WO2017016317A1 - Apparatus and method for remotely waking up television in low power consumption state - Google Patents

Apparatus and method for remotely waking up television in low power consumption state Download PDF

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Publication number
WO2017016317A1
WO2017016317A1 PCT/CN2016/084841 CN2016084841W WO2017016317A1 WO 2017016317 A1 WO2017016317 A1 WO 2017016317A1 CN 2016084841 W CN2016084841 W CN 2016084841W WO 2017016317 A1 WO2017016317 A1 WO 2017016317A1
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WO
WIPO (PCT)
Prior art keywords
television
signal
control module
power source
wake
Prior art date
Application number
PCT/CN2016/084841
Other languages
French (fr)
Chinese (zh)
Inventor
刘付光旺
曹芝勇
Original Assignee
深圳Tcl数字技术有限公司
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
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Application filed by 深圳Tcl数字技术有限公司 filed Critical 深圳Tcl数字技术有限公司
Publication of WO2017016317A1 publication Critical patent/WO2017016317A1/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
    • H04N21/43Processing of content or additional data, e.g. demultiplexing additional data from a digital video stream; Elementary client operations, e.g. monitoring of home network or synchronising decoder's clock; Client middleware
    • H04N21/443OS processes, e.g. booting an STB, implementing a Java virtual machine in an STB or power management in an STB
    • H04N21/4436Power management, e.g. shutting down unused components of the receiver
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N5/00Details of television systems
    • H04N5/44Receiver circuitry for the reception of television signals according to analogue transmission standards
    • H04N5/50Tuning indicators; Automatic tuning control
    • 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
    • H04N21/426Internal components of the client ; Characteristics thereof
    • 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
    • H04N21/426Internal components of the client ; Characteristics thereof
    • H04N21/42607Internal components of the client ; Characteristics thereof for processing the incoming bitstream
    • H04N21/42623Internal components of the client ; Characteristics thereof for processing the incoming bitstream involving specific decryption arrangements
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N21/00Selective content distribution, e.g. interactive television or video on demand [VOD]
    • H04N21/40Client devices specifically adapted for the reception of or interaction with content, e.g. set-top-box [STB]; Operations thereof
    • H04N21/43Processing of content or additional data, e.g. demultiplexing additional data from a digital video stream; Elementary client operations, e.g. monitoring of home network or synchronising decoder's clock; Client middleware
    • H04N21/443OS processes, e.g. booting an STB, implementing a Java virtual machine in an STB or power management in an STB
    • H04N21/4432Powering on the client, e.g. bootstrap loading using setup parameters being stored locally or received from the server
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N5/00Details of television systems
    • H04N5/63Generation or supply of power specially adapted for television receivers

Definitions

  • the present invention relates to the field of television technology, and in particular, to an apparatus and method for remotely waking up a television set in a low power consumption state.
  • the TV When the TV is in standby, it can be divided into true standby and false standby.
  • false standby only the circuit such as video and audio output is turned off, and the main chip operates in the energy-saving mode, but the tuner, the main chip internal demultiplexing module, and the power supply circuit are still in operation, and the power consumption is almost equivalent to the normal working state.
  • the power supply of the system In the real standby mode, the power supply of the system can be cut off by the single-chip microcomputer, so that the CPU and the tuner are in a power-off state.
  • the demultiplexing module of the main chip is in a non-working state, when receiving the radio frequency signal sent by the server, the television The machine cannot parse the TS stream (Transport) Stream, the content information in the transport stream, the server can not remotely control the TV, such as upgrade, wake-up, parameter adjustment.
  • the server can not remotely control the TV, such as upgrade, wake-up, parameter adjustment.
  • users usually turn off the power switch of the TV set and set-top box when they are not watching TV. At this time, it is even more impossible to wake up the TV remotely.
  • the main object of the present invention is to provide an apparatus and method for remotely waking up a television set in a low power consumption state, which can remotely wake up the television set after the television power is turned off.
  • the invention provides a device for remotely waking up a television set in a low power consumption state, comprising a demodulation module, a control module and a auxiliary power supply, wherein an input end of the demodulation module receives a television radio frequency signal sent by a server, and the television radio frequency signal comprises a wakeup a first output end of the demodulation module is connected to an input end of the control module, the demodulation module extracts a wake-up signal from the television radio frequency signal, and sends the wake-up signal to the control module a control output end of the control module is connected to a control input end of a main power source of the television, and the control module outputs a control signal for turning on the power to the main power source when the wake-up signal is determined to be valid, and controls the main
  • the power supply is connected to the power supply input end of the auxiliary power supply, and the power supply input end of the control module and the demodulation module is connected to the demodulation module and the control module when the main power supply is in an off
  • the television radio frequency signal further includes a television code stream
  • the device for remotely waking up the television set in the low power consumption state is further connected to the tuner and the main chip of the television set, and the second output end of the demodulation module is connected to the Determining an input end of the tuner, the demodulation module extracts a television code stream from the television radio frequency signal, and transmits the television code stream to the tuner;
  • the output end of the tuner is connected An input end of the main chip, a power output end of the main power source is connected to the main chip and a power input end of the tuner, and when the main power is turned on, the main power is directed to the main body of the television
  • the chip and the tuner are powered, and the tuner and the main chip work;
  • the device for remotely waking up the television set in the low power consumption state further comprises a controllable switch electrically connected to the main power source, wherein a control input end of the controllable switch is connected to a control output end of the control module, and the control module is received
  • the output control signal closes the controllable switch, the main power source is turned on; when the main power source is turned off, the controllable switch is turned off.
  • the demodulation module includes a first filter and a first demodulator, and an input end of the first filter receives a television radio frequency signal sent by a server, filters the television radio frequency signal, and obtains a first filtered signal,
  • the first filtered signal is consistent with a frequency range of the wake-up signal;
  • an input end of the first demodulator is connected to an output end of the first filter, and the first filtered signal is received and demodulated to obtain a The wake-up signal is output;
  • the output end of the first demodulator is connected to the input end of the control module as a first output end of the demodulation module, and outputs the wake-up signal to the control module.
  • the demodulation module further includes a second filter and a second demodulator, wherein the input end of the second filter receives the television radio frequency signal sent by the server, filters the television radio frequency signal, and obtains the second filtered signal. And the second filtered signal is consistent with a frequency range of the television code stream; an input end of the second demodulator is connected to an output end of the second filter, and the second filtered signal is received and demodulated. Obtaining the television code stream; the output end of the second demodulator is connected to the input end of the tuner as a second output end of the demodulation module, and outputting the television code stream to the tuner .
