produced by broadcaster transmits by wireless radio transmission media (for example earthwave (terrestrial wave)), cable or satellite, and spectators watch the content that transmits by the TV receiver, and this TV receiver can receive the content that transmits via the respective transmissions media.
Yet, along with exploitation and the commercialization based on the digital TV technology of digital broadcasting, different from existing analog broadcasting, except using existing transmission medium, can also use the internet that is connected to each family that the various contents such as real-time broadcast, content-on-demand (CoD), game and news are offered spectators.
Provide the example of content can comprise Internet Protocol TV (IPTV) with the internet.IPTV represents to receive various types of information services, dynamic image content and broadcasting and they are shown to user's broadcasting receiver with the internet.The internet can realize based on dissimilar network, for example fiber cable network, coax network, Fiber to the home (FTTH), telephone network and wireless network.
In addition, different from general terrestrial broadcasting, use the service of internet also to have the amphicheirality, and allow spectators to watch when an opportunity arises the program of expectation at him/her.
Summary of the invention
Correspondingly, the present invention relates to a kind of and deployment point (POD) and carry out main process equipment and a kind of method of processing broadcast data of interface, wherein said main process equipment and method have fully been eliminated the one or more problems that cause owing to the restriction of correlation technique and defective.
An object of the present invention is to provide the main process equipment that a kind of use Internet Protocol (IP) and POD carry out interface; and a kind of method of processing broadcast data, wherein POD can use by the existing condition reception (conditional access) that has ply-yarn drill (cable card) to provide and protect the content that transmits.
Another object of the present invention provides a kind of main process equipment that can process the broadcast data that receives based on Ethernet protocol, and a kind of method of processing broadcast data.
Another object of the present invention provides a kind of main process equipment that can process broadcast data, and wherein this broadcast data is based on Ethernet protocol, uses as the channel that being connected between ply-yarn drill and the main process equipment arranged provides and receive.
Another object of the present invention provides a kind of main process equipment, and a kind of method of processing broadcast data, this main process equipment can be changed the form of the broadcast data that receives, so that the transmission broadcast data, wherein this broadcast data based on all types of host-host protocols (comprising the IP agreement), on the wire/radio network, by for have between ply-yarn drill and the main process equipment that the channel that provides is provided is received.
Another object of the present invention provides a kind of main process equipment that can receive from multimedia over Coax Alliance (MoCA) broadcast data, and a kind of method of processing broadcast data.
To partly set forth attendant advantages of the present invention, purpose and feature in the following description, and those skilled in the art can know some part of understanding attendant advantages of the present invention, purpose and feature by following description of research, perhaps can come it is understood by implementing the present invention.Target of the present invention and other advantages can be realized by the structure that particularly points out in its specification, claim and accompanying drawing and be obtained.
In order to realize these targets and other advantages, and the purpose of the present invention according to generalized description and realization here, the main process equipment that interface is carried out in a kind of and deployment point (POD) comprises: Internet Protocol (IP) physical interface unit is used for receiving the ethernet frame that comprises broadcast data; And routing engine, the address that is used for the destination information that comprises when ethernet frame and deployment point converts ethernet frame to IP when being complementary divides into groups, and the IP Packet routing of changing is arrived the extended channel that links to each other with the deployment point.Here, broadcast data is at least one in order data, control data, condition reception data, digital copyright management (DRM) data and the MPEG sector data, and extended channel can be IP stream.And destination information can be in MAC Address, IP address and the port numbers any one.
In addition, IP physical interface unit can pass through multimedia over Coax Alliance (MoCA) reception ethernet frame.
In addition, ethernet frame can comprise ethernet header, IP grouping and Ethernet CRC.Here, routing engine can remove ethernet header and Ethernet CRC from ethernet frame, ethernet frame is converted to the IP grouping.
In addition, main process equipment also comprises: broadband interface unit is used for receiving broadcast data by cable; Demodulator is used for the broadcast data that demodulation receives; And multiplexer, be used for multiplexing broadcast data through demodulation, and the broadcast data after multiplexing is outputed to the mpeg data stream that links to each other with POD.In addition, this main process equipment also comprises the IP-TS decapsulator, be used for to receive the IP grouping of changing, and is extracted in the MPEG-2TS grouping that the IP packets inner that receives is carried, and the MPEG-2TS grouping of extracting is outputed to multiplexer.Here, multiplexer divides into groups to carry out multiplexing to MPEG-2TS, and the grouping of the MPEG-2TS after multiplexing is outputed to mpeg data stream.
