WO2014019193A1 - 一种融合终端及其提供多业务的方法 - Google Patents

一种融合终端及其提供多业务的方法 Download PDF

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Publication number
WO2014019193A1
WO2014019193A1 PCT/CN2012/079584 CN2012079584W WO2014019193A1 WO 2014019193 A1 WO2014019193 A1 WO 2014019193A1 CN 2012079584 W CN2012079584 W CN 2012079584W WO 2014019193 A1 WO2014019193 A1 WO 2014019193A1
Authority
WO
WIPO (PCT)
Prior art keywords
top box
multimedia
signal
unit
interconnection bus
Prior art date
Application number
PCT/CN2012/079584
Other languages
English (en)
French (fr)
Inventor
何智勤
方柳
姚洪杰
徐峥
Original Assignee
华为终端有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 华为终端有限公司 filed Critical 华为终端有限公司
Priority to PCT/CN2012/079584 priority Critical patent/WO2014019193A1/zh
Priority to CN201280018478.6A priority patent/CN103596640B/zh
Priority to EP12882007.3A priority patent/EP2866429A4/en
Publication of WO2014019193A1 publication Critical patent/WO2014019193A1/zh
Priority to US14/585,996 priority patent/US9538230B2/en

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Classifications

    • 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
    • H04N21/41Structure of client; Structure of client peripherals
    • H04N21/422Input-only peripherals, i.e. input devices connected to specially adapted client devices, e.g. global positioning system [GPS]
    • H04N21/42204User interfaces specially adapted for controlling a client device through a remote control device; Remote control devices therefor
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L12/00Data switching networks
    • H04L12/64Hybrid switching systems
    • H04L12/6418Hybrid transport
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F13/00Interconnection of, or transfer of information or other signals between, memories, input/output devices or central processing units
    • G06F13/14Handling requests for interconnection or transfer
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F13/00Interconnection of, or transfer of information or other signals between, memories, input/output devices or central processing units
    • G06F13/38Information transfer, e.g. on bus
    • G06F13/40Bus structure
    • G06F13/4004Coupling between buses
    • G06F13/4022Coupling between buses using switching circuits, e.g. switching matrix, connection or expansion network
    • 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
    • H04N21/4622Retrieving content or additional data from different sources, e.g. from a broadcast channel and the Internet
    • 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 
    • H04N21/61Network physical structure; Signal processing
    • H04N21/6156Network physical structure; Signal processing specially adapted to the upstream path of the transmission network
    • H04N21/6175Network physical structure; Signal processing specially adapted to the upstream path of the transmission network involving transmission via Internet
    • 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
    • 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
    • H04N21/647Control signaling between network components and server or clients; Network processes for video distribution between server and clients, e.g. controlling the quality of the video stream, by dropping packets, protecting content from unauthorised alteration within the network, monitoring of network load, bridging between two different networks, e.g. between IP and wireless
    • H04N21/64746Control signals issued by the network directed to the server or the client

Definitions

  • the present invention relates to the field of communications technologies, and in particular, to a converged terminal and a method thereof for providing multiple services.
  • HGW Home Ga teway
  • DVB Dig i ta l Video Broadcas t ing
  • a method for providing a converged terminal and providing a multi-service is provided to realize providing a television service and an internet access service through a service terminal.
  • a fusion terminal is disclosed, wherein the fusion terminal is externally connected to a television signal input source and a network signal input source, and respectively establishes a communication connection with the multimedia device, the Internet access device, and the remote controller, where the fusion terminal comprises: a set top box unit, and a family a gateway unit, a main control board, and an interconnection backplane; wherein the set top box unit is externally connected to the television signal input source for providing a television service; the home gateway unit is externally connected to the network signal input source, and is configured to provide Internet access
  • the main control board establishes a communication connection with the multimedia device and the Internet access device, and the main control board is respectively connected to the set top box unit and the home gateway unit through the interconnection backplane, and the main control Board is used when Receiving, by the remote controller, a control signal for controlling the set top box unit, controlling the set top box unit to provide a television service for the multimedia device through a control interconnection bus and a multimedia interconnection bus in the inter
  • the main control board when the main control board provides a television service, the main control board is further configured to control, by using the control interconnection bus, the television signal of the television service unit to output the television service, and pass the The multimedia interconnection bus receives a television signal output by the set top box unit, and outputs the received television signal to the multimedia device.
  • the main control board includes a bus slot, where the bus slot includes a multimedia interconnection bus port, a control interconnection bus port, and an IP network interconnection bus port, and the set top box unit passes through the interconnection back a multimedia interconnection bus in the board is communicably connected to the multimedia interconnection bus port, and is communicably connected to the control interconnection bus port through a control interconnection bus in the interconnection backplane, wherein the home gateway unit passes through the interconnection backplane
  • the control interconnect bus is in communication with the control interconnect bus port and is communicatively coupled to the IP network interconnect bus port via an IP network interconnect bus in the interconnect backplane.
  • the main control board further includes a first bus slot and a second bus slot, where the first bus slot is communicatively coupled to the set top box unit, and the second bus slot Communicating with the home gateway unit; wherein the first bus slot includes a multimedia interconnect bus port, a control interconnect bus port, and an IP network interconnect bus port, and the second bus slot includes a multimedia interconnect bus port and a control interconnect a bus port and an IP network interconnection bus port, wherein the set top box unit is communicably connected to the multimedia interconnection bus port in the first bus slot through a multimedia interconnection bus in the interconnection backplane, and passes through the interconnection backplane a control interconnect bus in communication with the control interconnect bus port in the first bus slot, the home gateway unit passing through a control interconnect bus in the interconnect backplane and the second bus slot Controlling an interconnect bus port communication connection and interconnecting the bus with the second network through an IP network in the interconnect backplane
  • the main control board further includes a multimedia signal switching circuit unit, a processor, a multimedia signal output port, and a remote control signal transceiver.
  • a circuit unit wherein the processor is in communication with the control interconnect bus port, the multimedia signal switching circuit unit, and the remote control signal transceiving circuit unit, respectively, wherein the multimedia signal switching circuit unit and the multimedia interconnect bus are respectively The port and the multimedia signal output port are communicatively connected, the multimedia signal output port is communicatively coupled to the multimedia device, and the remote control signal transceiving circuit unit is communicatively coupled to the remote controller.
  • the multimedia signal switching circuit unit is configured to switch the multimedia signal input of the processor and under the control of the processor The multimedia signal input of the multimedia interconnection bus port, wherein the multimedia signal of the processor is a multimedia signal of a user control interface, and the multimedia signal of the multimedia interconnection bus port is a television signal of the set top box unit and a main set of the set top box The multimedia signal of the control interface.
  • the processor is configured to receive, by using the remote control signal transceiver circuit unit, a selected set top box sent by the remote controller
  • the multimedia signal switching circuit unit controls the multimedia signal switching circuit unit to switch the multimedia signal input of the current processor to the multimedia signal input of the multimedia interconnect bus port to output the multimedia signal of the main control interface of the set top box to the Multimedia device.
  • the processor is further configured to receive, when received by the remote controller, by the remote control signal transceiver circuit unit When the control signal of the main control interface of the set top box is operated, the set top box unit is controlled to output a television signal to the multimedia device via the multimedia interconnection bus port, the multimedia signal switching circuit unit, and the multimedia signal output port.
  • the processor is further configured to receive, by the remote control signal transceiver circuit unit, the When the control signal sent by the remote controller returns to the user control interface, the multimedia signal switching circuit unit is controlled to switch the multimedia signal input of the current multimedia interconnection bus port to the multimedia signal input of the processor.
  • the set top box unit is further connected to the IP network by using an IP network interconnection bus in the interconnect backplane
  • the port communication connection the main control board is further configured to encrypt data provided by the set top box unit by using the IP network interconnection bus to maintain content copyright management.
  • the main control board is further configured to implement a system state of the home gateway unit by using the control interconnection bus control.
  • the main control board when the main control board provides an Internet access service, the main control board is further used to pass the The IP network interconnection bus implements system parameter configuration of the home gateway unit, and when the system parameters are successfully configured, the Internet access service is provided to the Internet access device through the IP network interconnection bus.
  • the main control board is further configured to perform the IP data provided by the home gateway unit after the system parameter configuration is successful.
  • the network packet exchange process is performed, and the processed data is forwarded to the online device.
  • the main control board further includes an Ethernet switching circuit unit and a network signal transceiver circuit unit, where the Ethernet The network switching circuit unit is respectively communicably connected to the processor, the network signal transceiver circuit unit and the IP network interconnection bus port, and the processor is communicably connected to the IP network interconnection bus port, and the network signal transceiver circuit The unit is in communication with the internet device.
  • the processor is further configured to receive, by using the IP network interconnection bus port, a current system reported by the home gateway unit State and current system parameter configuration, and forwarding the network state in the current system state through the Ethernet switching circuit unit and the network signal transceiver circuit unit in sequence To the internet device.
  • the processor is further configured to receive, by using the Ethernet switching circuit unit and the network signal transceiver circuit unit, the Internet access device Sending the Internet access parameter, configuring the system parameter of the home gateway unit through the IP network interconnection bus port, and after the system parameter configuration is successful, refreshing the network state in the current system state, and forwarding the network state to the network access device .
  • the Ethernet switching circuit unit is configured to perform Ethernet packet processing on the IP data provided by the home gateway unit, And processing the processed data to the internet device via the network signal transceiver circuit unit.
  • the Ethernet switching circuit unit is further connected to a PLC access gateway for connecting the PLC
  • the network packet of the access gateway performs Ethernet packet processing, and forwards the processed data to the connected device via the network signal transceiver circuit unit.
  • the Ethernet switching circuit unit is further connected to a G.hn access gateway for connecting The network packet of the G.hn access gateway performs Ethernet packet processing, and forwards the processed data to the connected device via the network signal transceiver circuit unit.
  • the main control board further includes a PLC access port
  • the Ethernet switching circuit unit further passes the The PLC access port is in communication with the PLC access gateway, and is configured to process the network packet of the PLC access gateway to perform Ethernet packet processing, and forward the processed data to the network signal transceiver circuit unit.
  • the PLC access port is in communication with the PLC access gateway, and is configured to process the network packet of the PLC access gateway to perform Ethernet packet processing, and forward the processed data to the network signal transceiver circuit unit.
  • the main control board further includes a G.hn access port
  • the Ethernet switching circuit unit further Communicating with the G.hn access gateway through the G.hn access port for using the G.hn
  • the network packet of the access gateway performs Ethernet packet processing, and forwards the processed data to the connected device via the network signal transceiver circuit unit.
  • a fusion terminal is disclosed, the fusion terminal is externally connected to a different type of television signal input source, and a communication connection is established with the multimedia device.
  • the fusion terminal includes: a first set top box unit, a second set top box unit, and a main control board.
  • the first set top box unit is externally connected to the first type of television signal input source for providing the first type of television service;
  • the second set top box unit is externally connected to the second type of television signal input source, Providing a second type of television service;
  • the main control board establishes a communication connection with the multimedia device, and the main control board communicates with the first set top box unit and the second set top box unit respectively through the interconnected backplane Connecting, the main control board is configured to control, according to a control signal sent by the remote controller to control the first set top box unit or the second set top box unit, the first set top box unit or the second set top box unit to provide a corresponding type for the multimedia device
  • the TV signal is input to the source of the TV service.
  • the main control board is further configured to control, by using the control interconnection bus, the first set top box unit or the second set top box unit to output a television signal of a corresponding type of television service, and pass the multimedia
  • the interconnection bus receives the television signal of the corresponding type of television service from the first set top box unit or the second set top box unit, and outputs the received television signal to the multimedia device.
  • the main control board includes a bus slot, and the bus slot includes a multimedia interconnection bus port, a control interconnection bus port, and an IP network interconnection bus port, where the first set top box unit passes the a multimedia interconnection bus in the interconnection backplane is communicatively coupled to the multimedia interconnection bus port, and is communicably connected to the control interconnection bus port through a control interconnection bus in the interconnection backplane, and the second set top box unit passes through the interconnection A multimedia interconnect bus in the backplane is communicatively coupled to the multimedia interconnect bus port and communicatively coupled to the control interconnect bus port via a control interconnect bus in the interconnect backplane.
  • the main control board further includes a first bus slot and a second bus slot, where the first bus slot is communicatively coupled to the first set top box unit, the second total The line slot is communicatively coupled to the second set top box unit; wherein the first bus slot includes a multimedia interconnect bus port, a control interconnect bus port, and an IP network interconnect bus port, and the second bus slot includes a multimedia interconnect bus a port, a control interconnect bus port, and an IP network interconnect bus port, wherein the first set top box unit is communicably connected to the multimedia interconnect bus port in the first bus slot through a multimedia interconnect bus in the interconnect backplane, and Communicating with the control interconnect bus port in the first bus slot through a control interconnect bus in the interconnect backplane, the second set top box unit and the multimedia interconnect bus in the interconnect backplane
  • the multimedia interconnect bus port in the second bus slot is communicatively coupled and communicatively coupled to the control interconnect bus port in the second bus slot via
  • the main control board further includes a multimedia signal switching circuit unit, a processor, a multimedia signal output port, and a remote control signal transceiver.
  • a circuit unit wherein the processor is in communication with the control interconnect bus port, the multimedia signal switching circuit unit, and the remote control signal transceiving circuit unit, respectively, wherein the multimedia signal switching circuit unit and the multimedia interconnect bus are respectively The port and the multimedia signal output port are communicatively connected, the multimedia signal output port is communicatively coupled to the multimedia device, and the remote control signal transceiving circuit unit is communicatively coupled to the remote controller.
  • the multimedia signal switching circuit unit is configured to switch the multimedia signal input of the processor and under the control of the processor
  • the multimedia signal input of the multimedia interconnection bus port wherein the multimedia signal of the processor is a multimedia signal of a user control interface, and the multimedia signal of the multimedia interconnection bus port is the first set top box unit or the second set top box unit
  • the processor is configured to receive, by using the remote control signal transceiver circuit unit, a selection sent by the remote controller Controlling, by the set top box service or the request signal of the second set top box service, the multimedia signal switching circuit unit to switch the multimedia signal input of the current processor to the multimedia mutual
  • the multimedia signal input of the connected bus port is used to output a multimedia signal of the main control interface of the first set top box unit or the second set top box unit to the multimedia device.
  • the processor is further configured to receive, when received by the remote controller, by the remote control signal transceiver circuit unit Controlling a corresponding set top box unit to output a television signal via the multimedia interconnect bus port, the multimedia signal switching circuit unit, and the multimedia signal when operating a control signal of a main control interface of the first set top box unit or the second set top box unit The port is output to the multimedia device.
  • the processor is further configured to receive, when received by the remote controller, by the remote control signal transceiver circuit unit When returning the control signal of the user control interface, the multimedia signal switching circuit unit is controlled to switch the multimedia signal input of the current multimedia interconnection bus port to the multimedia signal input of the processor.
  • the first set top box unit or the second set top box unit is further configured by using an IP network interconnection bus in the interconnect backplane
  • the IP network interconnection bus port is communicatively connected
  • the main control board is further configured to encrypt data provided by the set top box unit by using the IP network interconnection bus to maintain content copyright management.
  • a method for providing a multi-service is disclosed, the method being applied to a converged terminal including a set top box and a home gateway, wherein the converged terminal establishes a communication connection with a remote controller, a multimedia device, and an Internet access device, respectively, and the fusion
  • the set-top box of the terminal is externally connected to the television signal input source
  • the home gateway of the set-top box of the fusion terminal is externally connected to the network signal input source
  • the method includes: the fusion terminal controls the control according to a control signal of the control set-top box sent by the remote controller
  • the set top box provides the multimedia service to the television service in the television signal input source; and the converged terminal controls the home gateway to provide the internet access of the network signal input source to the online device according to the online parameter of the user.
  • the step of controlling the set top box to provide the television service in the television signal input source by the set top box according to a control signal of the control set top box sent by the remote controller comprises: receiving When the remote controller sends a request signal for selecting a set top box service, interrupting outputting a multimedia signal of the user control interface of the fusion terminal to the multimedia device; and controlling the set top box to output a multimedia signal of the main control interface of the set top box to The multimedia device.
  • the controlling the set top box to provide the television to the multimedia device according to a control signal of a control set top box sent by the remote controller further includes: when receiving the control signal sent by the remote controller to operate the main control interface of the set top box, controlling the set top box to output the television signal in the television signal input source to The multimedia device.
  • the controlling the set top box to provide the television to the multimedia device according to a control signal of a control set top box sent by the remote controller further includes: when receiving the control signal sent back to the user control interface sent by the remote controller, interrupting outputting the multimedia signal of the main control interface of the set top box to the multimedia device; The multimedia signal of the user host interface of the fusion terminal is sent to the multimedia device.
  • the step of controlling the home gateway to provide the Internet access service of the network signal input source to the online device according to the online parameter of the user includes: performing network status of the home gateway Sending to the Internet access device; receiving the Internet access parameter of the user sent by the Internet device according to the network status; performing system parameter configuration on the home gateway according to the Internet access parameter; The gateway provides the Internet access service of the network signal input source to the Internet access device.
  • the Internet gateway provides the network signal input source to the Internet device through the home gateway.
  • the step of accessing the service includes: updating the network status of the home gateway after the system parameter is successfully configured; and sending the updated network status to the online device;
  • the IP data in the network signal input source provided by the home gateway performs Ethernet packet processing, and forwards the processed data to the Internet access device; or sends the data sent by the Internet access device to an Ethernet packet. Processing, and forwarding the processed data to the home gateway.
  • the converged terminal establishes a communication connection with the PLC access gateway, and the method further includes: processing, by the network access packet of the PLC access gateway, an Ethernet packet, and processing And forwarding the data to the Internet access device; or processing the data sent by the Internet device to perform Ethernet packet processing, and forwarding the processed data to the PLC access gateway.
  • the fused terminal establishes a communication connection with the G.hn access gateway, and the method further includes: processing the network packet of the G. hn access gateway to perform Ethernet packet processing, And forwarding the processed data to the Internet access device; or processing the data sent by the Internet device to perform Ethernet packet processing, and forwarding the processed data to the G.hn access gateway.