  • control module is a wireless control module, and a control output of the control module is wirelessly connected to a control input of the main power source.
  • control module is a wireless control module, and a control output of the control module is wirelessly connected to a control input of the main power source.
  • control module comprises a Sub-GHz chip.
  • the invention also provides a device for remotely waking up a television set in a low power consumption state, comprising a demodulation module, a control module and a auxiliary power source, wherein an input end of the demodulation module receives a television radio frequency signal sent by a server, and the television radio frequency signal comprises a wake-up signal; a first output end of the demodulation module is connected to an input end of the control module, the demodulation module extracts a wake-up signal from the television radio frequency signal, and sends the wake-up signal to the control a control output end of the control module is connected to a control input end of a main power source of the television, and the control module outputs a control signal for turning on the power to the main power source when the wake-up signal is determined to be valid, and controls the module
  • the main power source is connected; the power output end of the auxiliary power source is connected to the power input end of the control module and the demodulation module, and when the main power source is in an off state, the auxiliary power source
  • the television radio frequency signal further comprises a television code stream
  • the device for remotely waking up the television set in the low power consumption state is further connected to the tuner and the main chip of the television set, and the second output of the demodulation module Connecting the input end of the tuner, the demodulation module extracts a television code stream from the television radio frequency signal, and sends the television code stream to the tuner; the tuner The output end is connected to the input end of the main chip, and the power output end of the main power source is connected to the main chip and the power input end of the high frequency head, and when the main power source is turned on, the main power source is to the TV The main chip of the machine and the high frequency head are powered, and the high frequency head and the main chip work.
  • the demodulation module includes a first filter and a first demodulator, and an input end of the first filter receives a television radio frequency signal sent by a server, filters the television radio frequency signal, and obtains a first filtered signal,
  • the first filtered signal is consistent with a frequency range of the wake-up signal;
  • an input end of the first demodulator is connected to an output end of the first filter, and the first filtered signal is received and demodulated to obtain a The wake-up signal is output;
  • the output end of the first demodulator is connected to the input end of the control module as a first output end of the demodulation module, and outputs the wake-up signal to the control module.
  • the demodulation module further includes a second filter and a second demodulator, wherein the input end of the second filter receives the television radio frequency signal sent by the server, filters the television radio frequency signal, and obtains the second filtered signal. And the second filtered signal is consistent with a frequency range of the television code stream; an input end of the second demodulator is connected to an output end of the second filter, and the second filtered signal is received and demodulated. Obtaining the television code stream; the output end of the second demodulator is connected to the input end of the tuner as a second output end of the demodulation module, and outputting the television code stream to the tuner .
  • the device for remotely waking up the television set in the low power consumption state further comprises a controllable switch electrically connected to the main power source, wherein a control input end of the controllable switch is connected to a control output end of the control module, and receives The control signal output by the control module closes the controllable switch, and the main power source is turned on; when the main power source is turned off, the controllable switch is turned off.
  • control module is a wireless control module, and a control output of the control module is wirelessly connected to a control input of the main power source.
  • control module comprises a Sub-GHz chip.
  • the invention also provides a method for remotely waking up a television set in a low power consumption state by using a device for remotely waking up a television set in a low power consumption state, comprising the steps of:
  • the auxiliary power supply supplies power to the demodulation module and the control module;
  • the demodulation module receives a television radio frequency signal sent by a server, where the television radio frequency signal includes a wake-up signal;
  • the demodulation module extracts a wake-up signal from the television radio frequency signal, and sends the wake-up signal to the control module;
  • the control module controls the main power of the television to be turned on to wake up the television when it is determined that the wake-up signal is valid.
  • the demodulation module further includes:
  • the demodulation module extracts a television code stream from the television radio frequency signal, and transmits the television code stream to a tuner of the television set.
  • control module controls the main power of the television to be turned on when determining that the wake-up signal is valid, and the step of waking up the television set includes:
  • the control module controls the main power of the television to be turned on when determining that the wake-up signal is valid, and supplies power to the main chip and the high-frequency head of the television by the main power source;
  • the tuner demodulates the television code stream, and sends the demodulated television code stream to the main chip;
  • the main chip performs a corresponding operation according to the demodulated television code stream.
  • the invention provides a demodulation module and a control module in the television, and the auxiliary power supply separately supplies power to the demodulation module and the control module.
  • the server can send the wake-up signal to the television.
  • the TV radio frequency signal the demodulation module extracts the wake-up signal from the TV radio frequency signal, and then the control module controls the main power supply to turn on according to the wake-up signal, wakes up the television, and realizes remote control at the time of turning off the main power of the television.
  • the TV can keep the main power off when not in use, which satisfies the demand for ultra-low standby power consumption of the TV. Conducive to saving energy.
  • FIG. 1 is a block diagram showing a first embodiment of an apparatus for remotely waking up a television set in a low power consumption state according to the present invention
  • FIG. 2 is a block diagram showing a second embodiment of an apparatus for remotely waking up a television set in a low power consumption state according to the present invention
  • FIG. 3 is a block diagram showing a third embodiment of an apparatus for remotely waking up a television set in a low power consumption state according to the present invention
  • FIG. 4 is a block diagram showing a fourth embodiment of an apparatus for remotely waking up a television set in a low power consumption state according to the present invention
  • FIG. 5 is a schematic block diagram of a fifth embodiment of an apparatus for remotely waking up a television set in a low power consumption state according to the present invention
  • FIG. 6 is a block diagram showing a sixth embodiment of an apparatus for remotely waking up a television set in a low power consumption state according to the present invention
  • FIG. 7 is a flow chart of a first embodiment of a method for remotely waking up a television set in a low power consumption state according to the present invention.
  • FIG. 8 is a flow chart of a second embodiment of a method for remotely waking up a television set in a low power consumption state according to the present invention.
  • FIG. 9 is a flow chart of a third embodiment of a method for remotely waking up a television set in a low power consumption state according to the present invention.
  • FIG. 1 is a schematic block diagram of a first embodiment of an apparatus for remotely waking up a television set in a low power consumption state according to the present invention.
  • the television set in this embodiment turns off the main power source 201, the television is in a low power consumption state, and the television does not operate.
  • the device 100 for setting up a low-power state remote wake-up television in the television is connected to the main power supply 201 of the television, and includes a demodulation module 110, a control module 120, and a secondary power supply 130.
  • the power output end of the auxiliary power source 130 is connected to the power input end of the control module 120 and the demodulation module 110.