In another aspect of the present invention, a kind of method of processing broadcast data comprises: receive the ethernet frame that comprises broadcast data by network modem, and when the address of the destination information that comprises in the ethernet frame and deployment point is complementary, convert ethernet frame to the IP grouping, and will be routed to the extended channel that links to each other with the deployment point through the ethernet frame of conversion.Here, broadcast data is at least one item in order data, control data, condition reception data, DRM data and the MEPG sector data.And destination information is at least one in MAC Address, IP address and the port numbers.And network modem can be multimedia over Coax Alliance (MoCA).And extended channel can be IP stream.In addition, ethernet frame comprises ethernet header, IP grouping and Ethernet CRC.Ethernet frame being converted to the IP grouping here, comprises: remove ethernet header and Ethernet CRC from Ethernet.
It should be understood that about general description and subsequent detailed description above of the present invention all be exemplary and illustrative, and aim to provide the further explanation about invention required for protection.
According to the present invention, can be with protecting content by the condition reception that has ply-yarn drill to provide.Therefore, the service provider can service condition receive to protect content, and stably to the service users request defrayment.
Owing to the broadcast data that receives based on Ethernet protocol processed in case with open wired line interface that sticks into, so service-user can be by changing or expansion have the function of ply-yarn drill to watch the program of the provider of expectation as few as possible.
Since to based on the host-host protocol (comprising the IP agreement) of any type, by wire/radio network, use as there being the channel that provides that is connected between ply-yarn drill and the main process equipment to receive broadcast data and done processing, therefore, can be by changing as few as possible or expanding the function that ply-yarn drill is arranged and process the broadcast data that receives based on Ethernet protocol.
Because broadcast data receives from multimedia over Coax Alliance (MoCA), therefore, can realize IP-based seamless link at coaxial network, and can use the IP transmission (IP over Coax) by coaxial cable.
Description of drawings
Accompanying drawing has been described one or more embodiment of the present invention, these accompanying drawings make an explanation to principle of the present invention together with the description, provide a further understanding of the present invention by comprising these accompanying drawings, and accompanying drawing is integrated among the application and formation the application's a part.In the accompanying drawings:
Fig. 1 is the schematic diagram that illustrates according to the IPTV system of the embodiment of the invention;
Fig. 2 is the schematic block diagram that illustrates according to the broadcasting receiver of the use safety card of the embodiment of the invention;
Fig. 3 is the view that is connected that illustrates between broadcasting receiver and the external network, wherein uses CMTS to be connected via data-over-cable service interface standard (DOCSIS) network with the DOCSIS modulator-demodulator, to use Cable Modem Termination System (CMTS) to set up this connection;
Fig. 4 illustrates the stream that occurs according to the embodiment of the invention, extended channel between safety card and main process equipment and the diagram of processing;
Fig. 5 A is the schematic diagram that multicasting method is shown;
Fig. 5 B is the schematic diagram that unicast method is shown;
Fig. 6 A~6C is the schematic diagram that the DSG grouping that ethernet frame divides into groups and the ethernet frame grouping converts to is shown;
Fig. 7 is the schematic diagram that illustrates according to ethernet frame grouping and the IP grouping of the embodiment of the invention, and wherein the ethernet frame packet switched becomes this IP grouping, in order to transmit by IP_U stream; And
Fig. 8 is the flow chart of describing the process of the data that the processing according to the embodiment of the invention receives.
Embodiment
In addition, although the term that uses among the present invention is to select from the term of generally knowing and using, but some mentioned in the present invention's description term is taken the circumstances into consideration to select by the applicant, and has narrated the detailed meanings of these terms in the relevant portion of the description here.In addition, not only need to be by employed actual terms, but also need to understand the present invention by the inherent meaning of each term.
Describe in detail according to broadcasting receiver of the present invention and the method for processing broadcast data referring now to accompanying drawing.
As the example that the system of various contents can be provided with the internet, Internet Protocol TV (IPTV) system can roughly be divided into server, network and broadcasting receiver (client computer).
The server of IPTV system can comprise the server with various functions, for example service discovery and selection server, streaming server, content guide information server, client information server and payment information server.
In these servers, streaming server is sent to broadcasting receiver with Motion Picture Experts Group (MPEG)-2 or the MPEG-4 encoding moving pictures data of storing via network.As host-host protocol, RTP (RTP) or RTP Control Protocol (RTCP) can be used.
In the situation that use real-time streaming protocol (RTSP), being reproduced in a way of moving picture stream can be controlled by network skill (trick) playing functions such as suspending, replay, stop.
Information about each content that provides is provided the content guide information server.This content guide information has comprised the many information about content, for example the information corresponding with electronic program guides (EPG) information.This content guide information server stores content guide information data, and the data of storing are offered broadcasting receiver.
In these servers, service discovery and select server that the access information of server is provided, to be used for providing various types of content services to broadcasting receiver, for example broadcasting, content-on-demand (CoD) or game and information reproduction.