  • a fourth aspect a method for providing a multi-service, the method is applied to a converged terminal including a first set-top box and a second set-top box, where the converged terminal establishes a communication connection with a remote controller and a multimedia device, and the fusion terminal
  • the first set-top box is externally connected to the first type of television signal input source
  • the second set-top box of the fused terminal is externally connected to the second type of television signal input source
  • the method comprising: the fusion terminal transmitting control according to the remote controller
  • a control signal of a set top box or a second set top box controls the first set top box or the second set top box to provide the multimedia device with a television service in a corresponding type of television signal input source.
  • the first set top box or the second set top box controls the multimedia device to provide corresponding
  • the step of inputting the television service in the television signal source includes: when receiving the request signal for selecting the first set top box or the second set top box service sent by the remote controller, interrupting outputting the multimedia of the user control interface of the fusion terminal Signaling to the multimedia device; controlling the first set top box or the second set top box to output a multimedia signal of the main control interface of the set top box to the multimedia device.
  • the second possible implementation manner The fusion terminal controls, according to the control signal sent by the remote controller to control the first set top box or the second set top box, the first set top box or the second set top box to provide the multimedia equipment with the television service in the corresponding type of television signal input source.
  • the step further includes: when receiving the control signal sent by the remote controller to operate the main control interface of the set top box, controlling the set top box to output a television signal in a corresponding type of television signal input source to the multimedia device.
  • the fusion terminal controls, according to the control signal sent by the remote controller to control the first set top box or the second set top box
  • the step of providing the multimedia device with the TV service in the corresponding type of television signal input source by the set top box or the second set top box further comprises: interrupting the output when receiving the control signal sent back to the user control interface sent by the remote controller Decoding a multimedia signal of the main control interface of the first set top box or the second set top box to the multimedia device; and outputting a multimedia signal of the user control interface of the fusion terminal to the multimedia device.
  • the main control board in the converged terminal controls the set top box unit in the converged terminal to implement the television service, and the main control board controls the home gateway unit in the converged terminal to implement the Internet access service, thereby implementing the A service terminal separately provides television services and Internet access services.
  • FIG. 1 is a structural diagram of an application system of a converged terminal according to Embodiment 1;
  • FIG. 2 is a first structural diagram of a main control board of a fusion terminal according to Embodiment 1;
  • FIG. 3 is an application architecture diagram of a first structure of a main control board of a fusion terminal according to Embodiment 1;
  • FIG. 4 is a second structural diagram of a main control board of a fusion terminal according to Embodiment 1;
  • 5 is an application architecture diagram of a second structure of a main control board of a fusion terminal according to Embodiment 1;
  • 6 is a second application system architecture diagram of a converged terminal according to Embodiment 1;
  • FIG. 7 is an application architecture diagram of a third structure of a main control board of a converged terminal according to Embodiment 1;
  • FIG. 8 is an application architecture diagram of a fourth structure of a main control board of a converged terminal according to Embodiment 1;
  • FIG. 10 is a first application architecture diagram of a fifth structure diagram of a main control board of a fusion terminal provided in Embodiment 2;
  • FIG. 11 is a second application architecture diagram of a fifth structure diagram of a main control board of a fusion terminal provided by the second embodiment
  • FIG. 12 is a first flowchart of a method for providing multiple services provided by an embodiment
  • FIG. 13 is a specific flowchart of S200 for providing a method for providing multiple services according to an embodiment
  • FIG. 14 is a specific flowchart of S202 for providing a method for providing multiple services according to an embodiment
  • FIG. 1 is a schematic diagram of an application system architecture of a converged terminal according to Embodiment 1 shown in FIG.
  • the converged terminal 10 can externally connect the television signal input source and the network signal input source.
  • the television signal input source can provide the DVB service to the converged terminal 10 through a cable
  • the network signal input source can provide the fixed terminal 10 with the fixed network Internet signal through the telephone line.
  • the fusion terminal 10 can also perform remote control signal interaction with the remote controller 20,
  • the multimedia signal interaction may be performed with the multimedia device 30, or may be performed by the network device 40 or the routing device 50 or the relay device 60.
  • the multimedia device 30 may include a television set or a multimedia audio;
  • the Internet access device 40 may be a personal computer (PC), or a tablet computer, or a smart phone;
  • the routing device 50 may be a router, or a switch; 60 can be a repeater.
  • the converged terminal 10 may be a terminal that provides a television service and an internet access service.
  • the converged terminal 10 can be connected to the multimedia device 30 through a high-definition multimedia interface (English name: High Deficiency Mul t imedia Interface, hereinafter referred to as HDMI), or can be connected through a digital video interface.
  • HDMI High-Deficiency Mul t imedia Interface
  • DVI Digi ta l Vi sua l Interface
  • SPDIF digital audio interface
  • the converged terminal 10 can be communicatively connected to the Internet device 40, the routing device 50, and the relay device 60 by means of wired (LAN port) or wireless (WLAN port).
  • LAN port wired
  • WLAN port wireless
  • the fusion terminal 10 can communicate with the remote controller 20 through an infrared signal (English name: Infrared Ray, abbreviated as IR) or a radio frequency (English name: Radio Frequency, abbreviated as RF) or Bluetooth. connection.
  • IR Infrared Ray
  • RF Radio Frequency
  • the converged terminal 10 includes a set top box unit 100, a home gateway unit 102, a main control board 104, and an interconnect backplane 105.
  • the set top box unit 100, the home gateway unit 102, the main control board 104, and the interconnect backplane 105 may each be in a single board (PCB board), and the set top box unit 100, the home gateway unit 102, and the main control board 104 are also The set top box unit 100 and the home gateway unit 102 can also be integrated on a single board.
  • the interconnect backplane 105 includes a multimedia interconnect bus, a control interconnect bus, an IP (English name: Internet Protocol), a network interconnect bus, and a power bus.
  • the external power supply supplies power to the set top box unit 100, the home gateway unit 102, and the main control board 104 through the power bus.
  • the set top box unit 100 communicates with the main control board 104 through the multimedia interconnection sum control interconnection bus. Then, the home gateway unit 105 is communicably connected to the main control board 104 by controlling the interconnection bus and the IP network interconnection bus.
  • the main control board 104 is configured to control the set top box unit 100 by controlling the interconnection bus, and output the converted TV signal of the set top box unit 100 to the main control board 104 through the multimedia interconnection bus, and output the converted television signal.
  • the main control board 104 can send a control signal for controlling the set top box to the set top box unit 100 by controlling the interconnection bus when receiving the control signal of the control set top box sent by the remote controller 20, and the set top box unit 100 receives the control set top box.
  • the converted television signal is sent to the main control board 104 through the multimedia interconnection bus, and the main control board 104 outputs the received converted television signal to the multimedia device 30.
  • control signal for controlling the set top box may be not limited to the control signal for switching the program channel, the control signal for searching the program channel, the control signal for adjusting the program sound, the control signal for the on-demand program, the control signal for playing the television program, etc. .
  • the set top box unit 100 is configured to perform signal conversion on the source television signal provided by the television signal input source, and output the converted television signal to the main control board 104 through the multimedia interconnection bus under the control of the control interconnection bus.
  • the main control board 104 is then output by the main control board 104 to the multimedia device 30 to play a television signal.
  • the set top box unit 100 has the same functions as the set top box products of the prior art, for example, converting the compressed digital signal in the source television signal into television content, and displaying on the multimedia device. Electronic program guides, Internet web pages, subtitles, etc. can also be converted accordingly and then displayed on the multimedia device.
  • the main control board 104 in the converged terminal 10 provides a user main control interface (UI), and outputs the user main control interface to the multimedia device.
  • UI user main control interface
  • the user's main control interface will display multiple service module names, such as the set-top box service module and the home gateway service module.
  • the user selects the set top box service module through the remote controller 20.
  • the remote controller 20 sends a request signal for selecting the set top box service, and when the main control board 104 receives the request signal for selecting the set top box service sent by the remote controller 20 After that, the set top box unit 100 is controlled to be a television based on the request signal for selecting the set top box service.
  • the main control interface of the set top box is output, and then the user can send a control signal for operating the main control interface of the set top box through the remote controller 20, and operate the function provided in the main control interface of the set top box through the main control board 104, for example, searching for a channel. , switch channels, adjust volume, order shows, play TV shows, and more.
  • the main control board 104 is further configured to implement system state control of the home gateway unit 102 by controlling the interconnection bus, and implement system parameter configuration of the home gateway unit 102 through the IP network interconnection bus, and interconnected through the IP network.
  • the bus provides the network service of the home gateway unit 102 to the internet device 40 or the routing device 50 or the relay device 60.
  • the main control board 104 can distinguish the control signals to control and control the set top box unit 101 and the home gateway unit 102, respectively. . It is also possible to carry an identification signal that controls the set top box unit or controls the home gateway unit in the control signal.
  • the home gateway unit 102 is used as an example, and the home gateway unit 102 is configured to provide the Internet access device 40 with access to the Internet and provide routing switching and IP address allocation functions for the Internet access device 40.
  • the home gateway unit 102 has the same function as the home gateway (for example, ADSL, XDSL, etc.) in the prior art, and is not described here.
  • the home gateway unit 102 when the user turns on the converged terminal 10, the home gateway unit 102 is also powered on. At this time, the home gateway unit 102 reports the home to the main control board 104 through the IP network interconnection bus. The current status of the gateway unit 102 and the current system parameter configuration, the main control board 104 forwards the current network status of the home gateway unit 102 to the online device 40. At this time, the user can input the online access parameter to the main control board 104 through the online device 40. The main control board 104 then sends the Internet access parameter to the home gateway unit 102 to perform system parameter configuration. After the system parameters are successfully configured, the working status of the configuration is reported to the main control board 104, and then forwarded by the main control board 104.
  • the main control board 104 receives the IP data provided by the home gateway unit 102 through the IP network interconnection bus, performs Ethernet packet exchange processing on the IP data, and forwards the processed data to the Internet access device 40.
  • the current system state of the gateway unit 102 can be packaged.
  • the network status of the home gateway, the use status, the hang status, the factory settings, etc., the current system parameter configuration can be configured for the access parameter of the access network, and the online parameter includes an online account and an online password.
  • the main control board 104 performs a reset operation control on the home gateway unit 102 by controlling the interconnection bus.
  • the main control board in the fused terminal controls the set top box unit in the fused terminal to implement the television service, and the main control board controls the home gateway unit in the fused terminal to implement the Internet access service.
  • the main control board 104 includes a bus slot 1040, a multimedia signal switching circuit unit 1043, a processor 1044, an Ethernet switching circuit unit 1045, a multimedia signal output port 1046, a remote control signal transceiver circuit unit 1047, and a network signal transceiver. Circuit unit 1048.
  • the bus slot 1040 is communicatively coupled to the multimedia signal switching circuit unit 1043, the processor 1044, and the Ethernet switching circuit unit 1045, respectively.
  • the processor 1044 is respectively coupled to the multimedia signal switching circuit unit 1043 and the Ethernet switching circuit unit 1045.
  • the remote control signal transceiver circuit unit 1047 is communicatively coupled, the multimedia signal switching circuit unit 1043 is communicatively coupled to the multimedia signal output port 1046, and the Ethernet switching circuit unit 1045 is communicatively coupled to the network signal transceiver circuit unit 1048.
  • the bus slot 1040 includes a multimedia interconnect bus port 10400, a control interconnect bus port 10402, and an IP network interconnect bus port 10404.
  • the multimedia interconnect bus port 10400, the control interconnect bus port 10402, and the IP network interconnect bus port 10404 may be separate ports, or may be integrated with one bus port.
  • the multimedia interconnect bus port 10400 is communicatively coupled to the multimedia signal switching circuit unit 1043 to control the interconnect bus terminal.
  • the port 10402 is communicatively coupled to the processor 1044, and the IP network interconnect bus port 10404 is communicatively coupled to the Ethernet switching circuit unit 1045.
  • the multimedia signal switching circuit unit 1043 may be a multi-input single-output switching circuit that can receive the multimedia signal sent by the processor 1044 or receive the multimedia signal sent by the multimedia interconnect bus port 10400.
  • the multimedia signal switching circuit unit 1043 is configured to switch the multimedia signal input of the processor 1044 and the multimedia signal input of the multimedia interconnect bus port 10400 under the control of the processor 1044.
  • the multimedia signal sent by the multimedia interworking bus port 10400 is a multimedia signal sent by the set top box unit 100 about the set top box converted television and a multimedia signal of the main control interface of the set top box, and the multimedia signal may be an audio and video signal.
  • the multimedia signal transmitted by the processor 1044 is a multimedia signal of a user control interface (UI).
  • the multimedia interconnect bus port 10400 can be an HDMI input port or a DVI and SPDIF input port.
  • the multimedia signal first output by the multimedia signal switching circuit unit 1043 is a multimedia signal of the user control interface (UI) of the processor 1044, and is output by the multimedia signal.
  • 1046 is output to the multimedia device 30.
  • the service master interface displays multiple service module names, such as the set-top box service module and the home gateway service module.
  • the multimedia signal output port 1046 may be an HDMI output port or a DVI and SPDIF output port.
  • the processor 1044 controls the set top box unit 100 to output the master control interface of the set top box based on the request signal for selecting the set top box service.
  • the processor 1044 controls the multimedia signal switching circuit unit 1043 to be more current.
  • the media signal input is switched to the multimedia signal input of the multimedia interconnect bus port 10400, that is, the main control interface of the set top box output is sent to the multimedia device 30 via the multimedia signal output port 1046.
  • the processor 1044 notifies the remote controller 20 to switch the current transmission mode of the remote controller 20 (in this case, the master transmission mode of the processor 1044) to the infrared transmission mode of the set top box.
  • the remote controller 20 may also be a Bluetooth transmission mode or an RF transmission.
  • the remote controller 20 when the remote controller 20 switches the transmission mode, it can receive an operation instruction of the user, that is, receive a control signal for operating the main control interface of the set top box, for example, switching channels, adjusting volume, on-demand programs, and the like, and
  • the infrared key code corresponding to the user's operation command is forwarded to the processor 1044 via the remote control signal transmitting and receiving circuit unit 1047, and forwarded to the set top box unit 100 through the processor 1044.
  • the user can operate the Home button in the remote controller 20, or return to the main control button, or other keys that can indicate the user control interface of the return processor 1044.
  • the remote controller 20 The corresponding key code is forwarded to the processor 1044 via the remote control signal transceiving circuit unit 1047, and the processor 1044 controls the multimedia signal switching circuit unit 1043 to switch the current multimedia signal input to the multimedia signal input of the processor 1044, that is, the processor 1044.
  • the multimedia signal of the user control interface (UI) is transmitted to the multimedia device 30 via the multimedia signal output port 1046, and the remote controller 20 is notified to switch the current transmission mode to the master transmission mode of the processor 1044.
  • the Ethernet switching circuit unit 1045 can be an Ethernet packet switching circuit, and the specific circuit can be obtained by using the prior art, and is not described here.
  • the Ethernet switching circuit unit 1045 is configured to exchange the IP data provided by the home gateway unit 102 through the IP network interconnection bus port 10404, and forward the exchanged data to the Internet access device 40 through the network signal transceiver circuit unit 1048, or Routing device 50, or relay device 60.
  • the home gateway unit 102 when the user turns on the converged terminal 10, the home gateway unit 102 is also powered on. At this time, the home gateway unit 102 reports the home gateway unit 102 to the processor 1044 through the IP network interconnection bus port 10404. The current system state and the current system parameter configuration, the processor 1044 then forwards the current network state of the home gateway unit 102 to the Internet access device 40 via the Ethernet switching circuit unit 1045 and the network signal transceiver circuit unit 1048 in sequence. The Internet access parameter is input through the Internet device 40, and the Internet access parameter is sequentially sent to the processor 1 044 via the network signal transceiver circuit unit 1048 and the Ethernet switching circuit unit 1045, and the processor 1044 then interconnects the Internet access parameter via the IP network.
  • the Ethernet switching circuit unit 1045 receives the IP data provided by the home gateway unit 102 through the IP network interconnection bus port 10404, performs Ethernet packet exchange processing on the IP data, and then passes the processed data to the network signal transmission and reception circuit.
  • Unit 1048 forwards to the internet device 40.
  • the processor 1044 performs a reset operation control on the home gateway unit 102 by controlling the interconnect bus port 10402.
  • the main control board 104 can include a hard disk (not shown) and an optical drive (not shown), which are respectively connected to the processor 1044 for communication.
  • multimedia data may also be provided to the multimedia device 30 through a hard disk (not shown) and an optical drive (not shown), or a data storage service may be provided to the user through a hard disk (not shown).
  • the processor 1044 in the main control board 104 controls the set top box unit 101 and the home gateway unit 102 respectively through the control interconnection bus
  • the processor 1044 of the main control board 104 can distinguish the control signals to respectively control.
  • the set top box unit 101 and the home gateway unit 102 are controlled.
  • the control signal sent by the processor 1044 may also carry an identification signal that controls the set top box unit or controls the home gateway unit.
  • the convergence terminal controls the set top box unit in the fusion terminal to implement the television service by using the processor in the main control board of the fusion terminal, and controls the family in the fusion terminal through the processor of the main control board.
  • the gateway unit implements an Internet access service to achieve the purpose of providing a TV service and an Internet access service through a service terminal, thereby reducing the number of users.
  • FIG. 3 is an application architecture diagram of a first structure of a main control board of a fusion terminal according to Embodiment 1 shown in FIG. 3.
  • the bus slot 1040 is communicatively coupled to the set top box unit 100 and the home gateway unit 102 via the interconnect backplane 105, wherein the multimedia interconnect bus port 10400 in the bus slot 1040 passes through the multimedia in the interconnect backplane 105.
  • the interconnect bus is communicatively coupled to the set top box unit 100.
  • the control interconnect bus port 10402 is communicably coupled to the set top box unit 100 and the home gateway unit 102 via a control interconnect bus in the interconnect backplane 105.
  • the IP network interconnect bus port 10404 is coupled to the backplane 105.
  • the IP network interconnection bus is connected to the home gateway unit 102.
  • the Ethernet switching circuit unit 1045 can also directly communicate with the PLC access gateway 70 or the G. hn access gateway 80, and connect the PLC to the gateway 70 or the data provided by the G. hn access gateway 80.
  • the packet performs Ethernet packet exchange, and forwards the exchanged data to the Internet access device 40, the routing device 50, and the relay device 40.
  • the Ethernet switching circuit unit 1045 itself provides direct connection with the PLC access gateway 70 or G.