  • the auxiliary power source 130 can be a low-power power source such as a normal battery, a rechargeable battery, a portable power source, and the demodulation module 110 and the control module 120 are The auxiliary power source 130 is separately powered.
  • the main power source 201 of the television is turned on, the auxiliary power source 130 is turned off, the demodulation module 110 and the control module 120 are not working; when the main power source 201 of the television is turned off, the auxiliary power source 130 starts to operate, and the demodulation module 110 is activated. And the control module 120 is powered.
  • the input end of the demodulation module 110 receives the television radio frequency signal sent by the server 300, and the demodulation module 110 can be connected to the television radio frequency signal line or the Internet through the signal input interface of the television, and then connected to the server 300 by the television radio frequency signal line or the Internet.
  • the server 300 pre-modulates the wake-up signal into the television radio frequency signal, and after receiving the television radio frequency signal, the demodulation module 110 demodulates the television radio frequency signal to obtain a demodulated signal that is consistent with the wake-up signal frequency.
  • the first output end of the demodulation module 110 is connected to the input end of the control module 120, and the demodulation module 110 outputs the demodulated signal to the control module 120, and the control module 120 analyzes the demodulated signal to determine the demodulated signal. Whether the signal is a wake-up signal for waking up the television.
  • the control output end of the control module 120 can be connected to the control input end of the main power source 201 by wire or wirelessly. When the control module 120 determines that the wake-up signal is valid, the control module 120 outputs a control signal to control the main power source 201 to be turned on, and the television set is turned on. Wake up; otherwise, the control module 120 does not output a control signal, and the main power source 201 remains in an off state.
  • Wake up the TV can start the TV directly, all the modules in the TV will enter the working state; wake up the TV can also only start some of the modules in the TV, for example, continue to keep the video and audio output circuits off In the state, the main chip and the tuner of the TV are activated, and the TV enters a false standby state.
  • the TV wakes up it can process the TV code stream (TS code stream) in the TV radio frequency signal, obtain the instruction in the TS code stream, and complete the corresponding operation.
  • the server 300 may first transmit a television radio frequency signal including a wake-up signal to the television set. After the television set is woken up, the server 300 transmits a television radio frequency signal including the television code stream to the television set.
  • the server 300 can also separately transmit the wake-up signal and the television code to the television set by using different channels.
  • the server 300 can also pre-modulate the TS code stream and the wake-up signal into the same TV radio frequency signal by using multiplexing technology, and simultaneously transmit the wake-up signal and the TV code stream to the television set, and the television set is separated from the TV radio frequency signal.
  • a wake-up signal and a TV stream are output.
  • the plurality of instructions included in the TS stream may further include an automatic power-off instruction, and the television sequentially processes the instructions in accordance with the priority order or the chronological order of the instructions, until the automatic power-off instruction in the TS code stream is processed.
  • the main power supply 201 is turned off, the TV is powered off, and the operation is stopped.
  • the auxiliary power source 130 starts to work, and supplies power to the demodulation module 110 and the control module 120, waiting for the next television radio frequency signal to arrive.
  • the automatic power-off command may also be included in the television radio frequency signal transmitted by the server 300 next time. In the awake state, after the television automatically extracts the automatic power-off command from the next arriving television radio frequency signal, the main chip of the television is The main power source 201 is turned off according to the automatic power-off command, and the television is powered off.
  • the demodulation module 110 and the control module 120 are disposed in the television, and the demodulation module 110 and the control module 120 are separately powered by the auxiliary power source 130.
  • the server 300 can The television radio frequency signal carrying the wake-up signal is sent to the television, and the demodulation module 110 extracts the wake-up signal from the television radio frequency signal, and then the control module 120 controls the main power source 201 to be turned on according to the wake-up signal, and wakes up the television, thereby realizing
  • the main power of the TV is turned off, the TV can be remotely woken up at any time.
  • the TV since the TV does not need to respond to the remote command when the main power is turned off, the TV can keep the main power off when not in use.
  • the demand for ultra-low standby power consumption of TV sets is conducive to energy conservation.
  • FIG. 2 is a schematic block diagram of a second embodiment of an apparatus for remotely waking up a television set in a low power consumption state according to the present invention.
  • the embodiment includes the module in the embodiment shown in FIG. 1.
  • the demodulation module 110 includes a first filter 111 and a first demodulator 112.
  • the input end of the first filter 111 receives the television radio frequency transmitted by the server 300.
  • the signal filters out interference noise in the TV RF signal.
  • the bandwidth of the first filter 111 is consistent with the frequency range corresponding to the wake-up signal spectrum of the television radio frequency signal.
  • the obtained segment only includes the television radio frequency signal that is consistent with the frequency range of the wake-up signal.
  • the output end of the first filter 111 is connected to the input end of the first demodulator 112, and the first filter 111 outputs the filtered television radio frequency signal to the first demodulator 112, and the first demodulator 112 pairs the filtered TV radio frequency signal demodulation. Since the TV signal filtered by the first filter 111 includes only the frequency band of the wake-up signal, if the television RF signal includes the wake-up signal, the wake-up signal without interference of other frequency bands can be obtained after the demodulation.
  • the output of the first demodulator 112 is connected to the input of the control module 120 as the first output of the demodulation module 110.
  • the first demodulator 112 outputs the demodulated signal to the control module 120.
  • the control module 120 further determines whether the demodulated signal is a wake-up signal for waking up the television, and if so, controls the main power according to the wake-up signal. 201 is turned on to wake up the television; otherwise, the main power supply 201 is turned off.
  • the filter and the demodulator are used to extract the wake-up signal without interference of other frequency bands from the television radio frequency signal, so that the wake-up signal is extracted in a simple manner, and the extracted signal is accurate, which is beneficial to improving the response speed and accuracy of the remote wake-up television. degree.
  • FIG. 3 is a schematic block diagram of a third embodiment of an apparatus for remotely waking up a television set in a low power consumption state according to the present invention.
  • the embodiment includes the module in the embodiment shown in FIG. 1.
  • the device 100 for remotely waking up the television in a low power consumption state is also connected to the tuner 202 and the main chip 203 of the television.
  • the server 300 employs multiplexing techniques such as frequency division multiplexing, time division multiplexing, etc., to pre-modulate the TS code stream and the wake-up signal into the same television radio frequency signal.
  • the TS stream includes operation instructions that the TV needs to perform, such as an upgrade package, parameters to be adjusted, and the like.
  • the server 300 can simultaneously transmit the TS stream and the wake-up signal to the television through one channel.
  • the demodulation module 110 separates and demodulates the television radio frequency signal to obtain two signals.