Network system comprises based on the network of internet and gateway.As the network based on the internet, IP-based various types of networks can be used, for example fiber cable network, coax network, Fiber to the home (FTTH), telephone network and wireless network.Usually, gateway can use and come such as the agreement of Internet Group Management Protocol (IGMP) and service quality (QoS) management that executing data is sent, the multicast management and group.
IPTV indicates broadcasting receiver, and this broadcasting receiver can receive via the data of internet transmission and to the user data are provided.Broadcasting receiver can comprise the IPTV set-top box, local network (homenet) gateway and the built-in TV of IPTV.
Hybrid IP TV system not only can provide various types of internet contents, but also various types of existing broadcasted contents can be provided.That is to say, except the various types of broadcasted contents such as terrestrial broadcasting, wired broadcasting, satellite broadcasting or proprietary broadcasting, data content perhaps non-image in the various the Internet images can be offered the user.These contents both can provide in real time, also can provide as required.
Fig. 1 is the schematic diagram that illustrates according to the IPTV system of the embodiment of the invention.
From the angle of content and service provider, the IPTV system can be divided into content supplier (CP), service provider (SP), network provider (NP) and user.
CP makes and provides various types of contents.This CP can comprise terrestrial broadcasters, wired system operator (SO) or wired multisystem operator (MSO), satellite broadcasting company and Internet Broadcast company.
SP becomes service with the content packaging that CP provides, and service is provided.For example, the SP of Fig. 1 is packaged into the first terrestrial broadcasting, the second terrestrial broadcasting, wired MSO broadcasting, satellite broadcasting, various Internet Broadcast service, and this service is offered the user.
As the means for the protection of the content that in the IPTV system, transmits, can service condition receive or content protecting.As the example of condition reception or content protecting, can use ply-yarn drill maybe can download condition receiving system (DCAS).
By being used for providing the SP of IPTV to come choice for use safety card or DCAS.In the situation that used safety card or DCAS in the broadcasting receiver, the SP that communicates by letter with broadcasting receiver should use this system.
Fig. 2 is the schematic block diagram that illustrates according to the broadcasting receiver of the use safety card of the embodiment of the invention.
The broadcasting receiver of Fig. 2 can receive all IP-based IPTV services, wired broadcasting, terrestrial broadcasting and satellite broadcasting.According to the example of execution mode, the broadcasting receiver of Fig. 2 can receive only IPTV service or wired broadcasting.In addition, according to the example of execution mode, the safety card of Fig. 2 can also be named with other terms.
The broadcasting receiver of Fig. 2 roughly is divided into main process equipment and safety card.Main process equipment comprises the first broadband interface unit 202, the second broadband interface unit 204, demodulator 206, multiplexer 208, demodulation multiplexer 210, decoder 212, IP physical interface unit 214, routing engine 216, IP-transmission grouping (TP) decapsulator 218, controller 222, can download CAS (DCAS) 224, digital VTR (DVR) controller 226, content-encrypt device 228, memory interface 230 and memory cell 232.Safety card 220 both can be the single current card that can only process a stream, also can be the multithread card that can process simultaneously a plurality of streams.For example, safety card 220 can be by having ply-yarn drill or smart card to realize.
This broadcasting receiver is the receiver of an open cable type, in this receiver, comprise condition receiving system (CAS) safety card can from body portion from.This safety card is also referred to as deployment point (POD) module, and this module is inserted in the slot of main body of broadcasting receiver or with it separates.The main body that is inserted with safety card is also referred to as main process equipment.That is to say, the combination of safety card and main process equipment is called as broadcasting receiver.
The main process equipment that is included in the broadcasting receiver of Fig. 2 is an example of being implemented by the multithread main process equipment that can process simultaneously a plurality of streams.When main process equipment is implemented by the single current main process equipment that can only process a stream, at this moment will walk around multiplexer 208 and the demodulation multiplexer 210 of the main process equipment of Fig. 2, to produce ply-yarn drill MPEG grouping (CMP), multiplexing this CMP, the CMP after multiplexing is carried out demultiplexing by packet header being additional to MPEG transmission grouping.But although main process equipment is implemented as the single current main process equipment, other operations disclosed by the invention can be adopted in a like fashion and be carried out.
The example of execution mode
Network modem 200 connects external network and broadcasting receiver.For instance, can use data-over-cable service interface standard (DOCSIS) modulator-demodulator, be connected to the wireless repeater of wireless Internet, or the line relay device that is connected to wired Internet such as wired ADSL (Asymmetric Digital Subscriber Line) (ADSL) repeater is connected to external network with broadcasting receiver.Broadcasting receiver only is exemplary with the example that is connected between the external network, and can change according to the connected mode of broadcasting receiver and external network.
Fig. 3 is the view that is connected that illustrates according between broadcasting receiver of the present invention, as to have used the DOCSIS modulator-demodulator and the external network.