  • the hn access gateway 80 is a communication connection port.
  • the PLC access gateway 70 is a Power Line Gateway (Power Line Gateway), and the G. hn access gateway is an ITU Power Line Interconnection Protocol access gateway.
  • FIG. 4 is a second structural diagram of a main control board of a fusion terminal according to Embodiment 1 shown in FIG.
  • FIG. 4 is different from FIG. 2 in that the main control board 104 further includes a PLC access port 1 049 and a G. hn access port 1050, a PLC access port 1049, and a G. hn access port 1050. They are respectively connected to the Ethernet switching circuit unit 1045 for communication.
  • the other unit structures in Fig. 4 have the same functions as the other unit structures of the same name in Fig. 2.
  • FIG. 5 is an application architecture diagram of a second structure of a main control board of a fusion terminal according to Embodiment 1 shown in FIG. 5.
  • FIG. 5 is different from FIG. 3 in that the Ethernet switching circuit unit 1045 is communicably connected to the PLC access gateway 70 through the PLC access port 1049, and the Ethernet switching circuit unit is connected.
  • the 1045 is communicatively coupled to the G. hn access gateway via the G. hn access port 1050.
  • the Ethernet switching circuit unit 1045 in FIG. 3 can directly provide a communication port connected to the PLC access gateway 70 or the G. hn access gateway 80.
  • the Ethernet switching circuit unit 1045 does not provide direct connection with The communication port connected to the PLC access gateway 70 or the G. hn access gateway 80 needs to be connected to the PLC access gateway 70 or the G. hn access gateway 80 through a port built in the main control board 104.
  • the other unit structures in FIG. 5 have the same functions as the other unit structures of the same name in FIG.
  • FIG. 1 A second application system architecture diagram of the converged terminal provided in Embodiment 1 is shown in FIG.
  • FIG. 6 is different from FIG. 1 in that the set top box unit 100 of FIG. 6 can also be connected to the main control board 104 via an IP network interconnection bus.
  • the main control board 104 further performs DRM (data name: Digi ta l Right Management, referred to as digital rights management) or DTCP-IP (data name: Dig i) of the data provided by the set top box unit 100 through the IP network interconnection bus.
  • DRM data name: Digi ta l Right Management, referred to as digital rights management
  • DTCP-IP data name: Dig i
  • Ta l Transmi ss ion Content Protect ion over Internet Protocol referred to as digital transmission content protection on IP protocol
  • the other unit structures in Fig. 6 have the same functions as the other unit structures of the same name in Fig. 1.
  • the IP network interconnection bus can also replace the multimedia interconnection bus, and the set top box unit 100 can send the converted TV signal to the main control board 105 for processing through the IP network interconnection bus.
  • FIG. 1 An application architecture diagram of a third structure of the main control board of the fusion terminal provided in the first embodiment shown in FIG.
  • the difference between FIG. 7 and FIG. 3 is that the set top box unit 100 is connected to the IP network interconnection bus port 10404 in the main control board 104 via the IP network interconnection bus.
  • the other unit structures in Fig. 7 have the same functions as the other unit structures of the same name in Fig. 3.
  • the processor 1044 in the main control board 104 performs DRM on the data provided by the set top box unit 100 through the IP network interconnection bus port 10404 (the English name is: Digi ta l Right Management, referred to as digital rights management) or Perform DTCP-IP (English name: Dig i ta l Transmi ssion Content Protection over Interne t Protocol (referred to as digital transmission content protection on IP protocol) encryption to maintain content copyright management.
  • FIG. 1 An application architecture diagram of a fourth structure of the main control board of the fusion terminal provided in the first embodiment shown in FIG.
  • the difference between FIG. 8 and FIG. 5 is that the set top box unit 100 is connected to the IP network interconnection bus port communication in the main control board 104 via the IP network interconnection bus.
  • the other unit structures in Fig. 8 have the same functions as the other unit structures of the same name in Fig. 5.
  • FIG. 1 A fifth structural diagram of the main control board of the fusion terminal provided in the second embodiment shown in FIG.
  • FIG. 9 is different from FIG. 2 and FIG. 4 in that the main control board 104 includes two bus slots of the same structure, which are a first bus slot 1041 and a second bus slot 1042, respectively. 2 and FIG. 4 only include one bus slot.
  • the first bus slot 1041 and the second bus slot 1042 may be externally connected to the set top box unit 100 and the home gateway unit 102, respectively, or may be the first bus slot 1041 and the first
  • the two bus slots 1042 are respectively externally connected to the set top box unit 100, and the first bus slot 1041 and the second bus slot 1042 may be externally connected to the home gateway unit 102, respectively.
  • the first bus slot 1041 and the second bus slot 1042 in Fig. 9 have the same functional structure as the bus slot 1040 in Figs. 2 and 4.
  • the other unit structure in Fig. 9 has the same function as the unit structure of the same name of Fig. 2 or Fig. 4.
  • the structure shown in FIG. 9 can replace the unit providing the service according to actual needs, and the user can freely select the service mode.
  • FIG. 10 is different from FIG. 7 in that the main control board 104 includes two bus slots of the same structure, which are a first bus slot 1041 and a second bus slot 1042, respectively.
  • the slot 1041 and the second bus slot 1042 can respectively connect the set top box unit 100 and the home gateway unit 102 respectively; wherein the first bus slot 1041 controls the interconnected total IP network through the multimedia interconnect bus
  • the interconnection bus is in communication with the set top box unit 100.
  • the multimedia interconnection bus port 10410 in the first bus slot 1041 is communicably connected to the set top box unit 100 through the multimedia interconnection bus, and the control interconnection bus port 10412 in the first bus slot 1041 is controlled.
  • the interconnection bus is communicatively coupled to the set top box unit 100, and the IP network interconnection total port in the first bus slot 1041 is communicatively coupled to the set top box unit 100 via an IP network interconnection bus.
  • the second bus slot 1042 is communicatively coupled to the home gateway unit 102 via a control interconnect bus and an IP network interconnect bus, wherein the control interconnect bus port 10422 in the second bus slot 1042 is communicatively coupled to the home gateway unit 102 via a control interconnect bus.
  • the IP network interconnect bus port in the second bus slot 1042 is communicatively coupled to the home gateway unit 102.
  • the other unit structures in FIG. 10 have the same work as the other unit structures of the same name in FIG.
  • a second application architecture diagram of the fifth structure diagram of the main control board of the converged terminal provided by the implementation 2 shown in FIG.
  • FIG. 11 is different from FIG. 10 in that the first bus slot 1041 and the second bus slot 1042 in FIG. 11 can each be externally connected to an external set top box unit, that is, the first bus slot 1041.
  • the first set top box unit 1010 is externally connected
  • the second set top box unit 1012 is externally connected to the second set top box unit 1012.
  • the first set top box unit 1010 and the second set top box unit 1012 are respectively connected to a television signal input source.
  • the first set top box unit is 1010 is externally connected to the first type of television signal input source
  • the second set top box unit 1012 is externally connected to the second type of television signal input source.
  • the first type of television signal input source and the second type of television signal input source are different types of television signals.
  • the input source can also be understood as different types of television signal input sources provided by different TV providers.
  • an A-TV provider can provide satellite TV signals
  • a B-TV provider can provide digital TV signals.
  • the other unit structures in Fig. 11 have the same functions as the other unit structures of the same name in Fig. 10.
  • the first set top box unit 1010 may be a digital set top box unit
  • the second set top box unit 1012 may be a satellite set top box unit.
  • the converged terminal may be a terminal that provides television services of different types of television signals.
  • the main control board in the converged terminal will mention Providing a user control interface (UI), and outputting the user main control interface to the multimedia device (taking the television as an example), the user control interface displays multiple service module names, such as the first set top box and the second Set-top box.
  • the user selects the corresponding type of set top box unit according to the type of the television signal input source. For example, if the type of the television signal input source is a digital television signal, the digital set top box needs to be selected; if the type of the television signal input source is For satellite TV signals, you need to select a satellite set-top box.
  • the user selects the set-top box service through the remote controller.
  • the user sends a request signal for selecting the set-top box service to the main control board 104 in the fusion terminal through the remote controller.
  • the request signal may include a type identification of the set top box, the type identification being used to distinguish between the first set top box and the second set top box, ie, the digital set top box and the satellite set top box.
  • the processor 1044 in the main control board 104 can control the corresponding set top box unit based on the request signal for selecting the set top box service transmitted by the remote controller 20.
  • the user can select a corresponding type of set top box unit to provide a TV service according to the current type of the television service provider, thereby facilitating the user to independently select a television service provided by a different television provider through the fusion terminal, that is, the user is allowed to pass the
  • the fusion terminal independently selects TV services of different types of television signals.
  • a first flow chart of a method of providing multiple services is provided by the embodiment shown in FIG.
  • the method for providing multiple services is applied to provide a TV service and an Internet access service through a service terminal, and the service terminal may be referred to as a converged terminal, and the converged terminal may also be combined with the multimedia.
  • the device, the remote controller, the Internet device, the routing device, or the relay device are communicatively connected, and the television signal input source and the network signal input source are externally connected, and the fusion terminal provides the television service provided by the television signal input source to the multimedia device,
  • the Internet service of the fixed network provided by the network signal input source is provided to the Internet access device, the routing device, or the relay device (hereinafter, the Internet access device is taken as an example;).
  • the converged terminal provides the television service provided by the television signal input source to the multimedia device, and also provides the Internet access service to the online device.
  • the converged terminal provides the television service provided by the television signal input source to the multimedia device
  • the converged terminal may include a set top box unit, a home gateway unit, a main control board, Interconnected backplane, as shown in Figure 12,
  • Step S200 The converged terminal controls the set top box to provide the television service in the television signal input source to the multimedia device according to a control signal of the control set top box sent by the remote controller.
  • Step S202 The converged terminal controls, according to the online access parameter of the user, the home gateway to provide the Internet access service of the network signal input source to the online device.
  • steps S200 and S202 are not limited.
  • step S2000 the fusion terminal receives the request signal for selecting the set top box service sent by the remote controller; specifically, the main control board in the fusion terminal receives the request signal for selecting the set top box service sent by the remote controller;
  • the main control board in the converged terminal provides a user main control interface (UI), and outputs the user main control interface to the multimedia device (taking the television as an example), the user Multiple service module names, such as set-top boxes and home gateways, are displayed on the main control interface.
  • the user selects the set top box service through the remote controller.
  • the user sends a request signal for selecting the set top box service to the main control board in the fusion terminal through the remote controller.
  • Step S2001 The converged terminal outputs the main control interface of the set top box to the multimedia device based on the request signal for selecting the set top box service.
  • the main control board in the fusion terminal controls the set top box unit to output the main control interface of the set top box based on the request signal of the selected set top box service, and receives the control interface of the set top box through the interconnecting backplane, and receives the multimedia interconnection bus in the interconnected backplane.
  • the main control interface of the set top box afterwards, the main control board in the fusion terminal outputs the main control interface of the set top box to the multimedia device.
  • the multimedia signal outputting the main control interface of the set top box is interrupted to the multimedia device, and then the multimedia signal of the user control interface of the fusion terminal is output to the multimedia device, which can also be understood as:
  • the converged terminal switches the current user main control interface to the main control interface of the set top box.
  • step S2002 the fusion terminal notifies the remote controller to switch the current transmission mode.
  • the current transmission mode of the remote controller The main control transmission mode; when the remote control interacts with the main control interface of the set top box, the transmission mode of the remote control is the infrared transmission mode of the set top box or the Bluetooth transmission mode or the RF transmission mode; therefore, in this step, the current remote control needs to be The transmission mode is switched to the transmission mode of the set top box.
  • Step S2003 the fusion terminal receives a control signal sent by the remote controller to operate the main control interface of the set top box.
  • the main control board in the fusion terminal receives a control signal sent by the remote controller to operate the main control interface of the set top box.
  • the user can send the control signal of the main control interface of the set top box through the remote controller again, which can be understood as the control signal used to operate the set top box.
  • the functions provided in the main control interface such as searching for channels, switching channels, adjusting volume, on-demand programs, playing programs, and so on.
  • Step S2004 the converged terminal forwards the converted television signal to the multimedia device based on the control signal to implement providing a television service.
  • the main control board in the fusion terminal controls the set top box unit to output the converted TV signal of the set top box unit based on the control signal through the control interconnection bus in the interconnecting backplane; the main control board in the fusion terminal passes through the interconnect backplane
  • the multimedia interconnection bus receives the converted television signal; the main control board in the fusion terminal forwards the converted television signal to the multimedia device, thereby implementing providing a television service.
  • the set top box unit in the fusion terminal is required to convert the television signal provided by the television signal input source, and then the converted terminal transmits the converted television signal to the multimedia device.
  • step S2005 the fusion terminal receives a control signal sent by the remote controller and returned to the user control interface of the fusion terminal.
  • the converged terminal outputs the user host control interface of the converged terminal to the multimedia device based on the control signal of the user main control interface of the return converged terminal.
  • the multimedia signal outputting the main control interface of the set top box is interrupted to the multimedia device, and then the multimedia signal of the user control interface of the fusion terminal is output to the multimedia device.
  • the converged terminal switches the main control interface of the current set top box to the user main control interface of the converged terminal.
  • the user can operate the Home button in the remote control, or return to the main control button, or other keys that can indicate the user's main control interface to return to the fusion terminal.
  • the remote controller will forward the corresponding key code to the fusion terminal, and the fusion terminal will The user host interface (UI) of the converged terminal is sent to the multimedia device 30.
  • UI user host interface
  • Step S2007 the fusion terminal notifies the remote controller to switch the current transmission mode. Specifically, the remote controller is notified to switch the transmission mode of the set top box to the master transmission mode.
  • the method further includes, in step S2008, the converged terminal performs DRM or DTCP-1P encryption on the data in the television service to maintain content copyright management.
  • the following steps may be performed simultaneously, that is, while the set top box service is provided, the Internet access service may be simultaneously provided, as shown in FIG.
  • the converged terminal sends the current network state to the Internet access device.
  • the main control board of the converged terminal receives the current system state and the current system configuration reported by the home gateway unit through the IP network interconnection bus; Forward the network status of the home gateway to the Internet access device.
  • the current system state may include the network state of the converged terminal, the usage state, the hang state, and the like.
  • Step S2021 The converged terminal receives an access parameter sent by the online device according to the current network status.
  • the home gateway unit in the converged terminal is also powered on.
  • the current network status is the network is not connected. If the egress device needs to be connected to the network, the user needs to set the Internet access parameter on the Internet access device. That is to enter the Internet account and the Internet password.
  • the main control board of the converged terminal receives the online access parameter sent by the online device.
  • Step S2022 The converged terminal performs system parameter configuration according to the received Internet access parameter, and refreshes the current network state.
  • the main control board sends the Internet access parameter to the home gateway unit through the IP network interconnection bus.
  • the main control board receives the configuration after successful configuration through the IP network interconnection bus. Status, and refreshing the current network status of the home gateway.
  • the current network state that is refreshed is the connected state of the network, so that the online device can access the Internet through the fusion terminal.
  • Step S2023 The converged terminal sends the refreshed current network status to the online device. Specific The main control board sends the refreshed current network status to the online device.
  • Step S2024 The converged terminal performs Ethernet packet exchange processing on the data provided by the network signal input source, and forwards the processed data to the Internet access device, thereby providing an Internet access service for the Internet access device.
  • the main control board performs Ethernet packet exchange processing on the IP data provided by the home network unit, and forwards the processed data to the online device to implement the Internet access service. Subsequently, the Internet access device can also forward data to the home gateway unit through the main control board.
  • the fused terminal may be reset to restart The Internet access service of the converged terminal.
  • the home control unit can perform reset operation control on the home gateway unit by controlling the interconnection bus.
  • the method further includes: the converged terminal providing the Internet access service provided by the PLC access gateway or the G. hn access gateway to the access device.
  • the main control board of the converged terminal performs Ethernet packet exchange processing on the IP data provided by the PLC access gateway or the G. hn access gateway, and forwards the processed data to the online device, thereby implementing the Internet access service. .
  • the converged terminal simultaneously provides the TV service and the Internet access service, thereby reducing the number of service terminals used by the user to enjoy different services, and also reducing user docking. Frequent wiring operations for incoming and outgoing connections.
  • FIG. 1 A second flow chart of a method of providing multiple services is provided by the embodiment shown in FIG.
  • the converged terminal can provide different types of television signals for the multimedia device according to different types of television signal input sources.
  • the fusion terminal may include a first set top box unit, a second set top box unit, a main control board, and an interconnected backplane.
  • the two set top box units are respectively a digital set top box unit and a satellite set top box unit, the first set top box unit is externally connected with a first type of television signal input source, and the second set top box unit is externally connected with a second type of television signal input source, the first type of television
  • the signal input source and the second type of television signal input source are different types of television signal input sources.
  • the fusion terminal controls the first set-top box according to the remote controller. And controlling, by the element or the second set top box unit, the first set top box unit or the second set top box unit to provide the multimedia device with a television service in a corresponding type of television signal input source.
  • Step S210 The fusion terminal receives a request signal for selecting a first set top box or a second set top box service sent by the remote controller.
  • the main control board in the fusion terminal receives the first set top box or the second set top box service sent by the remote controller.
  • the request signal in this embodiment, when the user starts to use the converged terminal, the main control board in the converged terminal provides a user main control interface (UI), and outputs the user main control interface to the multimedia device (by the television) For example;), the user master interface displays multiple service module names, such as the first set top box unit and the second set top box unit.
  • the user selects the corresponding type of set top box unit according to the type of the television signal input source.
  • the digital set top box needs to be selected; if the type of the television signal input source is For satellite TV signals, you need to select a satellite set-top box.
  • the user selects the corresponding type of set-top box service through the remote controller.
  • the user sends a request signal for selecting the set-top box service to the main control board in the fusion terminal through the remote controller.
  • the request signal may include a type identification of the set top box for distinguishing between the first set top box and the second set top box, i.e., distinguishing between the digital set top box and the satellite set top box.
  • Step S211 The converged terminal outputs a main control interface of the corresponding set top box to the multimedia device based on the request signal for selecting the first set top box or the second set top box service.
  • the main control board of the fusion terminal selects and controls the corresponding set top box unit according to the set top box identifier in the request signal. Specifically, the main control board in the fusion terminal controls the set top box unit to output the main control interface of the set top box based on the request signal of the selected set top box service, and receives the control interface of the set top box through the interconnecting backplane, and receives the multimedia interconnection bus in the interconnected backplane.