  • the frequency of the first signal is consistent with the signal frequency of the wake-up signal, and the frequency of the second signal and the TS stream are The signal frequency is the same.
  • the demodulation module 110 outputs the first path signal to the control module 120, and after the control module 120 determines that the first path signal is a valid wake-up signal, the television main power source 201 is controlled to be turned on.
  • the power output end of the main power source 201 is connected to the power input terminals of the main chip 203 and the high frequency head 202.
  • the main power source 201 supplies power to the main chip 203 and the high frequency head 202, and the main chip 203 and the high frequency head. 202 started working.
  • the second output end of the demodulation module 110 is connected to the input end of the high frequency head 202, and the demodulation module 110 outputs the second path signal to the high frequency head 202 to supply power to the high frequency head 202 and the main chip 203 at the main power source 201.
  • the tuner 202 extracts related instructions and audio and video signals included in the TS stream from the second signal, and the output of the tuner 202 is connected to the input end of the main chip 203, and the tuner 202 will be related to the command and audio and video.
  • the signal is transmitted to the main chip 203, and the main chip 203 performs a corresponding operation in accordance with the relevant instruction.
  • the TS code stream and the wake-up signal are separated from the TV radio frequency signal by the demodulation module 110, and only one transmission channel is occupied when the signal is transmitted, and only one radio frequency signal is received, and the TS code stream and the wake-up signal can be simultaneously obtained.
  • the signal transmission time is shortened, and the response speed of the remote wake-up TV is improved.
  • FIG. 4 is a schematic block diagram of a fourth embodiment of an apparatus for remotely waking up a television set in a low power consumption state according to the present invention.
  • the embodiment includes the modules in the embodiment shown in FIG. 2 and FIG. 3.
  • the demodulation module 110 further includes a second filter 113 and a second demodulator 114.
  • the demodulation module 110 receives the transmission sent by the server 300. After the television radio frequency signal, the television radio frequency signal is simultaneously distributed to the first filter 111 and the second filter 113.
  • the server 300 modulates the television radio frequency signal
  • the spectrum of the wake-up signal and the TS code stream are simultaneously modulated into the television radio frequency signal, so that the wake-up signal and the TS code stream do not overlap in the television radio frequency signal, and the wake-up signal and the TS code are
  • the spectrum of the stream is modulated into different frequency ranges, respectively. Therefore, the first filter 111 and the second filter 113 adopt different bandwidths, the bandwidth of the first filter 111 is consistent with the frequency range corresponding to the wake-up signal in the television radio frequency signal, and the bandwidth of the second filter 113 and the television radio frequency signal
  • the frequency range corresponding to the medium TS stream is the same.
  • the obtained segment only includes the television radio frequency signal consistent with the frequency range of the wake-up signal; after the television radio frequency signal is filtered by the second filter 113, the obtained segment only includes the frequency range of the wake-up signal. Consistent TV RF signal.
  • the wake-up signal and the TS code stream in the television radio frequency signal are separated by the first filter 111 and the second filter 113.
  • the output of the second filter 113 is connected to the input of the second demodulator 114, and the second filter 113 outputs the filtered television radio frequency signal to the second demodulator 114, and the second demodulator 114 filters the filtered TV radio frequency signal demodulation.
  • the second demodulator 114 demodulates the TS code stream without interference of other frequency bands.
  • the output of the second demodulator 114 is coupled to the input of the tuner 202 as a second output of the demodulation module 110.
  • the second demodulator 114 outputs the demodulated TS code stream to the tuner 202.
  • the control module 120 has controlled the main power source 201 to supply power to the tuner 202 and the main chip 203 according to the wake-up signal, the tuner 202 is The relevant instruction and the audio and video signals are extracted from the TS code stream and transmitted to the main chip 203.
  • the main chip 203 performs corresponding operations according to the relevant instructions; otherwise, the main power supply 201 is turned off, the high frequency head 202 does not work, and the received data is not received.
  • the TS code stream is processed.
  • the TS code stream and the wake-up signal in the TV radio frequency signal are separated by using a filter with different bandwidth, and the original TS code stream and the wake-up signal are obtained through the demodulator, so that the TS code stream and the wake-up signal are separated and extracted separately.
  • the method is simple, the extracted signal is accurate, and it is beneficial to improve the response speed and accuracy of the remote wake-up television.
  • FIG. 5 is a schematic block diagram of a fifth embodiment of an apparatus for remotely waking up a television set in a low power consumption state according to the present invention.
  • the embodiment includes the module in the embodiment shown in FIG. 1.
  • the device 100 for remotely waking up the television in a low power consumption state further includes a controllable switch 140 electrically connected to the main power source 201.
  • the main power source 201 can be controlled by the controllable switch 140 in addition to the on/off of the main power source 201 by the switch of the main power source 201 itself.
  • the controllable switch 140 is also in the off state.
  • the control input end of the controllable switch 140 can be connected to the control output of the control module 120 by wire or wirelessly.
  • the control module 120 outputs a control signal for closing the controllable switch 140 to the controllable switch 140, the controllable switch 140 is closed.
  • the main power source 201 is turned on to wake up the television.
  • the television automatically extracts the automatic power-off command from the next-received television radio frequency signal, and the main chip of the television is automatically
  • the power-off command sends a control signal to the controllable switch 140 to turn off the controllable switch 140 to the controllable switch 140, the controllable switch 140 is turned off, the main power source 201 is turned off, and the television is powered off.
  • the control module 120 is used to control the closing or opening of the controllable switch 140, thereby implementing the control of turning on or off the main power source 201.
  • the switch of the main power source 201 is separated from the controllable switch 140, and the independent working is mutually independent. It does not affect; on the one hand, it does not have higher requirements on the structure and performance of the main power supply 201's own switch.
  • the main switch of the main power supply 201 can still use the original circuit structure, and will not increase the original production cost of the TV set; In the aspect, when the main power source 201 is turned off, the control of the main power source 201 is realized by the controllable switch 140, and the control of turning on and off the main power source 201 is more diversified.
  • FIG. 6 is a schematic block diagram of a sixth embodiment of an apparatus for remotely waking up a television set in a low power consumption state according to the present invention.
  • the embodiment includes the module in the embodiment shown in FIG. 1.
  • the control module 120 in this embodiment adopts a wireless control technology, and may include multiple options such as Sub-GHz, ZigBee, Wifi, and Bluetooth.
  • the control module 120 includes a Sub-GHz chip, and the wake-up signal adopts a Sub-GHz signal.