In the situation that network modem 200 is to be realized by the DOCSIS modulator-demodulator, can be connected to the DOCSIS network according to broadcasting receiver of the present invention.That is to say, network modem 200 can make up Cable Modem Termination System (CMTS) (DSG agency) and DSG tunnel, in order to send the data broadcast that receives via DOCSIS network subordinate top box controller (DSG server), and receive broadcast data via constructed DSG tunnel.Here, the DOCSIS network can be implemented by IP backbone, and supports ip multicast/clean culture.
Yet in order to support the ip multicast/clean culture via the DOCSIS network, the grouping that receives from CMTS (DSG agency) should convert the DSG grouping to, and this DSC grouping should be transmitted.Therefore, broadcasting receiver can not receive broadcast data by being directly connected to the external IP network.
In order to address these problems, network modem 200 can provide the function that broadcasting receiver is directly connected to the external IP network.For instance, network modem 200 can be implemented by coaxial cable multimedia data sharing alliance (MoCA).In the situation that network modem 200 is to be implemented by MoCA, can and be connected IP-based network in coax network foundation.That is to say, in the situation that network modem 200 is to be realized by MoCA, can use DOCSIS, not need to use the DOCSIS modulator-demodulator, and not need to use by the CMTS of network connection to the DOCSIS modulator-demodulator.In addition, do not need to use the DSG tunnel of between DOCSIS modulator-demodulator and CMTS, setting up.Therefore, owing on coaxial network, can set up IP-based seamless link, can use the IP by coaxial network to transmit according to broadcasting receiver of the present invention, the broadcast service of fast and stable is provided for the user thus.
The first broadband interface unit 202 only be tuned to ground audio/video (A/V) broadcasting that transmits via antenna or the specific channel frequency that the cable A/V of transmission broadcasts in band via the cable that links to each other with network modem 200, and will output to through tuning signal demodulator 206.
At this moment, because terrestrial broadcasting transmits with different transmission methods with wired broadcasting, therefore in demodulator 206, come it is carried out demodulation with different demodulation methods.Give an example, by vestigial sideband modulation (VSB) method modulation ground A/V broadcasting, and come modular cable A/V broadcasting by quadrature amplitude modulation (QAM) method.Therefore, if are terrestrial broadcastings by the first broadband interface unit 202 tuning channel frequencys, demodulator 206 usefulness VSB methods are come this terrestrial broadcasting of demodulation so, if and be wired broadcasting by the first broadband interface unit 202 tuning channel frequencys, demodulator 206 usefulness QAM methods are come this wired broadcasting of demodulation so.
The second broadband interface unit 204 only be tuned to the specific channel frequency broadcasted of the cable A/V that in band, transmits via the cable that links to each other with network modem 200, and will output to through tuning signal demodulator 206.
The first broadband interface unit 202 and the second broadband interface unit 204 can tuning different channels signal, and these signals are sent to demodulator 206.As an alternative, the different A/V streams that the first broadband interface unit 202 and the second broadband interface unit 204 can tuning same channels, and these signals are sent to demodulator 206.For instance, the first broadband interface unit 202 can flow by tuning key frame, and the second broadband interface unit 204 can tuning picture-in-picture (PIP) stream.In the situation that digital video signal is stored in the digital VTR (DVR), can watch and record this vision signal with the first broadband interface unit 202 and the second broadband interface unit 204.
Demodulator 206 carries out demodulation to the received signal, and will be sent to through the signal of demodulation multiplexer 208.Multiplexer 208 can be multiplexing from the signal of demodulator 206 and 218 outputs of IP-TP decapsulator, and export signal after multiplexing.Give an example, be re-used by the first broadband interface unit 202 main video signals tuning and the process demodulation and by the second broadband interface unit 204 PIP vision signals tuning and the process demodulation, and the multiplexing signal that obtains is output.According to the example of execution mode, vision signal that can multiplexing different channels perhaps also can the multiplexing demodulation signal and from the signal of IP-TP decapsulator 218 outputs.
If the signal of exporting from multiplexer 208 is the terrestrial broadcasting data, this signal is output to demodulation multiplexer 210 so, if and be wired broadcasting data or IPTV broadcast data from the signal of demodulation multiplexer 208 output, this signal is output to demodulation multiplexer 210 via being installed in the safety card 220 in the slot so.Safety card 220 comprises CAS, and preventing the copying higher broadcasted content of increment, and enabled condition receives, and it is also referred to as the POS module.
That is to say, if the broadcast data that receives through scrambling, safety card 220 will this broadcast data of descrambling so, and the data behind the descrambling are outputed to demodulation multiplexer 210.If safety card 220 is not installed, the A/V broadcast data from multiplexer 208 outputs will directly be outputed to demodulation multiplexer 210 so.In this case, can not by descrambling, therefore can't normally watch through the A/V broadcast data of scrambling.