  • the main control interface of the set top box afterwards, the main control board in the fusion terminal outputs the main control interface of the set top box to the multimedia device. It can also be understood that the converged terminal switches the current user host control interface to the main control interface of the set top box.
  • Step S212 the fusion terminal notifies the remote controller to switch the current transmission mode.
  • the current transmission mode of the remote controller The main control transmission mode; when the remote control interacts with the main control interface of the set top box, the transmission mode of the remote control is the infrared transmission mode of the set top box or the Bluetooth transmission mode or the RF transmission mode; therefore, in this step, the current remote control needs to be The transmission mode is switched to the transmission mode of the set top box.
  • Step S21 3 The fusion terminal receives a control signal sent by the remote controller to operate the main control interface of the set top box.
  • the main control board in the fusion terminal receives a control signal sent by the remote controller to operate the main control interface of the set top box.
  • the user can send the control signal of the main control interface of the set top box through the remote controller again, which can be understood as the control signal used to operate the set top box.
  • the functions provided in the main control interface such as searching for channels, switching channels, adjusting volume, on-demand programs, playing programs, and so on.
  • Step S214 The converged terminal forwards the converted television signal to the multimedia device based on the control signal to implement providing a television service.
  • the main control board in the fusion terminal controls the set top box unit to output the converted TV signal of the set top box unit based on the control signal through the control interconnection bus in the interconnecting backplane; the main control board in the fusion terminal passes through the interconnect backplane
  • the multimedia interconnection bus receives the converted television signal; the main control board in the fusion terminal forwards the converted television signal to the multimedia device, thereby implementing providing a television service.
  • the set top box unit in the fusion terminal is required to convert the television signal provided by the television signal input source, and then the converted terminal transmits the converted television signal to the multimedia device.
  • the fusion terminal receives a control signal sent by the remote controller and returned to the user control interface of the fusion terminal.
  • Step S216 The converged terminal outputs a user host control interface of the converged terminal to the multimedia device based on the control signal of the user main control interface of the return converged terminal.
  • the converged terminal switches the main control interface of the current set top box to the user main control interface of the converged terminal.
  • the user can operate the Home button in the remote control, or return to the main control button, or other keys that can indicate the user's main control interface to return to the fusion terminal.
  • the remote controller will forward the corresponding key code to the fusion terminal, and the fusion terminal will The user host interface (UI) of the converged terminal is sent to the multimedia device 30.
  • Step S217 the fusion terminal notifies the remote controller to switch the current transmission mode. Specifically, the remote controller is notified to switch the transmission mode of the set top box to the master transmission mode.
  • the method further includes, in step S218, the converged terminal performs DRM or DTCP-IP encryption on the data in the television service to maintain content copyright management.
  • the user can select a corresponding type of set top box unit to provide a TV service according to the current type of the television service provider, thereby facilitating the user to independently select a television service provided by a different television provider through the fusion terminal, that is, the user is allowed to pass the
  • the fusion terminal independently selects TV services of different types of television signals.
  • the embodiments of the present invention can be implemented by means of software plus the necessary general hardware platform. Based on such understanding, the technical solution of the embodiments of the present invention may be embodied in the form of a software product in essence or in the form of a software product, and the computer software product may be stored in a storage medium, such as a ROM/RAM.
  • a disk, an optical disk, or the like includes instructions for causing a computer device (which may be a personal computer, server, or network device, etc.) to perform the methods described in various embodiments of the embodiments of the present invention.

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Abstract

本发明公开一种融合终端,包括:机顶盒单元、家庭网关单元、主控板和互联背板;主控板分别与多媒体设备和上网设备建立通信连接,主控板通过互联背板分别与机顶盒单元和所述家庭网关单元通信连接,主控板用于当接收到所述遥控器发送的控制机顶盒单元的控制信号时,通过互联背板中的控制互联总线和多媒体互联总线控制机顶盒单元为多媒体设备提供电视业务,并进一步用于基于用户的上网参数通过互联背板中的控制互联总线和IP网络互联总线控制家庭网关单元为上网设备提供互联网接入业务。本发明通过一个业务终端分别实现提供电视业务和互联网接入业务的目的,从而减少了用户为享受不同业务时使用的业务终端的个数,并且也减少了用户对接入和接出的连接线的频繁接线操作。

Description

一种融合终端及其提供多业务的方法
技术领域 本发明涉及通信技术领域, 尤其涉及一种融合终端及其提供多业务的方 法。
背景技术
随着科技的不断发展, 消费者在家庭领域的需求也在不断的扩大, 比如, 享受家庭局域网的家庭网关 (其英文名为: Home Ga teway,简称为 HGW ) 带来 的上网乐趣、 通过机顶盒(其英文名为: Set Top Box, 简称为 STB )在电视 机上观看数字电视节目 (比如: 数字电视广播,其英文名为: Dig i ta l Video Broadcas t ing , 简称为 DVB )。
在现有普通的做法中, 家庭网关和机顶盒各自存在一套独立的接入软件 平台操作系统, 并且各自的业务也相互隔离。
然而, 发明人发现在现有技术中, 由于家庭网关和机顶盒各自存在一套 独立的接入软件平台操作系统, 并且各自的业务也相互隔离, 当消费者需要 享受不同的业务时, 消费者需要使用多个不同的业务终端, 再进行分别独立 操作使用, 会增加消费者对多个业务终端的频繁的操作。 发明内容
提供一种融合终端及其提供多业务的方法, 以实现通过一个业务终端分 别实现提供电视业务和互联网接入业务。
第一方面, 公开一种融合终端, 所述融合终端外接电视信号输入源和网 络信号输入源, 并分别与多媒体设备、 上网设备、 遥控器建立通信连接, 所 述融合终端包括: 机顶盒单元、 家庭网关单元、 主控板和互联背板; 其中, 所述机顶盒单元外接所述电视信号输入源, 用于提供电视业务; 所述家庭网 关单元外接所述网络信号输入源, 用于提供互联网接入业务; 所述主控板分 别与所述多媒体设备和上网设备建立通信连接, 所述主控板通过所述互联背 板分别与所述机顶盒单元和所述家庭网关单元通信连接, 所述主控板用于当 接收到所述遥控器发送的控制机顶盒单元的控制信号时, 通过所述互联背板 中的控制互联总线和多媒体互联总线控制所述机顶盒单元为所述多媒体设备 提供电视业务, 并用于基于用户的上网参数通过所述互联背板中的控制互联 总线和 IP网络互联总线控制所述家庭网关单元为所述上网设备提供互联网接 入业务。
第一种可能实现的方式中, 当所述主控板提供电视业务时, 所述主控板 进一步用于通过所述控制互联总线控制所述机顶盒单元输出所述电视业务的 电视信号, 并通过所述多媒体互联总线接收所述机顶盒单元输出的电视信号, 并将所述接收的电视信号输出至所述多媒体设备。
第二种可能实现的方式中, 所述主控板包括总线插槽, 所述总线插槽包 括多媒体互联总线端口、 控制互联总线端口及 IP网络互联总线端口, 所述机 顶盒单元通过所述互联背板中的多媒体互联总线与所述多媒体互联总线端口 通信连接, 并通过所述互联背板中的控制互联总线与所述控制互联总线端口 通信连接, 所述家庭网关单元通过所述互联背板中的控制互联总线与所述控 制互联总线端口通信连接, 并通过所述互联背板中的 IP网络互联总线与所述 IP网络互联总线端口通信连接。
第三种可能实现的方式中, 所述主控板进一步包括第一总线插槽和第二 总线插槽, 所述第一总线插槽与所述机顶盒单元通信连接, 所述第二总线插 槽与所述家庭网关单元通信连接; 其中, 所述第一总线插槽包括多媒体互联 总线端口、 控制互联总线端口及 IP网络互联总线端口, 所述第二总线插槽包 括多媒体互联总线端口、 控制互联总线端口及 IP网络互联总线端口, 所述机 顶盒单元通过所述互联背板中的多媒体互联总线与所述第一总线插槽中的所 述多媒体互联总线端口通信连接, 并通过所述互联背板中的控制互联总线与 所述第一总线插槽中的所述控制互联总线端口通信连接, 所述家庭网关单元 通过所述互联背板中的控制互联总线与所述第二总线插槽中的所述控制互联 总线端口通信连接, 并通过所述互联背板中的 IP网络互联总线与所述第二总 线插槽中的所述 IP网络互联总线端口通信连接。
结合第一方面的第二种或第三种可能实现的方式, 第四种可能实现的方 式中, 所述主控板进一步包括多媒体信号切换电路单元、 处理器、 多媒体信 号输出端口、 遥控信号收发电路单元, 其中, 所述处理器分别与所述控制互 联总线端口、 所述多媒体信号切换电路单元及所述遥控信号收发电路单元通 信连接, 所述多媒体信号切换电路单元分别与所述多媒体互联总线端口及所 述多媒体信号输出端口通信连接, 所述多媒体信号输出端口与所述多媒体设 备通信连接, 所述遥控信号收发电路单元与所述遥控器通信连接。
结合第一方面的第四种可能实现的方式, 第五种可能实现的方式中, 所 述多媒体信号切换电路单元用于在所述处理器的控制下, 切换所述处理器的 多媒体信号输入和所述多媒体互联总线端口的多媒体信号输入, 其中, 所述 处理器的多媒体信号为用户主控界面的多媒体信号, 所述多媒体互联总线端 口的多媒体信号为所述机顶盒单元的电视信号和机顶盒的主控界面的多媒体 信号。
结合第一方面的第四种或第五种可能实现的方式, 第六种可能实现的方 式中, 所述处理器用于当通过所述遥控信号收发电路单元接收到所述遥控器 发送的选择机顶盒业务的请求信号时, 控制所述多媒体信号切换电路单元将 当前的处理器的多媒体信号输入切换为所述多媒体互联总线端口的多媒体信 号输入, 以输出所述机顶盒的主控界面的多媒体信号至所述多媒体设备。
结合第一方面的第四种至第六种可能实现的方式, 第七种可能实现的方 式中, 所述处理器进一步用于当通过所述遥控信号收发电路单元接收到所述 遥控器发送的操作所述机顶盒的主控界面的控制信号时, 控制所述机顶盒单 元将电视信号经由所述多媒体互联总线端口、 所述多媒体信号切换电路单元 和所述多媒体信号输出端口输出至所述多媒体设备。
结合第一方面的第四种至第七种可能实现的方式, 第八种可能实现的方 式中, 所述处理器进一步用于当通过所述遥控信号收发电路单元接收到所述 遥控器发送的返回用户主控界面的控制信号时, 控制所述多媒体信号切换电 路单元将当前的所述多媒体互联总线端口的多媒体信号输入切换为所述处理 器的多媒体信号输入。
结合第一方面的第二种至第八种可能实现的方式, 第九种可能实现的方 式中, 所述机顶盒单元进一步通过所述互联背板中的 IP网络互联总线与所述 IP网络互联总线端口通信连接,所述主控板进一步用于通过所述 IP网络互联 总线对所述机顶盒单元提供的数据进行加密, 以维护内容版权管理。