  • the demodulation module 110 demodulates the TV radio frequency signal to obtain a Sub-GHz signal, and passes the Sub in the control module 120.
  • the -GHz chip directly recognizes the Sub-GHz signal.
  • the control module 120 controls the main power source 201 to be turned on to wake up the television. Since Sub-GHz technology is a kind in 1 Compared with the 2.4GHz band, the wireless connection technology in the GHz frequency range has less spectrum interference and lower power consumption in the Sub-GHz band. In the sleep mode of the TV, the Sub-GHz chip requires only a few tens of nanoamperes of current consumption. It can run for more than a few years with only a single battery, which is beneficial to reducing power consumption and cost, and meets the demand for ultra-low standby power consumption of TV sets.
  • the embodiment of the present invention further provides a method for remotely waking up a television set in a low power consumption state by using a device for remotely waking up a television in a low power consumption state in any of the embodiments shown in FIG. 1 to FIG. 6, as shown in FIG.
  • FIG. 7 is a flowchart of a first embodiment of a method for remotely waking up a television set in a low power consumption state according to the present invention.
  • the method for remotely waking up a television set in a low power consumption state according to the present embodiment includes the following steps:
  • Step S10 when the main power of the television is in an off state, the auxiliary power supply supplies power to the demodulation module and the control module;
  • a device for setting up a low-power state remote wake-up television in the television is connected to the main power of the television, including a demodulation module, a control module and an auxiliary power supply.
  • the auxiliary power source can be a low-power power source such as a normal battery, a rechargeable battery, a portable power source, and the demodulation module and the control module are separately powered by the auxiliary power source.
  • Step S20 the demodulation module receives the television radio frequency signal sent by the server
  • the signal input interface between the server and the television can be connected through a television RF signal line or the Internet.
  • the server pre-modulates the wake-up signal into the TV RF signal and transmits it to the TV through the TV RF signal line or the Internet.
  • Step S31 the demodulation module extracts the wake-up signal from the television radio frequency signal, and sends the wake-up signal to the control module;
  • the demodulation module After receiving the radio frequency signal, the demodulation module demodulates the television radio frequency signal, obtains a demodulated signal consistent with the frequency of the wake-up signal, and outputs the demodulated signal to the control module.
  • step S40 when the control module determines that the wake-up signal is valid, the control module controls the main power of the television to be turned on to wake up the television.
  • the control module parses the demodulated signal to determine whether the demodulated signal is a wake-up signal for waking up the television. When the control module determines that the wake-up signal is valid, the control module outputs a control signal to control the main power source to be turned on, and the television is awakened; otherwise, the control module does not output the control signal, and the main power source remains in the off state.
  • a demodulation module and a control module are set in the television, and the demodulation module and the control module are separately powered by the auxiliary power source.
  • the server can send a wakeup to the television.
  • the TV radio frequency signal of the signal, the demodulation module extracts the wake-up signal from the TV radio frequency signal, and then the control module controls the main power supply to turn on according to the wake-up signal, wakes up the television, and realizes the situation that the main power of the television is turned off at any time. Wake up the TV remotely.
  • the TV can keep the main power off when not in use, which satisfies the demand for ultra-low standby power consumption of the TV. It is conducive to saving energy.
  • FIG. 8 is a flowchart of a second embodiment of a method for remotely waking up a television set in a low-power state according to the present invention.
  • the embodiment includes the steps in the embodiment shown in FIG. 7, and further includes after step S20. :
  • Step S32 the demodulation module extracts the television code stream from the television radio frequency signal, and sends the television code stream to the tuner of the television set;
  • the television radio frequency signal may include a television code stream in addition to the wake-up signal.
  • the server employs multiplexing techniques such as frequency division multiplexing, time division multiplexing, etc., to pre-modulate the TS stream and the wake-up signal into the same television RF signal.
  • the TS stream includes operation instructions that the TV needs to perform, such as an upgrade package, parameters to be adjusted, and the like.
  • the server can simultaneously transmit the TS stream and the wake-up signal to the television through one channel.
  • the demodulation module separates and demodulates the television radio frequency signal to obtain two signals.
  • the frequency of the first signal is consistent with the signal frequency of the wake-up signal, and the frequency of the second signal and the signal of the TS stream The frequency is the same.
  • the demodulation module outputs the first signal to the control module, and outputs the second signal to the high frequency head. If the control module determines that the first signal is not a valid wake-up signal, then the main power supply remains in the off state, the high frequency head does not work, and the received TS code stream is not processed.
  • the TS code stream and the wake-up signal are separated from the TV radio frequency signal by the demodulation module, and only one transmission channel is occupied when the signal is transmitted, and only one radio frequency signal is received, and the TS code stream and the wake-up signal can be simultaneously obtained. The signal transmission time is shortened, and the response speed of the remote wake-up TV is improved.
  • FIG. 9 is a flowchart of a third embodiment of a method for remotely waking up a television set in a low-power state according to the present invention.
  • the present embodiment includes the steps in the embodiment shown in FIG. 8.
  • Step S40 includes:
  • Step S41 the control module determines whether the wake-up signal is valid; if yes, step S42 is performed; if not, step S45 is performed;
  • Step S42 the control module controls the main power of the television to be turned on, and the main power source supplies power to the main chip and the high frequency head of the television;
  • Step S43 the tuner demodulates the television code stream, and sends the demodulated television code stream to the main chip;
  • Step S44 the main chip performs a corresponding operation according to the demodulated television code stream
  • step S45 the main power of the television is kept in an off state.
  • the demodulation module After the demodulation module separates the received television radio frequency signals to obtain two signals, the first channel signal is output to the control module, and the control module determines that the first channel signal is a valid wake-up signal, and then controls the television.
  • the main power is turned on. After the main power is turned on, the main power supply powers the main chip and the high frequency head, and the main chip and the high frequency head start to work.
  • the demodulation module outputs the second signal to the tuner. After the main power supply is supplied to the tuner and the main chip, the tuner extracts related instructions and audio and video included in the TS stream from the second signal.
  • the signal, the tuner transmits relevant instructions and audio and video signals to the main chip, and the main chip performs corresponding operations according to the relevant instructions.
  • the TS code stream and the wake-up signal are separated from the TV radio frequency signal by the demodulation module, and only one transmission channel is occupied when the signal is transmitted, and only one radio frequency signal is received, and the TS code stream and the wake-up signal can be simultaneously obtained.
  • the signal transmission time is shortened, and the response speed of the remote wake-up TV is improved.
  • the server may first transmit a television radio frequency signal including a wake-up signal to the television. After the television is awakened, the server transmits a television radio frequency signal including the television code stream to the television.