210 pairs of demodulation multiplexers carry out route from the A/V broadcast data of multiplexer 208 outputs and from the A/V broadcast data of safety card 220 outputs, in order to it is outputed to decoder 212 or DVR controller 226.Decoder 212 will revert to primary signal through the A/V of overcompression signal by the video/audio decoding algorithm, and export the signal that recovers.
DVR controller 226, content-encrypt device 228, memory interface 230 and memory cell 232 be used for storing received to numerical data or be used for reproducing the data of storing.Under the control of controller 222,226 pairs of DVR controllers by demodulation multiplexer 210 routes, be that MPEG TS to be stored controls, perhaps to from store select the data, be about to reproduced video data, voice data and system data and control.228 pairs of content-encrypt devices are that data to be stored are encrypted and export the data through encrypting, perhaps to being decrypted and exporting data decryption through the data of encrypting.According to the example of execution mode, can not use encryption equipment 228.
Memory interface 230 is carried out the interface with the data I/O of memory cell 232, and the data that arrive of memory cell 232 storing receiveds.
DCAS 224 can download and storage CAS from transmission server, and carries out the CAS function according to the appropriate CAS among the storage CAS.The data processing of controller 222 main control system equipment and the interface between main process equipment and the safety card.
IP physical interface unit 214 receives the ethernet frame grouping that will be sent to particular ip address in the signal that receives via network modem 200, and this ethernet frame grouping is sent to routing engine 216.As an alternative, IP physical interface unit receives the two-way communication data (for example sponsored program application, receiver state information, user's input etc.) from routing engine, and via network modem 200 these data is sent to external network.This particular ip address can be the IP address of main process equipment, perhaps can be the IP address of safety card.
In the broadcasting receiver of Fig. 2, can receive IPTV broadcast data, video request program (VOD) signal according to the IP agreement or be with outer (OOB) message signale via IP physical interface unit 214.In existing wired broadcasting, the OOB message that can use DOCSIS set-top box gateway (DSG) method or OOB method to receive, for example system information (SI), emergency alarm system (EAS), expanded application information table (XAIT), CAS information or various card control information.
In the broadcasting receiver of Fig. 2, can comprise DOCSIS modulator-demodulator or OOB tuner, to receive OOB message.For example, can with IP method and OOB method one of them or with IP method, DSG method and OOB method one of them receives OOB message.
In the situation that use IP method and one of them reception OOB message of OOB method, the broadcasting receiver of Fig. 2 also needs OOB tuner or demodulator.One of them receives OOB message in the situation that use IP method, DSG method and OOB method, the broadcasting receiver of Fig. 2 also needs DOCSIS modulator-demodulator, OOB tuner, is used for selecting the switch unit of one of DSG method and OOB method, and the demodulator that data is sent to head end according to method.
In IP method, DSG method and OOB method all in the operable situation, perhaps in the situation that except the DSG method IP method and OOB method can use, transmitter is selected one of said method, and will be sent to safety card 220 about the information of institute's choosing method.Safety card 220 is according to notifying method of operation about the information of transmitter institute choosing method to main process equipment.In this case, backwards compatibility can be solved.
In the broadcasting receiver of Fig. 2, for convenience of description, to be described below situation: receive OOB message with IP via IP physical interface unit 214, rather than by means of receiving OOB message with the DSG method of DOCSIS modulator-demodulator or with the OOB method of OOB tuner.In this case, transmitter should be packed OOB message with IP, and transmits OOB message.In VOD or IPTV broadcasting, can receive with the form of grouping the message such as CAS information, this grouping for example is VOD grouping or IPTV broadcast packe.
OOB message only is exemplary, according to the example of execution mode, can add other necessary informations, perhaps can get rid of the unnecessary information in the above-mentioned information.
Routing engine 216 uses the network stack based on ICP/IP protocol that the Packet routing that receives is arrived the grouping destination.TCP/IP network 216 support ICP/IP protocol and User Datagram Protoco (UDP) (UDP)/IP agreement the two.
Routing engine 216 is routed to IP-TP decapsulator 218 with VOD signal or the IPTV broadcast data that receives.218 couples of MPEG that receive of this IP-TP decapsulator or MPEG-2TS grouping are resolved, and will output to multiplexer 208 through the grouping of resolving.Multiplexer 208 processing has afterwards above been described.Because what use is the MPEG-2 broadcast data, therefore will receive and resolve the TP grouping in above example.Yet, in the situation that receives the broadcast data that uses other standards, can use other unit and not use the TP grouped element.Therefore, scope of the present invention is not limited to employed term in the example of execution mode.