结合第一方面的第一种至第九种可能实现的方式, 第十种可能实现的方 式中, 所述主控板进一步用于通过所述控制互联总线实现对所述家庭网关单 元的系统状态控制。
结合第一方面的第一种至第十种可能实现的方式, 第十一种可能实现的 方式中, 当所述主控板提供互联网接入业务时, 所述主控板进一步用于通过 所述 IP网络互联总线实现对所述家庭网关单元的系统参数配置, 当系统参数 配置成功后通过所述 IP网络互联总线为所述上网设备提供互联网接入业务。
结合第一方面的第十一种可能实现的方式, 第十二种可能实现的方式中, 所述主控板进一步用于当系统参数配置成功后将所述家庭网关单元提供的 IP 数据进行以太网报文交换处理, 再将处理后的数据转发至所述上网设备。
结合第一方面的第二种至第十二种可能实现的方式, 第十三种可能实现 的方式中, 所述主控板进一步包括以太网交换电路单元及网络信号收发电路 单元, 所述以太网交换电路单元与所述处理器、 所述网络信号收发电路单元 及所述 IP网络互联总线端口分别通信连接,所述处理器与所述 IP网络互联总 线端口通信连接, 所述网络信号收发电路单元与所述上网设备通信连接。
结合第一方面的第十三种可能实现的方式, 第十四种可能实现的方式中, 所述处理器进一步用于通过所述 IP网络互联总线端口接收所述家庭网关单元 上报的当前的系统状态和当前的系统参数配置, 并将所述当前的系统状态中 的网络状态依次经由所述以太网交换电路单元和网络信号收发电路单元转发 至所述上网设备。
结合第一方面的第十四种可能实现的方式, 第十五种可能实现的方式中, 所述处理器进一步用于通过所述以太网交换电路单元和网络信号收发电路单 元接收所述上网设备发送的上网参数, 通过所述 IP网络互联总线端口对所述 家庭网关单元进行系统参数配置, 当系统参数配置成功后, 刷新所述当前的 系统状态中的网络状态, 并转发至所述上网设备。
结合第一方面的第十五种可能实现的方式, 第十六种可能实现的方式中, 所述以太网交换电路单元用于将所述家庭网关单元提供的 IP数据进行以太网 报文处理, 并将处理后的数据经由所述网络信号收发电路单元转发至所述上 网设备。
结合第一方面的第十四种至第十六可能实现的方式, 第十七种可能实现 的方式中, 所述以太网交换电路单元进一步与 PLC接入网关通信连接, 用于 将所述 PLC接入网关的网络数据包进行以太网报文处理, 并将处理后的数据 经由所述网络信号收发电路单元转发至所述上网设备。
结合第一方面的第十四种至第十六可能实现的方式, 第十八种可能实现 的方式中, 所述以太网交换电路单元进一步与 G.hn接入网关通信连接, 用于 将所述 G.hn接入网关的网络数据包进行以太网报文处理, 并将处理后的数据 经由所述网络信号收发电路单元转发至所述上网设备。
结合第一方面的第十四种至第十六可能实现的方式, 第十九种可能实现 的方式中, 所述主控板进一步包括 PLC接入端口, 所述以太网交换电路单元 进一步通过所述 PLC接入端口与所述 PLC接入网关通信连接, 用于将所述 PLC接入网关的网络数据包进行以太网报文处理, 并将处理后的数据经由所 述网络信号收发电路单元转发至所述上网设备。
结合第一方面的第十四种至第十六可能实现的方式, 第二十种可能实现 的方式中, 所述主控板进一步包括 G.hn接入端口, 所述以太网交换电路单元 进一步通过所述 G.hn接入端口与 G.hn接入网关通信连接, 用于将所述 G.hn 接入网关的网络数据包进行以太网报文处理, 并将处理后的数据经由所述网 络信号收发电路单元转发至所述上网设备。
第二方面, 公开一种融合终端, 所述融合终端外接不同类型的电视信号 输入源, 并与多媒体设备建立通信连接, 所述融合终端包括: 第一机顶盒单 元、 第二机顶盒单元、 主控板和互联背板; 其中, 所述第一机顶盒单元外接 第一类型的电视信号输入源, 用于提供电第一类型的电视业务; 所述第二机 顶盒单元外接第二类型的电视信号输入源, 用于提供电第二类型的电视业务; 所述主控板与所述多媒体设备建立通信连接, 所述主控板通过所述互联背板 分别与所述第一机顶盒单元和第二机顶盒单元通信连接, 所述主控板用于根 据所述遥控器发送的控制第一机顶盒单元或第二机顶盒单元的控制信号, 控 制所述第一机顶盒单元或第二机顶盒单元为所述多媒体设备提供相应类型的 电视信号输入源的电视业务。
第一种可能实现的方式中, 所述主控板进一步用于通过所述控制互联总 线控制所述第一机顶盒单元或第二机顶盒单元输出相应类型的电视业务的电 视信号, 并通过所述多媒体互联总线接收所述第一机顶盒单元或第二机顶盒 单元输出相应类型的电视业务的电视信号, 并将所述接收的电视信号输出至 所述多媒体设备。
第二种可能实现的方式中, 所述主控板包括总线插槽, 所述总线插槽包 括多媒体互联总线端口、 控制互联总线端口及 IP网络互联总线端口, 所述第 一机顶盒单元通过所述互联背板中的多媒体互联总线与所述多媒体互联总线 端口通信连接, 并通过所述互联背板中的控制互联总线与所述控制互联总线 端口通信连接, 所述第二机顶盒单元通过所述互联背板中的多媒体互联总线 与所述多媒体互联总线端口通信连接, 并通过所述互联背板中的控制互联总 线与所述控制互联总线端口通信连接。
第三种可能实现的方式中, 所述主控板进一步包括第一总线插槽和第二 总线插槽, 所述第一总线插槽与所述第一机顶盒单元通信连接, 所述第二总 线插槽与所述第二机顶盒单元通信连接; 其中, 所述第一总线插槽包括多媒 体互联总线端口、 控制互联总线端口及 IP网络互联总线端口, 所述第二总线 插槽包括多媒体互联总线端口、 控制互联总线端口及 IP网络互联总线端口, 所述第一机顶盒单元通过所述互联背板中的多媒体互联总线与所述第一总线 插槽中的所述多媒体互联总线端口通信连接, 并通过所述互联背板中的控制 互联总线与所述第一总线插槽中的所述控制互联总线端口通信连接, 所述第 二机顶盒单元通过所述互联背板中的多媒体互联总线与所述第二总线插槽中 的所述多媒体互联总线端口通信连接, 并通过所述互联背板中的控制互联总 线与所述第二总线插槽中的所述控制互联总线端口通信连接。
结合第二方面的第一种或第二种可能实现的方式, 第三种可能实现的方 式中, 所述主控板进一步包括多媒体信号切换电路单元、 处理器、 多媒体信 号输出端口、 遥控信号收发电路单元, 其中, 所述处理器分别与所述控制互 联总线端口、 所述多媒体信号切换电路单元及所述遥控信号收发电路单元通 信连接, 所述多媒体信号切换电路单元分别与所述多媒体互联总线端口及所 述多媒体信号输出端口通信连接, 所述多媒体信号输出端口与所述多媒体设 备通信连接, 所述遥控信号收发电路单元与所述遥控器通信连接。
结合第二方面的第四种可能实现的方式, 第五种可能实现的方式中, 所 述多媒体信号切换电路单元用于在所述处理器的控制下, 切换所述处理器的 多媒体信号输入和所述多媒体互联总线端口的多媒体信号输入, 其中, 所述 处理器的多媒体信号为用户主控界面的多媒体信号, 所述多媒体互联总线端 口的多媒体信号为所述第一机顶盒单元或第二机顶盒单元的电视信号, 和第 一机顶盒单元或第二机顶盒单元的主控界面的多媒体信号。
结合第二方面的第四种或第五种可能实现的方式, 第六种可能实现的方 式中, 所述处理器用于当通过所述遥控信号收发电路单元接收到所述遥控器 发送的选择第一机顶盒业务或第二机顶盒业务的请求信号时, 控制所述多媒 体信号切换电路单元将当前的处理器的多媒体信号输入切换为所述多媒体互 联总线端口的多媒体信号输入, 以输出所述第一机顶盒单元或第二机顶盒单 元的主控界面的多媒体信号至所述多媒体设备。
结合第二方面的第四种至第六种可能实现的方式, 第七种可能实现的方 式中, 所述处理器进一步用于当通过所述遥控信号收发电路单元接收到所述 遥控器发送的操作所述第一机顶盒单元或第二机顶盒单元的主控界面的控制 信号时, 控制相应的机顶盒单元将电视信号经由所述多媒体互联总线端口、 所述多媒体信号切换电路单元和所述多媒体信号输出端口输出至所述多媒体 设备。
结合第二方面的第四种至第七种可能实现的方式, 第八种可能实现的方 式中, 所述处理器进一步用于当通过所述遥控信号收发电路单元接收到所述 遥控器发送的返回用户主控界面的控制信号时, 控制所述多媒体信号切换电 路单元将当前的所述多媒体互联总线端口的多媒体信号输入切换为所述处理 器的多媒体信号输入。
结合第二方面的第四种至第八种可能实现的方式, 第九种可能实现的方 式中, 述第一机顶盒单元或第二机顶盒单元进一步通过所述互联背板中的 IP 网络互联总线与所述 IP网络互联总线端口通信连接, 所述主控板进一步用于 通过所述 IP网络互联总线对所述机顶盒单元提供的数据进行加密, 以维护内 容版权管理。
第三方面, 公开了一种提供多业务的方法, 所述方法应用于包括机顶盒 和家庭网关的融合终端, 所述融合终端与遥控器、 多媒体设备和上网设备分 别建立通信连接, 并所述融合终端的机顶盒外接电视信号输入源, 和所述融 合终端的机顶盒的家庭网关外接网络信号输入源, 所述方法包括: 所述融合 终端根据所述遥控器发送的控制机顶盒的控制信号, 控制所述机顶盒为所述 多媒体设备提供所述电视信号输入源中的电视业务; 同时, 所述融合终端根 据用户的上网参数控制所述家庭网关为所述上网设备提供所述网络信号输入 源的互联网接入业务。 第一种可能实现的方式, 所述根据所述遥控器发送的控制机顶盒的控制 信号, 控制所述机顶盒为所述多媒体设备提供所述电视信号输入源中的电视 业务的步骤包括: 当接收到所述遥控器发送的选择机顶盒业务的请求信号时, 中断输出所述融合终端的用户主控界面的多媒体信号至所述多媒体设备; 控 制所述机顶盒输出所述机顶盒的主控界面的多媒体信号至所述多媒体设备。
结合第三方面的第一种可能实现的方式, 第二种可能实现的方式中, 所 述根据所述遥控器发送的控制机顶盒的控制信号, 控制所述机顶盒为所述多 媒体设备提供所述电视信号输入源中的电视业务的步骤进一步包括: 当接收 到所述遥控器发送的操作所述机顶盒的主控界面的控制信号时, 控制所述机 顶盒输出所述电视信号输入源中的电视信号至所述多媒体设备。
结合第三方面的第一种可能实现的方式, 第三种可能实现的方式中, 所 述根据所述遥控器发送的控制机顶盒的控制信号, 控制所述机顶盒为所述多 媒体设备提供所述电视信号输入源中的电视业务的步骤进一步包括: 当接收 到所述遥控器发送的返回用户主控界面的控制信号时, 中断输出所述机顶盒 的主控界面的多媒体信号至所述多媒体设备; 输出所述融合终端的用户主控 界面的多媒体信号至所述多媒体设备。
第四种可能实现的方式中, 所述根据用户的上网参数控制所述家庭网关 为所述上网设备提供所述网络信号输入源的互联网接入业务的步骤包括: 将 所述家庭网关的网络状态发送至所述上网设备; 接收所述上网设备根据所述 网络状态发送的用户的上网参数; 根据所述上网参数对所述家庭网关进行系 统参数配置; 当系统参数配置成功后, 通过所述家庭网关为所述上网设备提 供所述网络信号输入源的互联网接入业务。
结合第三方面的第四种可能实现的方式, 第五种可能实现的方式中, 所 述当系统参数配置成功后, 通过所述家庭网关为所述上网设备提供所述网络 信号输入源的互联网接入业务的步骤包括: 当系统参数配置成功后, 更新所 述家庭网关的网络状态; 将所述更新后的网络状态发送至所述上网设备; 将 所述家庭网关提供的所述网络信号输入源中的 I P数据进行以太网报文处理, 并将处理后的数据转发至所述上网设备; 或将所述上网设备发送的数据进行 以太网报文处理, 并将处理后的数据转发至所述家庭网关。
第六种可能实现的方式中,所述融合终端与 P LC接入网关建立通信连接, 所述方法进一步包括: 将所述 PLC接入网关的网络数据包进行以太网报文处 理, 并将处理后的数据转发至所述上网设备; 或将所述上网设备发送的数据 进行以太网报文处理, 并将处理后的数据转发至所述 PLC接入网关。
第七种可能实现的方式中,所述融合终端与 G.hn接入网关建立通信连接, 所述方法进一步包括: 将所述 G. hn接入网关的网络数据包进行以太网报文处 理, 并将处理后的数据转发至所述上网设备; 或将所述上网设备发送的数据 进行以太网报文处理, 并将处理后的数据转发至所述 G.hn接入网关。
第四方面, 公开了一种提供多业务的方法, 所述方法应用于包括第一机 顶盒和第二机顶盒的融合终端, 所述融合终端与遥控器、 多媒体设备分别建 立通信连接, 所述融合终端的第一机顶盒外接第一类型的电视信号输入源, 所述融合终端的第二机顶盒外接第二类型的电视信号输入源, 所述方法包括: 所述融合终端根据所述遥控器发送的控制第一机顶盒或第二机顶盒的控制信 号, 控制所述第一机顶盒或第二机顶盒为所述多媒体设备提供相应类型的电 视信号输入源中的电视业务。
第一种可能实现的方式中, 所述融合终端根据所述遥控器发送的控制第 一机顶盒或第二机顶盒的控制信号时, 控制所述第一机顶盒或第二机顶盒为 所述多媒体设备提供相应类型的电视信号输入源中的电视业务的步骤包括: 当接收到所述遥控器发送的选择第一机顶盒或第二机顶盒业务的请求信号 时, 中断输出所述融合终端的用户主控界面的多媒体信号至所述多媒体设备; 控制所述第一机顶盒或第二机顶盒输出所述机顶盒的主控界面的多媒体信号 至所述多媒体设备。
结合第四方面的第一种可能实现的方式, 第二种可能实现的方式中, 所 述融合终端根据所述遥控器发送的控制第一机顶盒或第二机顶盒的控制信号 时, 控制所述第一机顶盒或第二机顶盒为所述多媒体设备提供相应类型的电 视信号输入源中的电视业务的步骤进一步包括: 当接收到所述遥控器发送的 操作所述机顶盒的主控界面的控制信号时, 控制所述机顶盒输出相应类型的 电视信号输入源中的电视信号至所述多媒体设备。
结合第四方面的第一种可能实现的方式, 第三种可能实现的方式中, 所 述融合终端根据所述遥控器发送的控制第一机顶盒或第二机顶盒的控制信号 时, 控制所述第一机顶盒或第二机顶盒为所述多媒体设备提供相应类型的电 视信号输入源中的电视业务的步骤进一步包括: 当接收到所述遥控器发送的 返回用户主控界面的控制信号时, 中断输出所述第一机顶盒或第二机顶盒的 主控界面的多媒体信号至所述多媒体设备; 输出所述融合终端的用户主控界 面的多媒体信号至所述多媒体设备。
通过提供的融合终端, 通过该融合终端中的主控板控制融合终端中的机 顶盒单元实现电视业务, 并通过该主控板控制该融合终端中的家庭网关单元 实现互联网接入业务, 从而实现通过一个业务终端分别实现提供电视业务和 互联网接入业务。 附图说明
为了更清楚地说明本发明实施例中的技术方案, 下面将对实施例描述中 所需要使用的附图作一简单地介绍, 显而易见地, 下面描述中的附图仅仅是 本发明的一些实施例, 对于本领域普通技术人员来讲, 在不付出创造性劳动 性的前提下, 还可以根据这些附图获得其他的附图。
图 1为实施例一提供的融合终端的应用系统架构图;
图 2为实施例一提供的融合终端的主控板的第一种结构图;
图 3为实施例一提供的融合终端的主控板的第一种结构的应用架构图; 图 4为实施例一提供的融合终端的主控板的第二种结构图;
图 5为实施例一提供的融合终端的主控板的第二种结构的应用架构图; 图 6为实施例一提供的融合终端的第二种应用系统架构图;
图 7为实施例一提供的融合终端的主控板的第三种结构的应用架构图; 图 8为实施例一提供的融合终端的主控板的第四种结构的应用架构图; 图 9为实施例二提供的融合终端的主控板的第五种结构图;
图 10为实施例二提供的融合终端的主控板的第五种结构图的第一种应用 架构图;
图 11为施二提供的融合终端的主控板的第五种结构图的第二种应用架构 图;
图 12为实施例提供的提供多个业务的方法的第一种流程图;
图 1 3为实施例提供的提供多个业务的方法的 S200的具体流程图; 图 14为实施例提供的提供多个业务的方法的 S202的具体流程图; 图 15为实施例提供的提供多个业务的方法的第二种流程图。
具体实施方式
下面将结合本发明实施例中的附图, 对本发明实施例中的技术方案进行 清楚、 完整地描述, 显然, 所描述的实施例仅仅是本发明一部分实施例, 而 不是全部的实施例。 基于本发明中的实施例, 本领域普通技术人员在没有作 出创造性劳动前提下所获得的所有其他实施例 , 都属于本发明保护的范围。
下面将结合本发明实施例中的附图, 对本发明实施例中的技术方案进行 清楚、 完整地描述。
如图 1所示的实施例一提供的融合终端的应用系统架构图。
在本实施例中,融合终端 10可以外接电视信号输入源和网络信号输入源。 在本实施例中, 该电视信号输入源可以通过电缆线为融合终端 10提供 DVB业 务, 网络信号输入源可以通过电话线为融合终端 10提供固网的互联网信号。
在本实施例中, 融合终端 10还可以与遥控器 20进行遥控信号交互, 也 可以与多媒体设备 30进行多媒体信号交互, 也可以与上网设备 40或路由设 备 50或中继设备 60进行网络信号交互。 在本实施例中, 多媒体设备 30可以 包括电视机、 或多媒体音响; 上网设备 40可以为个人电脑(PC )、 或平板电 脑、 或智能手机; 路由设备 50可以为路由器, 或交换机; 中继设备 60可以 为中继器。 在本实施例中, 融合终端 10可以是提供电视业务和互联网接入业 务的终端。
在本实施例中,融合终端 10可以通过高清多媒体接口(其英文名为: High Def ini t ion Mul t imedia Interface , 简称为 HDMI ) 与多媒体设备 30相连接, 也可以通过数字视频接口 (其英文名为: Digi ta l Vi sua l Interface , 简称 为 DVI )和数字音频接口 (其英文名为: SONY/PHILIPS DIGITAL INTERFACE, 简称为 SPDIF )与多媒体设备 30相连接。
在本实施例中, 融合终端 10可以通过有线(局域网端口)或无线(WLAN 端口) 的方式与上网设备 40、 路由设备 50和中继设备 60通信连接。
在本实施例中,融合终端 10可以通过红外线信号(其英文名为: Infrared Ray, 简称为 IR )或无线射频(其英文名为: Radio Frequency, 简称为 RF ) 或蓝牙方式与遥控器 20通信连接。
在本实施例中, 融合终端 10包括机顶盒单元 100、 家庭网关单元 102、 主控板 104、 互联背板 105。 在本实施例中, 机顶盒单元 100、 家庭网关单元 102、 主控板 104、 互联背板 105可以各自分别处于一块单板(PCB板), 机顶 盒单元 100、 家庭网关单元 102与主控板 104也可以集成在一块单板上,机顶 盒单元 100与家庭网关单元 102也可以集成在一块单板上。
在本实施例中, 互联背板 105 包括多媒体互联总线、 控制互联总线、 IP (其英文名为: Internet Protocol ) 网络互联总线、 电源总线。 在本实施例 中, 外接电源通过电源总线分别为机顶盒单元 100、 家庭网关单元 102及主控 板 104提供电源。
机顶盒单元 100通过多媒体互联总和控制互联总线与主控板 104通信连 接, 家庭网关单元 105通过控制互联总线和 IP网络互联总线与主控板 104通 信连接。