  • the server can also separately transmit the wake-up signal and the television code to the television set by using different channels.

Abstract

Disclosed is a method for remotely waking up a television in a low power consumption state, comprising the steps: when a main power source of a television is in a switched-off state, an auxiliary power source supplies power to a demodulation module and a control module; the demodulation module receives a television radio-frequency signal sent by a server, the television radio-frequency signal comprising a wakeup signal; the demodulation module extracts the wakeup signal from the television radio-frequency signal, and sends the wakeup signal to the control module; and the control module controls, when it is judged that the wakeup signal is valid, the main power source of the television to conduct, so as to wake up the television. Further disclosed is an apparatus for remotely waking up a television in a low power consumption state. The present invention realizes that a television is remotely woken up at any time in the case where a main power source of the television is switched off, and satisfies the requirement of ultralow standby power consumption of the television at the same time, which is beneficial for saving energy.

Description

低功耗状态远程唤醒电视机的装置和方法  Apparatus and method for remotely waking up a television set in a low power state
技术领域Technical field
本发明涉及电视技术领域,特别涉及低功耗状态远程唤醒电视机的装置和方法。The present invention relates to the field of television technology, and in particular, to an apparatus and method for remotely waking up a television set in a low power consumption state.
背景技术Background technique
在电视机待机时,可分为真待机和假待机。在假待机时,只关闭视频和音频输出等电路,主芯片运行于节能模式,但是调谐器、主芯片内解复用模块、以及电源电路仍然处于工作状态,功耗几乎与正常工作状态相当。在真待机时,可以通过单片机切断系统电源供电,使CPU和调谐器都处于断电状态,但是,由于主芯片的解复用模块处于非工作状态,在接受到服务器发送的射频信号时,电视机无法解析TS流(Transport Stream,传输流)中的内容信息,服务器也就无法对电视机进行升级、唤醒、参数调整等远程控制。为了节约电视机能耗,用户在不看电视时,通常会关断电视机和机顶盒的电源开关,此时就更不可能远程唤醒电视机了。When the TV is in standby, it can be divided into true standby and false standby. In the case of false standby, only the circuit such as video and audio output is turned off, and the main chip operates in the energy-saving mode, but the tuner, the main chip internal demultiplexing module, and the power supply circuit are still in operation, and the power consumption is almost equivalent to the normal working state. In the real standby mode, the power supply of the system can be cut off by the single-chip microcomputer, so that the CPU and the tuner are in a power-off state. However, since the demultiplexing module of the main chip is in a non-working state, when receiving the radio frequency signal sent by the server, the television The machine cannot parse the TS stream (Transport) Stream, the content information in the transport stream, the server can not remotely control the TV, such as upgrade, wake-up, parameter adjustment. In order to save TV power consumption, users usually turn off the power switch of the TV set and set-top box when they are not watching TV. At this time, it is even more impossible to wake up the TV remotely.
发明内容Summary of the invention
本发明的主要目的为提供一种低功耗状态远程唤醒电视机的装置和方法,能够在电视机电源关断后,实现远程唤醒电视机。The main object of the present invention is to provide an apparatus and method for remotely waking up a television set in a low power consumption state, which can remotely wake up the television set after the television power is turned off.
本发明提出一种低功耗状态远程唤醒电视机的装置,包括解调模块、控制模块和辅电源,所述解调模块的输入端接收服务器发送的电视射频信号,所述电视射频信号包括唤醒信号;所述解调模块的第一输出端连接所述控制模块的输入端,所述解调模块从所述电视射频信号中提取出唤醒信号,并将所述唤醒信号发送给所述控制模块;所述控制模块的控制输出端连接电视机的主电源的控制输入端,所述控制模块在判定所述唤醒信号有效时,输出导通电源的控制信号至所述主电源,控制所述主电源导通;所述辅电源的电源输出端连接所述控制模块和解调模块的电源输入端,在所述主电源处于关断状态时,所述辅电源向所述解调模块和控制模块供电;The invention provides a device for remotely waking up a television set in a low power consumption state, comprising a demodulation module, a control module and a auxiliary power supply, wherein an input end of the demodulation module receives a television radio frequency signal sent by a server, and the television radio frequency signal comprises a wakeup a first output end of the demodulation module is connected to an input end of the control module, the demodulation module extracts a wake-up signal from the television radio frequency signal, and sends the wake-up signal to the control module a control output end of the control module is connected to a control input end of a main power source of the television, and the control module outputs a control signal for turning on the power to the main power source when the wake-up signal is determined to be valid, and controls the main The power supply is connected to the power supply input end of the auxiliary power supply, and the power supply input end of the control module and the demodulation module is connected to the demodulation module and the control module when the main power supply is in an off state. powered by;
所述电视射频信号还包括电视码流,所述低功耗状态远程唤醒电视机的装置还与所述电视机的高频头和主芯片连接,所述解调模块的第二输出端连接所述高频头的输入端,所述解调模块从所述电视射频信号中提取出电视码流,并将所述电视码流发送给所述高频头;所述高频头的输出端连接所述主芯片的输入端,所述主电源的电源输出端连接所述主芯片和所述高频头的电源输入端,在所述主电源导通时,所述主电源向电视机的主芯片和高频头供电,所述高频头和主芯片工作;The television radio frequency signal further includes a television code stream, and the device for remotely waking up the television set in the low power consumption state is further connected to the tuner and the main chip of the television set, and the second output end of the demodulation module is connected to the Determining an input end of the tuner, the demodulation module extracts a television code stream from the television radio frequency signal, and transmits the television code stream to the tuner; the output end of the tuner is connected An input end of the main chip, a power output end of the main power source is connected to the main chip and a power input end of the tuner, and when the main power is turned on, the main power is directed to the main body of the television The chip and the tuner are powered, and the tuner and the main chip work;
所述低功耗状态远程唤醒电视机的装置还包括与所述主电源电连接的可控开关,所述可控开关的控制输入端连接所述控制模块的控制输出端,接收所述控制模块输出的控制信号,闭合所述可控开关,所述主电源导通;在所述主电源关断时,所述可控开关断开。The device for remotely waking up the television set in the low power consumption state further comprises a controllable switch electrically connected to the main power source, wherein a control input end of the controllable switch is connected to a control output end of the control module, and the control module is received The output control signal closes the controllable switch, the main power source is turned on; when the main power source is turned off, the controllable switch is turned off.