Routing engine 216 is that the grouping of safety card 220 is sent to safety card 220 with the destination.OOB message be with safety card 220 as one of grouping of destination, it is routed engine 216 routes and is sent to safety card 220.In the situation that OOB message is routed to safety card 220, can these data be sent to safety card 220 with second layer method for routing, the 3rd layer routing method or the 4th layer routing method.
If what use is second layer method for routing, then use medium access control (MAC) address system of the destination that comprises in the header of the ethernet frame that receives to come route message.If what use is the 3rd layer routing method, the IP address system of the destination that then comprises in the IP header with the ethernet frame that receives comes route message.The use of second layer method for routing or the 3rd layer routing method can change according to the example of execution mode.If what use is the 4th layer routing method, the port numbers that then comprises in the UDP header with the ethernet frame that receives is come route message.If the ethernet frame that receives comprises the TCP header, the port numbers that then comprises in the TCP header with the ethernet frame that receives is come this message of route.The use of second layer method for routing, the 3rd layer routing method or the 4th layer routing method can change according to the example of execution mode.That is to say, second layer method for routing, the 3rd layer routing method or the 4th layer routing method can change according to the example of execution mode.
Between safety card and main process equipment, there are data channel, extended channel and in-band channel.Data channel is provided between main process equipment and the safety card and exchanges control signal, and extended channel is configured to exchange real data.Data channel and extended channel all are the cpu i/fs that is defined by swap data between main process equipment and safety card.
That is to say, safety card and transmitter communications, analyze the order that receives from transmitter, and via data channel and extended channel and the operation of carrying out when main process equipment is communicated by letter by the transmitter indication, the content of perhaps user being inputted sends to transmitter.
At this moment, in order to transmit data via extended channel, at first transmission line should be set, this transmission line is corresponding to the data type that defines between safety card and main process equipment.This transmission line is called as stream.For example, in order to transmit the MPEG sector data, MPEG section stream is set between safety card and main process equipment, then, MPEG sector data reality is transmitted via described stream.Extended channel can comprise DSG stream, IP stream and MPEG section stream.This IP stream can comprise at least one in IP unicast (IP_U) stream and ip multicast (IP_M) stream.
Be provided with in-band channel between main process equipment and safety card, in order to transmit the MPEG-2 transmission grouping that comprises audio frequency, video and data, and this in-band channel is also corresponding with MPEG-TS interface in MPEG interface or the band.Mpeg data stream is arranged for transmitting the data transfer circuit via in-band channel.
Fig. 4 illustrates the stream that occurs according to the embodiment of the invention, extended channel between safety card and main process equipment and the view of processing.Stream on the extended channel of Fig. 4 comprises at least one IP unicast (IP_U) stream, at least one ip multicast (IP_M) stream and six MPEG sections streams at the most.If in the main process equipment of Fig. 2, comprised built-in DOCSIS modulator-demodulator, will further comprise so DSG stream, be used for transmitting the OOB message that receives via the DOCSIS modulator-demodulator to safety card.
In Fig. 4, the OOB message grouping that receives via the IP physical interface unit of main process equipment can be sent to safety card by IP address-based method for routing.Route processing for IP address, destination is carried out by routing engine 216.Employed grouping will be routed to corresponding application in each application of main process equipment.For instance, as the application in the main process equipment, can use multicast (MC) to use or navigation (NAV) application.
Main process equipment at Fig. 4 is sent to data in the situation of safety card, can use IP_U stream or IP_M stream, and in the situation that safety card is sent to main process equipment with data, can use IP_U stream.The data that received via described stream by safety card will and be sent to respective application in the safety card by route again.For instance, as the application in the safety card, can use CA application, MC application or RPT (IPPV (impulse pay-per-view)) report to return function) use.
In the data that received by safety card, except the data of only using in safety card, other MPEG sector data are filtered, and are routed to each application of main process equipment via MPEG section stream.For instance, as the MPEG sector data, can use SI, EAS or XAIT data.Safety card is from the extracting data MPEG sector data that receives, become complete MPEG sector data with MPEG sector data segmented configuration, and via MPEG section stream the MPEG sector data is sent to main process equipment.
IP_U stream is sent to safety card with those by the data that main process equipment uses unicast method to receive, and has the amphicheirality between main process equipment and the safety card.IP_M stream then will be sent to safety card by the data that main process equipment uses multicasting method to receive.This IP_M stream has unidirectional card direction.
Fig. 5 A and 5B are the schematic diagrames that multicasting method and unicast method are shown.In unicast method, between a transmitter of correspondence one by one and a receiver, transmit data.Give an example, in unicast method, if receiver to the server request data, so server will according to the request data are sent to broadcasting receiver.In multicasting method, data are sent to a plurality of receivers in the particular demographic.Give an example, server can be sent to data a plurality of receivers of previous registration simultaneously.Concerning the multicast registration, can use Internet Group Management Protocol (IGMP).