在本实施例中, 主控板 104用于通过控制互联总线控制机顶盒单元 100 , 将机顶盒单元 100转换后的电视信号通过多媒体互联总线输出至主控板 104 , 并将该转换后的电视信号输出至多媒体设备 30。 在本实施例中, 主控板 104 可以在接收到遥控器 20发送的控制机顶盒的控制信号时, 通过控制互联总线 发送控制机顶盒的控制信号至机顶盒单元 100 ,机顶盒单元 100在接收到控制 机顶盒的控制信号后, 会将转换后的电视信号通过多媒体互联总线发送给主 控板 104 , 主控板 104再将该接收的转换后的电视信号输出至多媒体设备 30。 在本实施例中, 该控制机顶盒的控制信号可以不限于切换节目频道的控制信 号、 搜索节目频道的控制信号、 调节节目声音的控制信号、 点播节目的控制 信号、 播放电视节目的控制信号等等。
在本实施例中, 机顶盒单元 100用于将电视信号输入源提供的源电视信 号进行信号转换, 在主控板 104 通过控制互联总线的控制下, 通过多媒体互 联总线将转换后的电视信号输出至主控板 104 ,再由主控板 104输出至多媒体 设备 30以播放电视信号。 在本实施例中, 该机顶盒单元 1 00与现有技术中的 机顶盒产品所实现的功能相同, 比如, 将源电视信号中的压缩的数字信号转 换成电视内容, 并在多媒体设备上进行显示, 还可以将电子节目指南、 因特 网网页、 字幕等等进行相应的转换, 然后, 在多媒体设备上进行显示。
以下举例说明, 在本实施例中, 当用户开机使用融合终端 10时, 融合终 端 10中的主控板 104会提供一个用户主控界面 (UI ), 并将该用户主控界面 输出给多媒体设备 30 (以电视机为例 ), 该用户主控界面上会显示多个业务模 块名称, 比如机顶盒业务模块和家庭网关业务模块。 当用户需要观看电视时, 用户通过遥控器 20选择该机顶盒业务模块, 此时, 遥控器 20发送选择机顶 盒业务的请求信号, 当主控板 104接收到遥控器 20发送的选择机顶盒业务的 请求信号后, 基于该选择机顶盒业务的请求信号控制机顶盒单元 100 为电视 输出机顶盒的主控界面, 之后, 用户可再次通过遥控器 20发送操作该机顶盒 的主控界面的控制信号, 并通过主控板 104 以操作机顶盒的主控界面中提供 的功能, 比如, 搜索频道, 切换频道, 调节音量, 点播节目, 播放电视节目 等等。
在本实施例中, 主控板 104 进一步用于通过控制互联总线实现对家庭网 关单元 102的系统状态控制 ,并通过 IP网络互联总线实现对家庭网关单元 102 的系统参数配置, 以及通过 IP网络互联总线将家庭网关单元 102的网络服务 提供给上网设备 40或路由设备 50或中继设备 60。
可以理解的是,当主控板 104通过控制互联总线分别控制机顶盒单元 101 和家庭网关单元 102时, 主控板 104可以对控制信号进行区分开, 以分别控 制控制机顶盒单元 101和家庭网关单元 102。也可以在控制信号中携带控制机 顶盒单元或控制家庭网关单元的标识信号。
在本实施例中, 以上网设备 40为例, 家庭网关单元 102用于为上网设备 40提供实现互联网的接入、 并为上网设备 40提供路由交换和 IP地址分配功 能。 在本实施例中, 该家庭网关单元 102 与现有技术中的家庭网关 (比如, ADSL, XDSL等等)相有相同的功能, 此处, 不再——描述。
以下举例说明, 在本实施例中, 当用户开机使用融合终端 10时, 家庭网 关单元 102也会上电启动, 此时, 家庭网关单元 102会通过 IP网络互联总线 向主控板 104上报将家庭网关单元 102 当前的系统状态和当前的系统参数配 置, 主控板 104再向上网设备 40转发家庭网关单元 102当前的网络状态, 此 时, 用户可以通过上网设备 40向主控板 104输入上网参数, 主控板 104再将 该上网参数下发至家庭网关单元 102 进行系统参数配置, 当系统参数配置成 功后, 并将配置成功后的工作状态上报主控板 104 , 再由主控板 104转发至上 网设备 40, 此后, 主控板 104通过 IP网络互联总线接收家庭网关单元 102提 供的 IP数据, 再将该 IP数据进行以太网报文交换处理, 再将处理后的数据 转发至上网设备 40。 在本实施例中, 庭网关单元 102 当前的系统状态可以包 括家庭网关的网络状态、 使用状态、 挂死状态、 出厂设置等等, 当前的系统 参数配置可以为接入网络的上网参数的配置, 该上网参数包括上网账号和上 网密码。
在本实施例中, 当家庭网关单元 102 上报的工作状态为挂死状态后 (死 机), 主控板 104通过控制互联总线对家庭网关单元 102进行复位操作控制。
通过本实施例提供的融合终端, 通过该融合终端中的主控板控制融合终 端中的机顶盒单元实现电视业务, 并通过该主控板控制该融合终端中的家庭 网关单元实现互联网接入业务, 以达到通过一个业务终端分别实现提供电视 业务和互联网接入业务的目的, 从而减少了用户为享受不同业务时使用的业 务终端的个数, 并且也减少了用户对接入和接出的连接线的频繁接线操作。
以下将进行举例详细描述。
如图 2所示的实施例一提供的融合终端的主控板的第一种结构图。
在本实施例中, 主控板 104包括总线插槽 1040、 多媒体信号切换电路单 元 1043、处理器 1044、以太网交换电路单元 1045、多媒体信号输出端口 1046、 遥控信号收发电路单元 1047、 网络信号收发电路单元 1048。
在本实施例中, 总线插槽 1040分别与多媒体信号切换电路单元 1043、处 理器 1044及以太网交换电路单元 1045通信连接, 处理器 1044分别与多媒体 信号切换电路单元 1043、 以太网交换电路单元 1045、 遥控信号收发电路单元 1047通信连接, 多媒体信号切换电路单元 1043与多媒体信号输出端口 1046 通信连接, 以太网交换电路单元 1045与网络信号收发电路单元 1048通信连 接。
在本实施例中, 总线插槽 1040包括多媒体互联总线端口 10400、 控制互 联总线端口 10402、 IP网络互联总线端口 10404。 在本实施例中, 多媒体互联 总线端口 10400、控制互联总线端口 10402、 IP网络互联总线端口 10404可以 分别是单独的端口, 也可以集成一个总线端口。 在本实施例中, 多媒体互联 总线端口 10400与多媒体信号切换电路单元 1043通信相连, 控制互联总线端 口 10402与处理器 1044通信相连, IP网络互联总线端口 10404与以太网交换 电路单元 1045通信连接。
在本实施例中, 多媒体信号切换电路单元 1043可以是一个多输入单输出 的开关电路, 可以接收处理器 1044发送的多媒体信号, 也可以接收多媒体互 联总线端口 10400发送的多媒体信号。 在本实施例中, 多媒体信号切换电路 单元 1043用于在处理器 1044的控制下, 切换处理器 1044的多媒体信号输入 和多媒体互联总线端口 10400 的多媒体信号输入。 在本实施例中, 多媒体互 联总线端口 10400发送的多媒体信号为机顶盒单元 100发送的有关机顶盒转 换的电视的多媒体信号和机顶盒的主控界面的多媒体信号, 该多媒体信号可 以为音视频信号。 处理器 1044发送的多媒体信号为用户主控界面 (UI )的多 媒体信号。在本实施例中,多媒体互联总线端口 10400可以是 HDMI输入端口, 也可以是 DVI和 SPDIF输入端口。
在本实施例中, 当主控板 104 开启上电操作后, 多媒体信号切换电路单 元 1043首先输出的多媒体信号是处理器 1044的用户主控界面 (UI ) 的多媒 体信号, 并由多媒体信号输出端口 1046输出给多媒体设备 30。 该用户主控界 面上会显示多个业务模块名称, 比如机顶盒业务模块和家庭网关业务模块。 在本实施例中, 多媒体信号输出端口 1046可以是 HDMI输出端口, 也可以是 DVI和 SPDIF输出端口。
在本实施例中, 遥控信号收发电路单元 1047用于与遥控器 20交互遥控 信号。 遥控信号收发电路单元 1047可以是红外线收发电路, 也可以蓝牙收发 电路, 也可以是无线射频电路。
当用户需要观看电视时, 用户通过遥控器 20选择该机顶盒业务模块, 遥 控器 20发送选择机顶盒业务的请求信号, 当该遥控信号收发电路单元 1047 接收到遥控器 20发送的选择机顶盒业务的请求信号后, 一方面, 处理器 1044 基于该选择机顶盒业务的请求信号控制机顶盒单元 100输出机顶盒的主控界 面, 另一方面, 处理器 1044控制多媒体信号切换电路单元 1043将当前的多 媒体信号输入切换为多媒体互联总线端口 10400 的多媒体信号输入, 即将机 顶盒输出的主控界面经由多媒体信号输出端口 1046发送至多媒体设备 30。之 后, 处理器 1044通知遥控器 20将遥控器 20当前的发送模式(此时, 为处理 器 1044的主控发送模式)切换到机顶盒的红外线发送模式, 当然, 也可以是 蓝牙发送模式或 RF发送模式, 此时, 当遥控器 20切换发送模式后, 可以接 收用户的操作指令, 即, 即接收操作该机顶盒的主控界面的控制信号, 比如, 切换频道, 调节音量, 点播节目等等, 并将用户的操作指令对应的红外线键 码经由遥控信号收发电路单元 1047转发至处理器 1044 , 并通过处理器 1044 转发至机顶盒单元 100。 当用户不再需要机顶盒提供的业务时, 用户可以操作 遥控器 20中的 Home键, 或返回主控键, 或其它可以指示返回处理器 1044的 用户主控界面的键, 此时, 遥控器 20会将相应的键码经由遥控信号收发电路 单元 1047转发至处理器 1044 ,处理器 1044控制多媒体信号切换电路单元 1043 将当前的多媒体信号输入切换为处理器 1044的多媒体信号输入, 即将处理器 1044的用户主控界面(UI )的多媒体信号经由多媒体信号输出端口 1046发送 至多媒体设备 30, 并再通知遥控器 20将当前的发送模式切换到处理器 1044 的主控发送模式。
在本实施例中, 以太网交换电路单元 1045可以是一个以太网报文交换电 路, 其具体电路可以通过现有技术中获得, 此处不再——描述。 以太网交换 电路单元 1045用于将家庭网关单元 102通过 IP网络互联总线端口 10404提 供的 IP数据进行以太网报文交换, 并将交换的数据通过网络信号收发电路单 元 1048转发至上网设备 40 , 或路由设备 50、 或中继设备 60。
在本实施例中, 当用户开机使用融合终端 10时, 家庭网关单元 102也会 上电启动, 此时, 家庭网关单元 102会通过 IP网络互联总线端口 10404向处 理器 1044上报将家庭网关单元 102当前的系统状态和当前的系统参数配置, 处理器 1044再将家庭网关单元 102当前的网络状态依次经由以太网交换电路 单元 1045和网络信号收发电路单元 1048转发至上网设备 40, 此时, 用户可 以通过上网设备 40输入上网参数, 并将该上网参数依次经由网络信号收发电 路单元 1048和以太网交换电路单元 1045发送至处理器 1 044 ,处理器 1044再 将该上网参数经由 IP网络互联总线端口 10404下发至家庭网关单元 1 02进行 配置, 当家庭网关单元 102配置成功后, 并将配置成功后的工作状态经由 IP 网络互联总线端口 10404上 ^艮给处理器 1044 ,再由处理器 1044刷新家庭网关 单元 102当前的网络状态, 并依次经由以太网交换电路单元 1045和网络信号 收发电路单元 1048转发至上网设备 40。 此后, 以太网交换电路单元 1045通 过 IP网络互联总线端口 10404接收家庭网关单元 1 02提供的 IP数据, 再将 该 IP数据进行以太网报文交换处理, 再将处理后的数据经由网络信号收发电 路单元 1048转发至上网设备 40。
在本实施例中, 当家庭网关单元 102 上报的工作状态为挂死状态后 (死 机), 处理器 1044通过控制互联总线端口 10402对家庭网关单元 102进行复 位操作控制。
可选的, 该主控板 104可以包括硬盘(未画出)和光驱(未画出), 分别 与处理器 1044通信相连接。 在本实施例中, 也可以通过硬盘(未画出)和光 驱(未画出)为多媒体设备 30提供多媒体数据, 也可以通过硬盘(未画出) 为用户提供数据存储服务。
可以理解的是, 当主控板 104中的处理器 1044通过控制互联总线分别控 制机顶盒单元 101和家庭网关单元 102时, 主控板 104的处理器 1044可以对 控制信号进行区分开, 以分别控制控制机顶盒单元 1 01和家庭网关单元 102。 也可以在的处理器 1044发送的控制信号中携带控制机顶盒单元或控制家庭网 关单元的标识信号。
通过本发明实施例提供的融合终端, 通过该融合终端中的主控板中的处 理器控制融合终端中的机顶盒单元实现电视业务, 并通过该主控板的处理器 控制该融合终端中的家庭网关单元实现互联网接入业务, 以达到通过一个业 务终端分别实现提供电视业务和互联网接入业务的目的, 从而减少了用户为 享受不同业务时使用的业务终端的个数, 并且也减少了用户对接入和接出的 连接线的频繁接线操作。
如图 3 所示的实施例一提供的融合终端的主控板的第一种结构的应用架 构图。
在本实施例中, 总线插槽 1040通过互联背板 105与机顶盒单元 100和家 庭网关单元 1 02通信相连接, 其中, 总线插槽 1040中的多媒体互联总线端口 10400通过互联背板 105中的多媒体互联总线与机顶盒单元 100通信相连接, 控制互联总线端口 10402通过互联背板 105 中的控制互联总线分别与机顶盒 单元 100和家庭网关单元 102通信相连接, IP网络互联总线端口 10404通过 互联背板 105中的 IP网络互联总线与家庭网关单元 1 02通信相连接。
在本实施例中,以太网交换电路单元 1045还可以直接与 PLC接入网关 70 或 G. hn接入网关 80通信连接, 并将 PLC接入网关 70或 G. hn接入网关 80提 供的数据包进行以太网报文交换, 以及将交换的数据转发至上网设备 40、 路 由设备 50、 中继设备 40 , 可以理解为, 以太网交换电路单元 1045本身提供 了直接与 PLC接入网关 70或 G. hn接入网关 80通信连接的端口。 其中, PLC 接入网关 70为电力线网关 ( Power L ine Power L ine Connec t ion, 电力线互 联), G. hn接入网关为 ITU的电力线互联协议接入网关。
如图 4所示的实施例一提供的融合终端的主控板的第二种结构图。
在本实施例中, 图 4与图 2的不同点在于, 主控板 104进一步包括 PLC 接入端口 1 049和 G. hn接入端口 1050 , PLC接入端口 1049和 G. hn接入端口 1050分别与以太网交换电路单元 1045通信相连接。该图 4中的其它单元结构 和图 2的其它相同名称的单元结构具有相同的功能。
如图 5 所示的实施例一提供的融合终端的主控板的第二种结构的应用架 构图。
在本实施例中, 图 5与图 3的不同点在于, 以太网交换电路单元 1045通 过 PLC接入端口 1049与 PLC接入网关 70相通信连接, 以太网交换电路单元 1045通过 G. hn接入端口 1050与 G. hn接入网关相通信连接。 可以理解为, 图 3中的以太网交换电路单元 1045可以直接提供与 PLC接入网关 70或 G. hn接 入网关 80相连接的通信端口, 图 5中以太网交换电路单元 1045不提供直接 与 PLC接入网关 70或 G. hn接入网关 80相连接的通信端口, 需要通过主控板 104内置的端口与 PLC接入网关 70或 G. hn接入网关 80通信相连接。 该图 5 中的其它单元结构和图 3的其它相同名称的单元结构具有相同的功能。
如图 6所示的实施例一提供的融合终端的第二种应用系统架构图。
图 6与图 1的不同点在于, 图 6中的机顶盒单元 100还可以通过 IP网络 互联总线与主控板 104通信相连接。 主控板 104进一步通过 IP网络互联总线 对机顶盒单元 100 提供的数据进行 DRM (其英文名为: Digi ta l Right Management , 简称为数字版权管理)或进行 DTCP-IP (其英文名为: Dig i ta l Transmi s s ion Content Protect ion over Internet Protocol , 简称为 IP协 议上的数字传输内容保护)加密, 以维护内容版权管理。 该图 6 中的其它单 元结构和图 1的其它相同名称的单元结构具有相同的功能。
在本实施例中, 还可以将 IP网络互联总线代替多媒体互联总线, 机顶盒 单元 100可以将转换后的电视信号通过 IP网络互联总线发送至主控板 105进 行处理。
如图 7 所示的实施例一提供的融合终端的主控板的第三种结构的应用架 构图。
在本实施例中, 基于图 6的基础上, 图 7与图 3的不同点在于, 机顶盒 单元 100通过 IP网络互联总线与主控板 104中的 IP网络互联总线端口 10404 通信相连接。 该图 7 中的其它单元结构和图 3的其它相同名称的单元结构具 有相同的功能。
在本实施例中, 主控板 104中的处理器 1044通过 IP网络互联总线端口 10404对机顶盒单元 100提供的数据进行 DRM (其英文名为: Digi ta l Right Management , 简称为数字版权管理)或进行 DTCP-IP (其英文名为: Dig i ta l Transmi s s ion Content Protect ion over Interne t Protocol , 简称为 IP协 议上的数字传输内容保护)加密, 以维护内容版权管理。
如图 8 所示的实施例一提供的融合终端的主控板的第四种结构的应用架 构图。
在本实施例中, 基于图 6的基础上, 图 8与图 5的不同点在于, 机顶盒 单元 100通过 IP网络互联总线与主控板 104中的 IP网络互联总线端口通信 相连接。 该图 8 中的其它单元结构和图 5的其它相同名称的单元结构具有相 同的功能。
如图 9所示的实施例二提供的融合终端的主控板的第五种结构图。
在本实施例中, 图 9与图 2和图 4的不同点在于, 主控板 104包括两个 相同结构的总线插槽, 分别为第一总线插槽 1041和第二总线插槽 1042 , 而, 图 2和图 4只包括一个总线插槽, 同时, 第一总线插槽 1041和第二总线插槽 1042可以分别外接机顶盒单元 100和家庭网关单元 102 , 也可以第一总线插 槽 1041和第二总线插槽 1042分别同时外接机顶盒单元 100 ,也可以第一总线 插槽 1041和第二总线插槽 1042分别同时外接家庭网关单元 102。图 9中的第 一总线插槽 1041和第二总线插槽 1042与图 2和图 4中的总线插槽 1040具有 相同的功能结构。 该图 9中的其它单元结构和图 2或图 4的其它相同名称的 单元结构具有相同的功能。