优选地,所述解调模块包括第一滤波器和第一解调器,所述第一滤波器的输入端接收服务器发送的电视射频信号,过滤所述电视射频信号,获得第一滤波信号,所述第一滤波信号与所述唤醒信号的频率范围一致;所述第一解调器的输入端连接所述第一滤波器的输出端,接收并解调所述第一滤波信号,获得所述唤醒信号;所述第一解调器的输出端作为所述解调模块的第一输出端连接所述控制模块的输入端,输出所述唤醒信号至所述控制模块。Preferably, the demodulation module includes a first filter and a first demodulator, and an input end of the first filter receives a television radio frequency signal sent by a server, filters the television radio frequency signal, and obtains a first filtered signal, The first filtered signal is consistent with a frequency range of the wake-up signal; an input end of the first demodulator is connected to an output end of the first filter, and the first filtered signal is received and demodulated to obtain a The wake-up signal is output; the output end of the first demodulator is connected to the input end of the control module as a first output end of the demodulation module, and outputs the wake-up signal to the control module.
优选地,所述解调模块还包括第二滤波器和第二解调器,所述第二滤波器的输入端接收服务器发送的电视射频信号,过滤所述电视射频信号,获得第二滤波信号,所述第二滤波信号与所述电视码流的频率范围一致;所述第二解调器的输入端连接所述第二滤波器的输出端,接收并解调所述第二滤波信号,获得所述电视码流;所述第二解调器的输出端作为所述解调模块的第二输出端连接所述高频头的输入端,输出所述电视码流至所述高频头。Preferably, the demodulation module further includes a second filter and a second demodulator, wherein the input end of the second filter receives the television radio frequency signal sent by the server, filters the television radio frequency signal, and obtains the second filtered signal. And the second filtered signal is consistent with a frequency range of the television code stream; an input end of the second demodulator is connected to an output end of the second filter, and the second filtered signal is received and demodulated. Obtaining the television code stream; the output end of the second demodulator is connected to the input end of the tuner as a second output end of the demodulation module, and outputting the television code stream to the tuner .
优选地,所述控制模块为无线控制模块,所述控制模块的控制输出端与所述主电源的控制输入端无线连接。Preferably, the control module is a wireless control module, and a control output of the control module is wirelessly connected to a control input of the main power source.
优选地,所述控制模块为无线控制模块,所述控制模块的控制输出端与所述主电源的控制输入端无线连接。Preferably, the control module is a wireless control module, and a control output of the control module is wirelessly connected to a control input of the main power source.
优选地,所述控制模块包括Sub-GHz芯片。Preferably, the control module comprises a Sub-GHz chip.
本发明还提出一种低功耗状态远程唤醒电视机的装置,包括解调模块、控制模块和辅电源,所述解调模块的输入端接收服务器发送的电视射频信号,所述电视射频信号包括唤醒信号;所述解调模块的第一输出端连接所述控制模块的输入端,所述解调模块从所述电视射频信号中提取出唤醒信号,并将所述唤醒信号发送给所述控制模块;所述控制模块的控制输出端连接电视机的主电源的控制输入端,所述控制模块在判定所述唤醒信号有效时,输出导通电源的控制信号至所述主电源,控制所述主电源导通;所述辅电源的电源输出端连接所述控制模块和解调模块的电源输入端,在所述主电源处于关断状态时,所述辅电源向所述解调模块和控制模块供电。The invention also provides a device for remotely waking up a television set in a low power consumption state, comprising a demodulation module, a control module and a auxiliary power source, wherein an input end of the demodulation module receives a television radio frequency signal sent by a server, and the television radio frequency signal comprises a wake-up signal; a first output end of the demodulation module is connected to an input end of the control module, the demodulation module extracts a wake-up signal from the television radio frequency signal, and sends the wake-up signal to the control a control output end of the control module is connected to a control input end of a main power source of the television, and the control module outputs a control signal for turning on the power to the main power source when the wake-up signal is determined to be valid, and controls the module The main power source is connected; the power output end of the auxiliary power source is connected to the power input end of the control module and the demodulation module, and when the main power source is in an off state, the auxiliary power source is to the demodulation module and is controlled. The module is powered.
优选地,所述电视射频信号还包括电视码流,所述低功耗状态远程唤醒电视机的装置还与所述电视机的高频头和主芯片连接,所述解调模块的第二输出端连接所述高频头的输入端,所述解调模块从所述电视射频信号中提取出电视码流,并将所述电视码流发送给所述高频头;所述高频头的输出端连接所述主芯片的输入端,所述主电源的电源输出端连接所述主芯片和所述高频头的电源输入端,在所述主电源导通时,所述主电源向电视机的主芯片和高频头供电,所述高频头和主芯片工作。Preferably, the television radio frequency signal further comprises a television code stream, and the device for remotely waking up the television set in the low power consumption state is further connected to the tuner and the main chip of the television set, and the second output of the demodulation module Connecting the input end of the tuner, the demodulation module extracts a television code stream from the television radio frequency signal, and sends the television code stream to the tuner; the tuner The output end is connected to the input end of the main chip, and the power output end of the main power source is connected to the main chip and the power input end of the high frequency head, and when the main power source is turned on, the main power source is to the TV The main chip of the machine and the high frequency head are powered, and the high frequency head and the main chip work.
优选地,所述解调模块包括第一滤波器和第一解调器,所述第一滤波器的输入端接收服务器发送的电视射频信号,过滤所述电视射频信号,获得第一滤波信号,所述第一滤波信号与所述唤醒信号的频率范围一致;所述第一解调器的输入端连接所述第一滤波器的输出端,接收并解调所述第一滤波信号,获得所述唤醒信号;所述第一解调器的输出端作为所述解调模块的第一输出端连接所述控制模块的输入端,输出所述唤醒信号至所述控制模块。Preferably, the demodulation module includes a first filter and a first demodulator, and an input end of the first filter receives a television radio frequency signal sent by a server, filters the television radio frequency signal, and obtains a first filtered signal, The first filtered signal is consistent with a frequency range of the wake-up signal; an input end of the first demodulator is connected to an output end of the first filter, and the first filtered signal is received and demodulated to obtain a The wake-up signal is output; the output end of the first demodulator is connected to the input end of the control module as a first output end of the demodulation module, and outputs the wake-up signal to the control module.