In the situation that receive OOB message by transmitting/receiving data between safety card and transmitter head end, can use unicast method.In the situation that use unicast method transmitting/receiving OOB message, the OOB message that is received by main process equipment can be sent to safety card via IP_U stream.
Fig. 6 A~6C is the schematic diagram that the DSG grouping that ethernet frame divides into groups and the ethernet frame grouping converts to is shown.
In the situation that network modem 200 is to be implemented by the DOCSIS modulator-demodulator, can receives existing wired broadcasting, and should convert the DSG grouping to by the frame that the DOCSIS modulator-demodulator receives, in order to transmit by DSG stream.This be because have ply-yarn drill operate in such state-wherein expection only has the DSG grouping to transmit by DSG stream and respective packets can not enter IP_U and flows.The data of transmitting by DSG stream can comprise CA tunneling data and BT tunneling data.The CA tunneling data transmits via the CA tunnel, and is by being consisted of by the data that safety card consumed the data that are sent to this safety card from head end.By contrast, the BT tunneling data is the data that transmit via the BT tunnel, and corresponding with the MPEG sector data such as SI, EAS or XAIT.After via DSG stream the DSG grouping being sent to safety card, this safety card extracts the MPEG section, divides into groups to configure complete MPEG section by the incomplete MPEG that recombinates from the DSG grouping, and via MPEG section stream complete MPEG section is sent to main process equipment.
The foremost DSG byte count of additional 2 bytes in the DSG grouping of transmitting by DSG stream.If removing byte of header (remove_header_byes) is 0, then from the frame that the DOCSIS modulator-demodulator receives, remove Ethernet CRC, if and to remove byte of header (remove_header_byes) be 1, then from the frame that the DOCSIS modulator-demodulator receives, remove ethernet header, IP header and Ethernet CRC, if and to remove byte of header (remove_header_byes) be 42, then from the frame that the DOCSIS modulator-demodulator receives, remove ethernet header, IP header, UDP header and Ethernet CRC.Because the DSG grouping of transmitting by DSG stream is not the IP grouping, therefore, if the DSG grouping is transmitted via IP_U stream, safety card will break down so.
Fig. 7 is the schematic diagram that illustrates according to the IP grouping that ethernet frame divides into groups and the ethernet frame grouping converts to of the embodiment of the invention, and wherein the ethernet frame packet switched being become the IP grouping is in order to transmit by IP_U stream.
In the situation that network modem 200 is to be implemented by MoCA, IP physical interface unit 214 can receive the frame grouping from MoCA, i.e. ethernet frame.The frame grouping that receives via the IP physical interface unit 214 of Fig. 2 is sent to routing engine 216.Shown in the top of Fig. 6, IP physical interface unit 214 is sent to routing engine 216 with the ethernet frame grouping.
The ethernet frame grouping comprises: the IP header of the ethernet header of 14 bytes, 20 bytes, the UDP header of 8 bytes, UDP payload and Ethernet CRC.In the situation that transmit data by Transmission Control Protocol rather than udp protocol, what comprise will be TCP header and TCP payload, rather than UDP header and UDP payload.
Routing engine 216 receives the ethernet frame grouping, and it is routed to the destination-address of this grouping.At this moment, if above-mentioned OOB message be receive by unicast method and be routed to safety card, this message can be routed to safety card via IP_U stream rather than DSG stream so.
As mentioned above, main process equipment can use second layer method for routing, the 3rd layer routing method or the 4th layer routing method that OOB message is routed to safety card.In safety card, can set in advance specific MAC Address, IP address and port numbers.In second layer method for routing, the destination MAC Address that comprises in the ethernet header for ethernet frame wherein is configured to the data of the MAC Address of safety card, and these data are sent to safety card.In the 3rd layer routing method, the IP address, destination that comprises in the IP header for ethernet frame wherein is configured to the data of the IP address of safety card, and these data are sent to safety card.In the 3rd layer routing method, be configured to be assigned to the data of the port numbers of safety card for the port numbers that comprises in the UDP of ethernet frame wherein or the TCP header, these data are sent to safety card.
In IP_U stream, what transmit is to divide into groups at the IP shown in Fig. 6 bottom.This IP grouping comprises: the IP header of 20 bytes, the UDP header of 8 bytes and UDP payload.Similarly, in the situation that data are to transmit by Transmission Control Protocol rather than udp protocol, what comprise will be TCP header and TCP payload, rather than UDP header and UDP payload.
Therefore, use the whole of second layer method for routing, the 3rd layer routing method and the 4th layer routing method, from ethernet frame divides into groups, remove ethernet header and Ethernet CRC and the IP grouped data that obtains is sent to safety card.According to data type, the IP grouping can be divided into the broadcast data packets that comprises the MPEG section, and the CA packet that comprises CA information.