在本实施例中, 图 9所示的结构可以根据实际需求更换提供业务的单元, 可以方便用户自由选择业务模式。
如图 10所示的实施例二提供的融合终端的主控板的第五种结构图的第一 种应用架构图。
在本实施例中, 图 10与图 7的不同点在于, 主控板 104包括两个相同结 构的总线插槽, 分别为第一总线插槽 1041和第二总线插槽 1042 , 第一总线插 槽 1041和第二总线插槽 1042可以分别外接机顶盒单元 100和家庭网关单元 102; 其中, 第一总线插槽 1041通过多媒体互联总线、 控制互联总和 IP网络 互联总线与机顶盒单元 100通信连接, 其中, 第一总线插槽 1041中的多媒体 互联总线端口 10410通过多媒体互联总线与机顶盒单元 100通信连接, 第一 总线插槽 1041中的控制互联总线端口 10412通过控制互联总线与机顶盒单元 100通信连接, 第一总线插槽 1041中的 IP网络互联总端口通过 IP网络互联 总线与机顶盒单元 100通信连接。第二总线插槽 1042通过控制互联总线和 IP 网络互联总线与家庭网关单元 102通信连接, 其中, 第二总线插槽 1042中的 控制互联总线端口 10422通过控制互联总线与家庭网关单元 102通信连接, 第二总线插槽 1042中的 IP网络互联总线端口与家庭网关单元 102通信连接。 该图 10 中的其它单元结构和图 7 的其它相同名称的单元结构具有相同的功
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如图 11所示的实施二提供的融合终端的主控板的第五种结构图的第二种 应用架构图。
在本实施例中,图 11与图 10的不同点在于,图 11中的第一总线插槽 1041 和第二总线插槽 1042可以分别各自同时外接一个外接机顶盒单元, 即第一总 线插槽 1041外接第一机顶盒单元 1010 , 第二总线插槽 1042外接第二机顶盒 单元 1012;同时,第一机顶盒单元 1010和第二机顶盒单元 1012分别外接电视 信号输入源, 在本实施例中, 第一机顶盒单元 1010外接第一类型的电视信号 输入源, 第二机顶盒单元 1012外接第二类型的电视信号输入源, 该第一类型 的电视信号输入源与第二类型的电视信号输入源为不同类型的电视信号输入 源, 也可以理解为, 不同的电视提供商提供的不同类型的电视信号输入源, 比如, A电视提供商可以提供卫星电视信号, B电视提供商可以提供数字电视 信号。 该图 11 中的其它单元结构和图 10的其它相同名称的单元结构具有相 同的功能。 其中, 第一机顶盒单元 1010可以为数字机顶盒单元, 第二机顶盒 单元 1012可以为卫星机顶盒单元。 在本实施例中, 该融合终端可以是提供不 同类型电视信号的电视业务的终端。
在本实施例中, 当用户开机使用融合终端时, 融合终端中的主控板会提 供一个用户主控界面 (UI ), 并将该用户主控界面输出给多媒体设备(以电视 机为例), 该用户主控界面上会显示多个业务模块名称, 比如第一机顶盒和第 二机顶盒。 当用户需要观看电视时, 用户根据电视信号输入源的类型选择相 应类型的机顶盒单元, 比如, 若电视信号输入源的类型为数字电视信号, 则 需要选择数字机顶盒; 若电视信号输入源的类型为卫星电视信号, 则需要选 择卫星机顶盒。 同时, 用户再通过遥控器选择该机顶盒业务, 此时, 用户通 过遥控器发送选择机顶盒业务的请求信号给该融合终端中的主控板 104。该请 求信号可以包括机顶盒的类型标识, 该类型标识用于区分第一机顶盒和第二 机顶盒, 即区分数字机顶盒和卫星机顶盒。 主控板 104中的处理器 1044可以 基于遥控器 20发送的选择机顶盒业务的请求信号控制相应的机顶盒单元。
在本实施例中, 用户可以根据当前的电视业务提供商类型选择相应的类 型的机顶盒单元提供电视业务, 从而方便用户通过该融合终端自主选择不同 电视提供商提供的电视业务, 即方便用户通过该融合终端自主选择不同类型 电视信号的电视业务。
如图 12所示的实施例提供的提供多个业务的方法的第一种流程图。 在本实施例中, 该提供的多个业务的方法, 应用于通过一个业务终端分 别实现提供电视业务和互联网接入业务, 该业务终端可以称为融合终端, 同 时, 该融合终端还可以与多媒体设备、 遥控器、 上网设备、 路由设备、 或中 继设备通信连接, 并可以外接电视信号输入源和网络信号输入源, 该融合终 端将该电视信号输入源提供的电视业务提供给该多媒体设备, 并将该网络信 号输入源提供的固网的互联网业务提供给上网设备、 路由设备、 或中继设备 (以下以上网设备为例;)。
第一种情况, 该融合终端将该电视信号输入源提供的电视业务提供给该 多媒体设备的同时, 也提供互联网接入业务给上网设备。
在本实施例中, 该融合终端将该电视信号输入源提供的电视业务提供给 该多媒体设备, 该融合终端可以包括机顶盒单元、 家庭网关单元、 主控板、 互联背板, 如图 12所示,
步骤 S200,所述融合终端根据所述遥控器发送的控制机顶盒的控制信号, 控制所述机顶盒为所述多媒体设备提供所述电视信号输入源中的电视业务。
步骤 S202 , 所述融合终端根据用户的上网参数控制所述家庭网关为所述 上网设备提供所述网络信号输入源的互联网接入业务。
在本实施例中, 步骤 S200和 S202的执行顺序没有限制。
如图 13所示的实施例提供的提供多个业务的方法的 S200的具体流程图。 在本实施例中, 步骤 S2000 , 该融合终端接收遥控器发送的选择机顶盒业 务的请求信号; 具体的, 该融合终端中的主控板接收遥控器发送的选择机顶 盒业务的请求信号; 在本实施例中, 当用户开机使用融合终端时, 融合终端 中的主控板会提供一个用户主控界面 (UI ), 并将该用户主控界面输出给多媒 体设备(以电视机为例), 该用户主控界面上会显示多个业务模块名称, 比如 机顶盒和家庭网关。 当用户需要观看电视时, 用户通过遥控器选择该机顶盒 业务, 此时, 用户通过遥控器发送选择机顶盒业务的请求信号给该融合终端 中的主控板。
步骤 S2001 ,该融合终端基于该选择机顶盒业务的请求信号向多媒体设备 输出机顶盒的主控界面。 具体的, 该融合终端中的主控板基于该选择机顶盒 业务的请求信号通过互联背板中的控制互联总线, 控制机顶盒单元输出机顶 盒的主控界面, 并通过互联背板中的多媒体互联总线接收该机顶盒的主控界 面; 之后, 该融合终端中的主控板将该机顶盒的主控界面输出至该多媒体设 备。 也可以理解为, 先中断输出所述机顶盒的主控界面的多媒体信号至所述 多媒体设备, 再输出所述融合终端的用户主控界面的多媒体信号至所述多媒 体设备, 也可以理解为, 该融合终端将当前的用户主控界面切换为机顶盒的 主控界面。
步骤 S2002 ,该融合终端通知遥控器切换当前的发送模式。在本实施例中, 当遥控器与融合终端中的用户主控界面进行交互时, 遥控器当前的发送模式 为主控发送模式; 当遥控器与机顶盒的主控界面交互时, 遥控器的发送模式 为机顶盒的红外线发送模式或蓝牙发送模式或 RF发送模式; 因而,本步骤中, 需要将遥控器当前的发送模式切换为机顶盒的发送模式。
步骤 S2003 ,该融合终端接收遥控器发送的操作该机顶盒的主控界面的控 制信号。 具体的, 该融合终端中的主控板接收遥控器发送的操作该机顶盒的 主控界面的控制信号。 在本实施例中, 当主控板输出机顶盒的主控界面至多 媒体设备后, 用户可再次通过遥控器发送操作该机顶盒的主控界面的控制信 号, 可以理解为, 该控制信号用于操作机顶盒的主控界面中提供的功能, 比 如, 搜索频道, 切换频道, 调节音量, 点播节目, 播放节目等等。
步骤 S2004 ,该融合终端基于该控制信号将转换后的电视信号转发至多媒 体设备, 以实现提供电视业务。
具体的, 该融合终端中的主控板基于该控制信号通过互联背板中的控制 互联总线, 控制机顶盒单元输出该机顶盒单元转换后的电视信号; 该融合终 端中的主控板通过互联背板中的多媒体互联总线接收该转换后的电视信号; 该融合终端中的主控板将该转换后的电视信号转发至多媒体设备, 从而实现 提供电视业务。 在本实施例中, 需要该融合终端中的机顶盒单元将电视信号 输入源提供的电视信号进行转换, 再由融合终端将该转换后的电视信号转发 至多媒体设备。
可选的, 当用户不再需要机顶盒提供的业务时, 步骤 S2005 , 该融合终端 接收遥控器发送的返回融合终端的用户主控界面的控制信号。
步骤 S2006 ,该融合终端基于该返回融合终端的用户主控界面的控制信号 向多媒体设备输出该融合终端的用户主控界面。 在本实施例中, 也可以理解 为, 先中断输出所述机顶盒的主控界面的多媒体信号至所述多媒体设备, 再 输出所述融合终端的用户主控界面的多媒体信号至所述多媒体设备, 也可以 理解为, 融合终端将当前的机顶盒的主控界面切换为融合终端的用户主控界 面。 用户可以操作遥控器中的 Home键, 或返回主控键, 或其它可以指示返回 融合终端的用户主控界面的键, 此时, 遥控器会将相应的键码转发至融合终 端, 融合终端将该融合终端的用户主控界面 (UI )发送至多媒体设备 30。
步骤 S2007 , 该融合终端通知遥控器切换当前的发送模式。 具体的, 通知 遥控器将机顶盒的发送模式切换为主控发送模式。
可选的, 进一步包括, 步骤 S2008 , 该融合终端对电视业务中的数据进行 DRM或 DTCP- 1 P加密, 以维护内容版权管理。
在执行上述的步骤的同时, 可以同时执行下面的步骤, 即在提供机顶盒 业务的同时, 也可以同时, 提供互联网接入业务, 如图 15所示。
如图 14所示的实施例提供的提供多个业务的方法的 S202的具体流程图。 步骤 S2020 , 该融合终端向上网设备发送当前的网络状态; 具体的, 该融 合终端的主控板通过 IP网络互联总线接收家庭网关单元上报的当前的系统状 态和当前的系统配置; 该主控板将该家庭网关的网络状态转发至上网设备。 当前的系统状态可以包括融合终端的网络状态、 使用状态、 挂死状态等等。
步骤 S2021 , 该融合终端接收上网设备根据该当前的网络状态发送的上网 参数。 当用户开机使用融合终端时, 融合终端中的家庭网关单元也会上电启 动, 此时当前的网络状态是网络未连接状态, 若上网设备需要连接网络时, 需要用户在上网设备设置上网参数, 即输入上网账号和上网密码。 具体的, 该融合终端的主控板接收该上网设备发送的上网参数。
步骤 S2022 , 该融合终端根据接收的上网参数进行系统参数配置, 并刷新 当前的网络状态。 具体的, 该主控板将该上网参数通过 IP网络互联总线下发 至家庭网关单元; 当家庭网关单元根据该上网参数配置成功后, 该主控板通 过 IP网络互联总线接收配置成功后的工作状态, 并刷新该家庭网关的当前的 网络状态, 此时, 刷新的当前的网络状态为网络已连接状态, 这样, 上网设 备可以通过该融合终端进行上网;
步骤 S2023 , 该融合终端将刷新的当前的网络状态发送至上网设备。 具体 的, 该主控板将该刷新的当前的网络状态发送至上网设备。
步骤 S2024 , 该融合终端将网络信号输入源提供的数据进行以太网报文交 换处理, 并将处理后的数据转发至上网设备, 从而为上网设备提供互联网接 入业务。 具体的, 该主控板将家庭网单元提供的 IP数据进行以太网报文交换 处理, 并将处理后的数据转发至上网设备, 从而实现互联网接入业务。 后续, 上网设备也可以通过主控板将数据转发至家庭网关单元。
可选的, 当该融合终端的当前的互联网接入业务的工作状态为挂死状态 时 (即家庭网关当前的系统状态为挂死状态) , 可以通过对该融合终端进行 复位操作, 以重新开启该融合终端的互联网接入业务。 具体的, 可以由主控 板通过控制互联总线对家庭网关单元进行复位操作控制。
在本实施例中, 可选的, 进一步包括: 融合终端将 PLC接入网关或 G. hn接 入网关的提供互联网接入业务提供给上网设备。 具体的, 融合终端该主控板 将 PLC接入网关或 G. hn接入网关提供的 IP数据进行以太网报文交换处理, 并将 处理后的数据转发至上网设备, 从而实现互联网接入业务。
通过本实施例提供的提供多业务的方法, 通过该融合终端同时提供电视 业务和互联网接入业务, 从而减少了用户为享受不同业务时使用的业务终端 的个数, 并且也减少了用户对接入和接出的连接线的频繁接线操作。
如图 15所示的实施例提供的提供多个业务的方法的第二种流程图。
第二种情况, 可选的, 该融合终端可以根据不同类型的电视信号输入源 为该多媒体设备提供不同类型电视信号的电视业务。 即, 在本实施例中, 该 融合终端可以包括第一机顶盒单元、 第二机顶盒单元、 主控板、 互联背板。 该两个机顶盒单元分别为数字机顶盒单元和卫星机顶盒单元,该第一机顶盒 单元外接第一类型的电视信号输入源, 第二机顶盒单元外接第二类型的电视 信号输入源, 该第一类型的电视信号输入源与第二类型的电视信号输入源为 不同类型的电视信号输入源。
在本实施例中, 所述融合终端根据所述遥控器发送的控制第一机顶盒单 元或第二机顶盒单元的控制信号, 控制所述第一机顶盒单元或第二机顶盒单 元为所述多媒体设备提供相应类型的电视信号输入源中的电视业务。
具体的:
步骤 S210 , 该融合终端接收遥控器发送的选择第一机顶盒或第二机顶盒 业务的请求信号; 具体的, 该融合终端中的主控板接收遥控器发送的选择第 一机顶盒或第二机顶盒业务的请求信号; 在本实施例中, 当用户开机使用融 合终端时, 融合终端中的主控板会提供一个用户主控界面 (UI ), 并将该用户 主控界面输出给多媒体设备 (以电视机为例;), 该用户主控界面上会显示多个 业务模块名称, 比如第一机顶盒单元和第二机顶盒单元。 当用户需要观看电 视时, 用户根据电视信号输入源的类型选择相应类型的机顶盒单元, 比如, 若电视信号输入源的类型为数字电视信号, 则需要选择数字机顶盒; 若电视 信号输入源的类型为卫星电视信号, 则需要选择卫星机顶盒。 同时, 用户再 通过遥控器选择相应类型的机顶盒业务, 此时, 用户通过遥控器发送选择机 顶盒业务的请求信号给该融合终端中的主控板。 该请求信号可以包括机顶盒 的类型标识, 该类型标识用于区分第一机顶盒和第二机顶盒, 即区分数字机 顶盒和卫星机顶盒。
步骤 S211 , 该融合终端基于该选择第一机顶盒或第二机顶盒业务的请求 信号向多媒体设备输出相应机顶盒的主控界面。 该融合终端的主控板根据该 请求信号中的机顶盒标识, 选择控制相应的机顶盒单元。 具体的, 该融合终 端中的主控板基于该选择机顶盒业务的请求信号通过互联背板中的控制互联 总线, 控制机顶盒单元输出机顶盒的主控界面, 并通过互联背板中的多媒体 互联总线接收该机顶盒的主控界面; 之后, 该融合终端中的主控板将该机顶 盒的主控界面输出至该多媒体设备。 也可以理解为, 该融合终端将当前的用 户主控界面切换为机顶盒的主控界面。
步骤 S212 , 该融合终端通知遥控器切换当前的发送模式。在本实施例中, 当遥控器与融合终端中的用户主控界面进行交互时, 遥控器当前的发送模式 为主控发送模式; 当遥控器与机顶盒的主控界面交互时, 遥控器的发送模式 为机顶盒的红外线发送模式或蓝牙发送模式或 RF发送模式; 因而,本步骤中, 需要将遥控器当前的发送模式切换为机顶盒的发送模式。
步骤 S21 3 , 该融合终端接收遥控器发送的操作该机顶盒的主控界面的控 制信号。 具体的, 该融合终端中的主控板接收遥控器发送的操作该机顶盒的 主控界面的控制信号。 在本实施例中, 当主控板输出机顶盒的主控界面至多 媒体设备后, 用户可再次通过遥控器发送操作该机顶盒的主控界面的控制信 号, 可以理解为, 该控制信号用于操作机顶盒的主控界面中提供的功能, 比 如, 搜索频道, 切换频道, 调节音量, 点播节目, 播放节目等等。
步骤 S214 , 该融合终端基于该控制信号将转换后的电视信号转发至多媒 体设备, 以实现提供电视业务。
具体的, 该融合终端中的主控板基于该控制信号通过互联背板中的控制 互联总线, 控制机顶盒单元输出该机顶盒单元转换后的电视信号; 该融合终 端中的主控板通过互联背板中的多媒体互联总线接收该转换后的电视信号; 该融合终端中的主控板将该转换后的电视信号转发至多媒体设备, 从而实现 提供电视业务。 在本实施例中, 需要该融合终端中的机顶盒单元将电视信号 输入源提供的电视信号进行转换, 再由融合终端将该转换后的电视信号转发 至多媒体设备。
可选的, 当用户不再需要机顶盒提供的业务时, 步骤 S215 , 该融合终端 接收遥控器发送的返回融合终端的用户主控界面的控制信号。
步骤 S216 , 该融合终端基于该返回融合终端的用户主控界面的控制信号 向多媒体设备输出该融合终端的用户主控界面。 在本实施例中, 也可以理解 为, 融合终端将当前的机顶盒的主控界面切换为融合终端的用户主控界面。
用户可以操作遥控器中的 Home键, 或返回主控键, 或其它可以指示返回 融合终端的用户主控界面的键, 此时, 遥控器会将相应的键码转发至融合终 端, 融合终端将该融合终端的用户主控界面 (UI )发送至多媒体设备 30。 步骤 S217 , 该融合终端通知遥控器切换当前的发送模式。 具体的, 通知 遥控器将机顶盒的发送模式切换为主控发送模式。
可选的, 进一步包括, 步骤 S218 , 该融合终端对电视业务中的数据进行 DRM或 DTCP-IP加密, 以维护内容版权管理。
在本实施例中, 用户可以根据当前的电视业务提供商类型选择相应的类 型的机顶盒单元提供电视业务, 从而方便用户通过该融合终端自主选择不同 电视提供商提供的电视业务, 即方便用户通过该融合终端自主选择不同类型 电视信号的电视业务。
上述本发明实施例序号仅仅为了描述, 不代表实施例的优劣。
本领域的技术人员可以清楚地了解到本发明实施例可借助软件加必需的 通用硬件平台的方式来实现。 基于这样的理解, 本发明实施例的技术方案本 质上或者说对现有技术做出贡献的部分可以以软件产品的形式体现出来, 该 计算机软件产品可以存储在存储介质中, 如 ROM/RAM、 磁碟、 光盘等, 包括 若干指令用以使得一台计算机设备(可以是个人计算机, 服务器, 或者网络 设备等)执行本发明实施例各个实施例或者实施例的某些部分所述的方法。
上述具体实施例并不用以限制本发明, 对于本技术领域的普通技术人员 来说, 凡在不脱离本发明原理的前提下, 所作的任何修改、 等同替换、 改进 等, 均应包含在本发明的保护范围之内。

Claims

权 利 要求 书
1、 一种融合终端, 其特征在于, 所述融合终端外接电视信号输入源和网络 信号输入源, 并分别与多媒体设备、 上网设备、 遥控器建立通信连接, 所述融 合终端包括: 机顶盒单元、 家庭网关单元、 主控板和互联背板;
其中, 所述机顶盒单元外接所述电视信号输入源, 用于提供电视业务; 所述家庭网关单元外接所述网络信号输入源, 用于提供互联网接入业务; 所述主控板分别与所述多媒体设备和上网设备建立通信连接, 所述主控板 通过所述互联背板分别与所述机顶盒单元和所述家庭网关单元通信连接, 所述 主控板用于当接收到所述遥控器发送的控制机顶盒单元的控制信号时, 通过所 述互联背板中的控制互联总线和多媒体互联总线控制所述机顶盒单元为所述多 媒体设备提供电视业务, 并用于基于用户的上网参数通过所述互联背板中的控 制互联总线和 IP网络互联总线控制所述家庭网关单元为所述上网设备提供互联 网接入业务。
2、 根据权利要求 1所述的融合终端, 其特征在于, 当所述主控板提供电视 业务时, 所述主控板进一步用于通过所述控制互联总线控制所述机顶盒单元输 出所述电视业务的电视信号, 并通过所述多媒体互联总线接收所述机顶盒单元 输出的电视信号, 并将所述接收的电视信号输出至所述多媒体设备。
3、 根据权利要求 1所述的融合终端, 其特征在于, 所述主控板包括总线插 槽, 所述总线插槽包括多媒体互联总线端口、 控制互联总线端口及 IP网络互联 总线端口, 所述机顶盒单元通过所述互联背板中的多媒体互联总线与所述多媒 体互联总线端口通信连接, 并通过所述互联背板中的控制互联总线与所述控制 互联总线端口通信连接, 所述家庭网关单元通过所述互联背板中的控制互联总 线与所述控制互联总线端口通信连接, 并通过所述互联背板中的 IP网络互联总 线与所述 IP网络互联总线端口通信连接。
4、 根据权利要求 1所述的融合终端, 其特征在于, 所述主控板进一步包括 第一总线插槽和第二总线插槽, 所述第一总线插槽与所述机顶盒单元通信连接 , 所述第二总线插槽与所述家庭网关单元通信连接; 其中, 所述第一总线插槽包 括多媒体互联总线端口、 控制互联总线端口及 IP网络互联总线端口, 所述第二 总线插槽包括多媒体互联总线端口、控制互联总线端口及 IP网络互联总线端口 , 所述机顶盒单元通过所述互联背板中的多媒体互联总线与所述第一总线插槽中 的所述多媒体互联总线端口通信连接, 并通过所述互联背板中的控制互联总线 与所述第一总线插槽中的所述控制互联总线端口通信连接, 所述家庭网关单元 通过所述互联背板中的控制互联总线与所述第二总线插槽中的所述控制互联总 线端口通信连接, 并通过所述互联背板中的 IP网络互联总线与所述第二总线插 槽中的所述 IP网络互联总线端口通信连接。
5、 根据权利要求 3或 4所述的融合终端, 其特征在于, 所述主控板进一步 包括多媒体信号切换电路单元、 处理器、 多媒体信号输出端口、 遥控信号收发 电路单元, 其中, 所述处理器分别与所述控制互联总线端口、 所述多媒体信号 切换电路单元及所述遥控信号收发电路单元通信连接, 所述多媒体信号切换电 路单元分别与所述多媒体互联总线端口及所述多媒体信号输出端口通信连接, 所述多媒体信号输出端口与所述多媒体设备通信连接, 所述遥控信号收发电路 单元与所述遥控器通信连接。
6、 根据权利要求 5所述的融合终端, 其特征在于, 所述多媒体信号切换电 路单元用于在所述处理器的控制下, 切换所述处理器的多媒体信号输入和所述 多媒体互联总线端口的多媒体信号输入, 其中, 所述处理器的多媒体信号为用 户主控界面的多媒体信号 , 所述多媒体互联总线端口的多媒体信号为所述机顶 盒单元的电视信号和机顶盒的主控界面的多媒体信号。
7、 根据权利要求 5或 6所述的融合终端, 其特征在于, 所述处理器用于当 通过所述遥控信号收发电路单元接收到所述遥控器发送的选择机顶盒业务的请 求信号时, 控制所述多媒体信号切换电路单元将当前的处理器的多媒体信号输 入切换为所述多媒体互联总线端口的多媒体信号输入, 以输出所述机顶盒的主 控界面的多媒体信号至所述多媒体设备。
8、 根据权利要求 5至 7任意一项所述的融合终端, 其特征在于, 所述处理 器进一步用于当通过所述遥控信号收发电路单元接收到所述遥控器发送的操作 所述机顶盒的主控界面的控制信号时, 控制所述机顶盒单元将电视信号经由所 述多媒体互联总线端口、 所述多媒体信号切换电路单元和所述多媒体信号输出 端口输出至所述多媒体设备。
9、 根据权利要求 6至 8任意一项所述的融合终端, 其特征在于, 所述处理 器进一步用于当通过所述遥控信号收发电路单元接收到所述遥控器发送的返回 用户主控界面的控制信号时, 控制所述多媒体信号切换电路单元将当前的所述 多媒体互联总线端口的多媒体信号输入切换为所述处理器的多媒体信号输入。
10、 根据权利要求 3至 9任意一项所述的融合终端, 其特征在于, 所述机 顶盒单元进一步通过所述互联背板中的 IP网络互联总线与所述 IP网络互联总 线端口通信连接, 所述主控板进一步用于通过所述 IP网络互联总线对所述机顶 盒单元提供的数据进行加密, 以维护内容版权管理。
11、 根据权利要求 1至 10任意一项所述的融合终端, 其特征在于, 所述主 控板进一步用于通过所述控制互联总线实现对所述家庭网关单元的系统状态控 制。
12、 根据权利要求 1至 11任意一项所述的融合终端, 其特征在于, 当所述 主控板提供互联网接入业务时, 所述主控板进一步用于通过所述 IP网络互联总 线实现对所述家庭网关单元的系统参数配置, 当系统参数配置成功后通过所述 IP网络互联总线为所述上网设备提供互联网接入业务。
13、 根据权利要求 12所述的融合终端, 其特征在于, 所述主控板进一步用 于当系统参数配置成功后将所述家庭网关单元提供的 IP数据进行以太网报文交 换处理, 再将处理后的数据转发至所述上网设备。
14、 根据权利要求 3至 13任意一项所述的融合终端, 其特征在于, 所述主 控板进一步包括以太网交换电路单元及网络信号收发电路单元, 所述以太网交 换电路单元与所述处理器、 所述网络信号收发电路单元及所述 IP网络互联总线 端口分别通信连接, 所述处理器与所述 IP网络互联总线端口通信连接, 所述网 络信号收发电路单元与所述上网设备通信连接。
15、 根据权利要求 14所述的融合终端, 其特征在于, 所述处理器进一步用 于通过所述 IP网络互联总线端口接收所述家庭网关单元上报的当前的系统状态 和当前的系统参数配置, 并将所述当前的系统状态中的网络状态依次经由所述 以太网交换电路单元和网络信号收发电路单元转发至所述上网设备。
16、 根据权利要求 15所述的融合终端, 其特征在于, 所述处理器进一步用 于通过所述以太网交换电路单元和网络信号收发电路单元接收所述上网设备发 送的上网参数, 通过所述 IP网络互联总线端口对所述家庭网关单元进行系统参 数配置, 当系统参数配置成功后, 刷新所述当前的系统状态中的网络状态, 并 转发至所述上网设备。
17、 根据权利要求 16所述的融合终端, 其特征在于, 所述以太网交换电路 单元用于将所述家庭网关单元提供的 IP数据进行以太网报文处理, 并将处理后 的数据经由所述网络信号收发电路单元转发至所述上网设备。
18、 根据权利要求 15至 17任意一项所述的融合终端, 其特征在于, 所述 以太网交换电路单元进一步与 PLC接入网关通信连接,用于将所述 PLC接入网 关的网络数据包进行以太网报文处理, 并将处理后的数据经由所述网络信号收 发电路单元转发至所述上网设备。
19、 根据权利要求 15至 17任意一项所述的融合终端, 其特征在于, 所述 以太网交换电路单元进一步与 G.hn接入网关通信连接, 用于将所述 G.hn接入 网关的网络数据包进行以太网报文处理, 并将处理后的数据经由所述网络信号 收发电路单元转发至所述上网设备。
20、 根据权利要求 15至 17任意一项所述的融合终端, 其特征在于, 所述 主控板进一步包括 PLC 接入端口, 所述以太网交换电路单元进一步通过所述 PLC接入端口与所述 PLC接入网关通信连接, 用于将所述 PLC接入网关的网 络数据包进行以太网报文处理, 并将处理后的数据经由所述网络信号收发电路 单元转发至所述上网设备。
21、 根据权利要求 15至 17任意一项所述的融合终端, 其特征在于, 所述 主控板进一步包括 G.hn 接入端口, 所述以太网交换电路单元进一步通过所述 G.hn接入端口与 G.hn接入网关通信连接, 用于将所述 G.hn接入网关的网络数 据包进行以太网报文处理, 并将处理后的数据经由所述网络信号收发电路单元 转发至所述上网设备。
22、 一种融合终端, 其特征在于, 所述融合终端外接不同类型的电视信号 输入源, 并与多媒体设备建立通信连接, 所述融合终端包括: 第一机顶盒单元、 第二机顶盒单元、 主控板和互联背板;
其中, 所述第一机顶盒单元外接第一类型的电视信号输入源, 用于提供电 第一类型的电视业务;
所述第二机顶盒单元外接第二类型的电视信号输入源, 用于提供电第二类 型的电视业务;
所述主控板与所述多媒体设备建立通信连接, 所述主控板通过所述互联背 板分别与所述第一机顶盒单元和第二机顶盒单元通信连接, 所述主控板用于根 据所述遥控器发送的控制第一机顶盒单元或第二机顶盒单元的控制信号, 控制 所述第一机顶盒单元或第二机顶盒单元为所述多媒体设备提供相应类型的电视 信号输入源的电视业务。
23、 根据权利要求 22所述的融合终端, 其特征在于, 所述主控板进一步用 于通过所述控制互联总线控制所述第一机顶盒单元或第二机顶盒单元输出相应 类型的电视业务的电视信号, 并通过所述多媒体互联总线接收所述第一机顶盒 单元或第二机顶盒单元输出相应类型的电视业务的电视信号, 并将所述接收的 电视信号输出至所述多媒体设备。
24、 根据权利要求 22所述的融合终端, 其特征在于, 所述主控板包括总线 插槽, 所述总线插槽包括多媒体互联总线端口、 控制互联总线端口及 IP网络互 联总线端口, 所述第一机顶盒单元通过所述互联背板中的多媒体互联总线与所 述多媒体互联总线端口通信连接, 并通过所述互联背板中的控制互联总线与所 述控制互联总线端口通信连接, 所述第二机顶盒单元通过所述互联背板中的多 媒体互联总线与所述多媒体互联总线端口通信连接, 并通过所述互联背板中的 控制互联总线与所述控制互联总线端口通信连接。
25、 根据权利要求 22所述的融合终端, 其特征在于, 所述主控板进一步包 括第一总线插槽和第二总线插槽, 所述第一总线插槽与所述第一机顶盒单元通 信连接, 所述第二总线插槽与所述第二机顶盒单元通信连接; 其中, 所述第一 总线插槽包括多媒体互联总线端口、控制互联总线端口及 IP网络互联总线端口 , 所述第二总线插槽包括多媒体互联总线端口、 控制互联总线端口及 IP网络互联 总线端口, 所述第一机顶盒单元通过所述互联背板中的多媒体互联总线与所述 第一总线插槽中的所述多媒体互联总线端口通信连接, 并通过所述互联背板中 的控制互联总线与所述第一总线插槽中的所述控制互联总线端口通信连接, 所 述第二机顶盒单元通过所述互联背板中的多媒体互联总线与所述第二总线插槽 中的所述多媒体互联总线端口通信连接, 并通过所述互联背板中的控制互联总 线与所述第二总线插槽中的所述控制互联总线端口通信连接。
26、 根据权利要求 24或 25所述的融合终端, 其特征在于, 所述主控板进 一步包括多媒体信号切换电路单元、 处理器、 多媒体信号输出端口、 遥控信号 收发电路单元, 其中, 所述处理器分别与所述控制互联总线端口、 所述多媒体 信号切换电路单元及所述遥控信号收发电路单元通信连接, 所述多媒体信号切 换电路单元分别与所述多媒体互联总线端口及所述多媒体信号输出端口通信连 接, 所述多媒体信号输出端口与所述多媒体设备通信连接, 所述遥控信号收发 电路单元与所述遥控器通信连接。
27、 根据权利要求 26所述的融合终端, 其特征在于, 所述多媒体信号切换 电路单元用于在所述处理器的控制下, 切换所述处理器的多媒体信号输入和所 述多媒体互联总线端口的多媒体信号输入, 其中, 所述处理器的多媒体信号为 用户主控界面的多媒体信号, 所述多媒体互联总线端口的多媒体信号为所述第 一机顶盒单元或第二机顶盒单元的电视信号, 和第一机顶盒单元或第二机顶盒 单元的主控界面的多媒体信号。
28、 根据权利要求 26或 27所述的融合终端, 其特征在于, 所述处理器用 于当通过所述遥控信号收发电路单元接收到所述遥控器发送的选择第一机顶盒 业务或第二机顶盒业务的请求信号时, 控制所述多媒体信号切换电路单元将当 前的处理器的多媒体信号输入切换为所述多媒体互联总线端口的多媒体信号输 入, 以输出所述第一机顶盒单元或第二机顶盒单元的主控界面的多媒体信号至 所述多媒体设备。
29、 根据权利要求 26至 28任意一项所述的融合终端, 其特征在于, 所述 处理器进一步用于当通过所述遥控信号收发电路单元接收到所述遥控器发送的 操作所述第一机顶盒单元或第二机顶盒单元的主控界面的控制信号时, 控制相 应的机顶盒单元将电视信号经由所述多媒体互联总线端口、 所述多媒体信号切 换电路单元和所述多媒体信号输出端口输出至所述多媒体设备。
30、 根据权利要求 26至 29任意一项所述的融合终端, 其特征在于, 所述 处理器进一步用于当通过所述遥控信号收发电路单元接收到所述遥控器发送的 返回用户主控界面的控制信号时, 控制所述多媒体信号切换电路单元将当前的 所述多媒体互联总线端口的多媒体信号输入切换为所述处理器的多媒体信号输 入。
31、 根据权利要求 24至 30任意一项所述的融合终端, 其特征在于, 所述 第一机顶盒单元或第二机顶盒单元进一步通过所述互联背板中的 IP网络互联总 线与所述 IP 网络互联总线端口通信连接, 所述主控板进一步用于通过所述 IP 网络互联总线对所述机顶盒单元提供的数据进行加密, 以维护内容版权管理。
32、 一种提供多业务的方法, 其特征在于, 所述方法应用于包括机顶盒和 家庭网关的融合终端, 所述融合终端与遥控器、 多媒体设备和上网设备分别建 立通信连接, 并所述融合终端的机顶盒外接电视信号输入源, 和所述融合终端 的机顶盒的家庭网关外接网络信号输入源, 所述方法包括:
所述融合终端根据所述遥控器发送的控制机顶盒的控制信号, 控制所述机 顶盒为所述多媒体设备提供所述电视信号输入源中的电视业务;
所述融合终端根据用户的上网参数控制所述家庭网关为所述上网设备提供 所述网络信号输入源的互联网接入业务。
33、 根据权利要求 32所述的方法, 其特征在于, 所述根据所述遥控器发送 的控制机顶盒的控制信号, 控制所述机顶盒为所述多媒体设备提供所述电视信 号输入源中的电视业务的步骤包括:
当接收到所述遥控器发送的选择机顶盒业务的请求信号时, 中断输出所述 融合终端的用户主控界面的多媒体信号至所述多媒体设备;
控制所述机顶盒输出所述机顶盒的主控界面的多媒体信号至所述多媒体设 备。
34、 根据权利要求 33所述的方法, 其特征在于, 所述根据所述遥控器发送 的控制机顶盒的控制信号, 控制所述机顶盒为所述多媒体设备提供所述电视信 号输入源中的电视业务的步骤进一步包括:
当接收到所述遥控器发送的操作所述机顶盒的主控界面的控制信号时, 控 制所述机顶盒输出所述电视信号输入源中的电视信号至所述多媒体设备。
35、 根据权利要求 33所述的方法, 其特征在于, 所述根据所述遥控器发送 的控制机顶盒的控制信号, 控制所述机顶盒为所述多媒体设备提供所述电视信 号输入源中的电视业务的步骤进一步包括:
当接收到所述遥控器发送的返回用户主控界面的控制信号时, 中断输出所 述机顶盒的主控界面的多媒体信号至所述多媒体设备;
输出所述融合终端的用户主控界面的多媒体信号至所述多媒体设备。
36、 根据权利要求 32所述的方法, 其特征在于, 所述根据用户的上网参数 控制所述家庭网关为所述上网设备提供所述网络信号输入源的互联网接入业务 的步骤包括: 将所述家庭网关的网络状态发送至所述上网设备;
接收所述上网设备根据所述网络状态发送的用户的上网参数;
根据所述上网参数对所述家庭网关进行系统参数配置;
当系统参数配置成功后, 通过所述家庭网关为所述上网设备提供所述网络 信号输入源的互联网接入业务。
37、 根据权利要求 36所述的方法, 其特征在于, 所述当系统参数配置成功 后, 通过所述家庭网关为所述上网设备提供所述网络信号输入源的互联网接入 业务的步骤包括:
当系统参数配置成功后, 更新所述家庭网关的网络状态;
将所述更新后的网络状态发送至所述上网设备;
将所述家庭网关提供的所述网络信号输入源中的 IP数据进行以太网报文处 理, 并将处理后的数据转发至所述上网设备; 或将所述上网设备发送的数据进 行以太网报文处理, 并将处理后的数据转发至所述家庭网关。
38、 根据权利要求 32所述的方法, 其特征在于, 所述融合终端与 PLC接 入网关建立通信连接, 所述方法进一步包括:
将所述 PLC接入网关的网络数据包进行以太网报文处理, 并将处理后的数 据转发至所述上网设备; 或将所述上网设备发送的数据进行以太网报文处理, 并将处理后的数据转发至所述 PLC接入网关。
39、 根据权利要求 32所述的方法, 其特征在于, 所述融合终端与 G.hn接 入网关建立通信连接, 所述方法进一步包括:
将所述 G. hn接入网关的网络数据包进行以太网报文处理, 并将处理后的数 据转发至所述上网设备; 或将所述上网设备发送的数据进行以太网报文处理, 并将处理后的数据转发至所述 G.hn接入网关。
40、 一种提供多业务的方法, 其特征在于, 所述方法应用于包括第一机顶 盒和第二机顶盒的融合终端, 所述融合终端与遥控器、 多媒体设备分别建立通 信连接, 所述融合终端的第一机顶盒外接第一类型的电视信号输入源, 所述融 合终端的第二机顶盒外接第二类型的电视信号输入源, 所述方法包括: 所述融合终端根据所述遥控器发送的控制第一机顶盒或第二机顶盒的控制 信号, 控制所述第一机顶盒或第二机顶盒为所述多媒体设备提供相应类型的电 视信号输入源中的电视业务。
41、 根据权利要求 40所述的方法, 其特征在于, 所述融合终端根据所述遥 控器发送的控制第一机顶盒或第二机顶盒的控制信号时, 控制所述第一机顶盒 或第二机顶盒为所述多媒体设备提供相应类型的电视信号输入源中的电视业务 的步骤包括:
当接收到所述遥控器发送的选择第一机顶盒或第二机顶盒业务的请求信号 时, 中断输出所述融合终端的用户主控界面的多媒体信号至所述多媒体设备; 控制所述第一机顶盒或第二机顶盒输出所述机顶盒的主控界面的多媒体信 号至所述多媒体设备。
42、 根据权利要求 41所述的方法, 其特征在于, 所述融合终端根据所述遥 控器发送的控制第一机顶盒或第二机顶盒的控制信号时, 控制所述第一机顶盒 或第二机顶盒为所述多媒体设备提供相应类型的电视信号输入源中的电视业务 的步骤进一步包括:
当接收到所述遥控器发送的操作所述机顶盒的主控界面的控制信号时, 控 制所述机顶盒输出相应类型的电视信号输入源中的电视信号至所述多媒体设 备。
43、 根据权利要求 41所述的方法, 其特征在于, 所述融合终端根据所述遥 控器发送的控制第一机顶盒或第二机顶盒的控制信号时, 控制所述第一机顶盒 或第二机顶盒为所述多媒体设备提供相应类型的电视信号输入源中的电视业务 的步骤进一步包括:
当接收到所述遥控器发送的返回用户主控界面的控制信号时, 中断输出所 述第一机顶盒或第二机顶盒的主控界面的多媒体信号至所述多媒体设备;
输出所述融合终端的用户主控界面的多媒体信号至所述多媒体设备。
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