Fig. 8 describes the flow chart of processing the process of the information that receives according to the embodiment of the invention.
The main process equipment of receiver receives the grouping (S600) of using IP network to transmit.Give an example, this grouping can be the IPTV broadcast packe according to Internet Protocol, the OOB message grouping that comprises scramble information or VOD grouping.
The main process equipment of broadcasting receiver with the Packet routing that receives to destination-address.In the grouping that receives, the grouping take safety card as the destination will be routed to security packet (S610).Can comprise the OOB message grouping that comprises scramble information with safety card as the example of the grouping of destination.In the situation that receive the grouping of OOB message by unicast method, main process equipment can transmit data with the IP_U stream of the extended channel of the interface between safety card and the main process equipment.
The data that the safety card analysis receives, and obtain scramble information.Broadcast data and A/V signal that safety card comes the descrambling main process equipment to receive with scramble information, and descrambling data outputed to screen (S620).The example of broadcast data and A/V signal can comprise wired broadcasting data, IPTV broadcast data or the VOD picture signal that receives in the band.
It will be apparent to those skilled in the art that and to carry out various modifications and variations in the situation that do not break away from essence of the present invention or scope.Therefore, if be in about modifications and variations of the present invention within the scope of claims and equivalent thereof, the present invention will cover these modifications and variations so.

Claims (14)

1. one kind is carried out the main process equipment of interface with deployment point POD, and described main process equipment comprises:
Internet Protocol IP physical interface unit is configured to receive ethernet frame by the IP network from the outside to described main process equipment;
Routing engine is configured to extract the IP grouping that comprises the first broadcast data from described ethernet frame, and based on the destination information that is included in the described ethernet frame, the IP Packet routing that extracts is arrived the transport stream TS decapsulator to IP;
Described IP is configured to receive the IP grouping of extracting to the TS decapsulator, and is extracted in the MPEG-2TS grouping of carrying in the IP grouping that receives, and the MPEG-2TS grouping of extracting is outputed to multiplexer;
Broadband interface unit is configured to receive the second broadcast data by cable system,
Demodulator is configured to described the second broadcast data of demodulation, and
Multiplexer is configured to multiplexingly be included in described the first broadcast data in the described IP grouping and the second broadcast data of demodulation, and multiplexing broadcast data is outputed to the Motion Picture Experts Group's mpeg data stream that is connected to described POD.
2. main process equipment according to claim 1, wherein, described the first broadcast data is at least one in order data, control data, condition reception data, digital copyright management DRM data and the MPEG sector data.
3. main process equipment according to claim 1, wherein, described IP physical interface unit receives described ethernet frame by multimedia over Coax Alliance MoCA.
4. main process equipment according to claim 1, wherein, described ethernet frame comprises ethernet header, described IP grouping and Ethernet CRC CRC.
5. main process equipment according to claim 4, wherein, described routing engine removes described ethernet header and described Ethernet CRC from described ethernet frame, described ethernet frame is converted to described IP grouping.
6. main process equipment according to claim 1, wherein, described destination information comprises any one in medium access control MAC address and the IP address.
7. main process equipment according to claim 1, wherein, described destination information comprises port numbers.
8. one kind is carried out the method for interface with deployment point POD, and described method comprises:
Use network modem to receive ethernet frame by the Internet Protocol IP network from the outside to the main process equipment;
From described ethernet frame, extract the IP grouping that comprises the first broadcast data, and based on the destination information that is included in the described ethernet frame route is carried out in the IP grouping of extracting;
Extract the first broadcast data from the IP grouping of extracting;
Receive the second broadcast data by cable system;
The second broadcast data that demodulation receives; And
Multiplexing described the first broadcast data that from described IP grouping, extracts and the second broadcast data of demodulation, and multiplexing broadcast data outputed to the Motion Picture Experts Group's mpeg data stream that is connected to described POD.
9. method according to claim 8, wherein, described the first broadcast data is at least one in order data, control data, condition reception data, digital copyright management DRM data and the MPEG sector data.
10. method according to claim 8, wherein, described network modem is multimedia over Coax Alliance MoCA.
11. method according to claim 8, wherein, described ethernet frame comprises ethernet header, described IP grouping and Ethernet CRC CRC.
12. method according to claim 11, wherein, the step of extracting described IP grouping comprises:
From described ethernet frame, remove described ethernet header and described Ethernet CRC.
13. method according to claim 8, wherein, described destination information comprises any one in medium access control MAC address and the IP address.
14. method according to claim 8, wherein, described destination information comprises port numbers.
CN2008101356130A 2007-07-05 2008-07-07 Host equipment for meeting with deployment point and method for processing broadcasting data Expired - Fee Related CN101340573B (en)

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