优选地,所述解调模块还包括第二滤波器和第二解调器,所述第二滤波器的输入端接收服务器发送的电视射频信号,过滤所述电视射频信号,获得第二滤波信号,所述第二滤波信号与所述电视码流的频率范围一致;所述第二解调器的输入端连接所述第二滤波器的输出端,接收并解调所述第二滤波信号,获得所述电视码流;所述第二解调器的输出端作为所述解调模块的第二输出端连接所述高频头的输入端,输出所述电视码流至所述高频头。Preferably, the demodulation module further includes a second filter and a second demodulator, wherein the input end of the second filter receives the television radio frequency signal sent by the server, filters the television radio frequency signal, and obtains the second filtered signal. And the second filtered signal is consistent with a frequency range of the television code stream; an input end of the second demodulator is connected to an output end of the second filter, and the second filtered signal is received and demodulated. Obtaining the television code stream; the output end of the second demodulator is connected to the input end of the tuner as a second output end of the demodulation module, and outputting the television code stream to the tuner .
优选地,所述低功耗状态远程唤醒电视机的装置,还包括与所述主电源电连接的可控开关,所述可控开关的控制输入端连接所述控制模块的控制输出端,接收所述控制模块输出的控制信号,闭合所述可控开关,所述主电源导通;在所述主电源关断时,所述可控开关断开。Preferably, the device for remotely waking up the television set in the low power consumption state further comprises a controllable switch electrically connected to the main power source, wherein a control input end of the controllable switch is connected to a control output end of the control module, and receives The control signal output by the control module closes the controllable switch, and the main power source is turned on; when the main power source is turned off, the controllable switch is turned off.
优选地,所述控制模块为无线控制模块,所述控制模块的控制输出端与所述主电源的控制输入端无线连接。Preferably, the control module is a wireless control module, and a control output of the control module is wirelessly connected to a control input of the main power source.
优选地,所述控制模块包括Sub-GHz芯片。Preferably, the control module comprises a Sub-GHz chip.
本发明还提出一种利用低功耗状态远程唤醒电视机的装置实现低功耗状态远程唤醒电视机的方法,包括步骤:The invention also provides a method for remotely waking up a television set in a low power consumption state by using a device for remotely waking up a television set in a low power consumption state, comprising the steps of:
在电视机的主电源处于关断状态时,辅电源向解调模块和控制模块供电;When the main power of the television is in the off state, the auxiliary power supply supplies power to the demodulation module and the control module;
所述解调模块接收服务器发送的电视射频信号,所述电视射频信号包括唤醒信号;The demodulation module receives a television radio frequency signal sent by a server, where the television radio frequency signal includes a wake-up signal;
所述解调模块从所述电视射频信号中提取出唤醒信号,并将所述唤醒信号发送给所述控制模块;The demodulation module extracts a wake-up signal from the television radio frequency signal, and sends the wake-up signal to the control module;
所述控制模块在判定所述唤醒信号有效时,控制电视机的主电源导通,唤醒所述电视机。The control module controls the main power of the television to be turned on to wake up the television when it is determined that the wake-up signal is valid.
优选地,所述解调模块接收服务器发送的电视射频信号的步骤之后还包括:Preferably, after the step of receiving the television radio frequency signal sent by the server, the demodulation module further includes:
所述解调模块从所述电视射频信号中提取出电视码流,并将所述电视码流发送给电视机的高频头。The demodulation module extracts a television code stream from the television radio frequency signal, and transmits the television code stream to a tuner of the television set.
优选地,所述控制模块在判定所述唤醒信号有效时,控制电视机的主电源导通,唤醒所述电视机的步骤包括:Preferably, the control module controls the main power of the television to be turned on when determining that the wake-up signal is valid, and the step of waking up the television set includes:
所述控制模块在判定所述唤醒信号有效时,控制电视机的主电源导通,由所述主电源向电视机的主芯片和高频头供电;The control module controls the main power of the television to be turned on when determining that the wake-up signal is valid, and supplies power to the main chip and the high-frequency head of the television by the main power source;
所述高频头解调所述电视码流,并将解调后的所述电视码流发送给所述主芯片;The tuner demodulates the television code stream, and sends the demodulated television code stream to the main chip;
所述主芯片根据解调后的所述电视码流执行对应操作。The main chip performs a corresponding operation according to the demodulated television code stream.
本发明在电视机中设置解调模块和控制模块,并由辅电源对解调模块和控制模块单独供电,在电视机的主电源处于关断状态时,服务器可向电视机发送携带有唤醒信号的电视射频信号,解调模块将唤醒信号从电视射频信号中提取出来,再由控制模块根据唤醒信号控制主电源导通,唤醒电视机,实现了在关断电视机主电源的情况下随时远程唤醒电视机,同时由于无须担心电视机在关断主电源的情况下无法响应远程指令的情况,电视机在不使用时可保持主电源关闭,满足了电视机超低待机功耗的需求,有利于节约能源。The invention provides a demodulation module and a control module in the television, and the auxiliary power supply separately supplies power to the demodulation module and the control module. When the main power of the television is in the off state, the server can send the wake-up signal to the television. The TV radio frequency signal, the demodulation module extracts the wake-up signal from the TV radio frequency signal, and then the control module controls the main power supply to turn on according to the wake-up signal, wakes up the television, and realizes remote control at the time of turning off the main power of the television. Wake up the TV, and at the same time, because there is no need to worry that the TV can not respond to remote commands when the main power is turned off, the TV can keep the main power off when not in use, which satisfies the demand for ultra-low standby power consumption of the TV. Conducive to saving energy.
附图说明DRAWINGS
图1为本发明低功耗状态远程唤醒电视机的装置的第一实施例的模块示意图;1 is a block diagram showing a first embodiment of an apparatus for remotely waking up a television set in a low power consumption state according to the present invention;
图2为本发明低功耗状态远程唤醒电视机的装置的第二实施例的模块示意图;2 is a block diagram showing a second embodiment of an apparatus for remotely waking up a television set in a low power consumption state according to the present invention;
图3为本发明低功耗状态远程唤醒电视机的装置的第三实施例的模块示意图;3 is a block diagram showing a third embodiment of an apparatus for remotely waking up a television set in a low power consumption state according to the present invention;
图4为本发明低功耗状态远程唤醒电视机的装置的第四实施例的模块示意图;4 is a block diagram showing a fourth embodiment of an apparatus for remotely waking up a television set in a low power consumption state according to the present invention;
图5为本发明低功耗状态远程唤醒电视机的装置的第五实施例的模块示意图;5 is a schematic block diagram of a fifth embodiment of an apparatus for remotely waking up a television set in a low power consumption state according to the present invention;
图6为本发明低功耗状态远程唤醒电视机的装置的第六实施例的模块示意图;6 is a block diagram showing a sixth embodiment of an apparatus for remotely waking up a television set in a low power consumption state according to the present invention;
图7为本发明低功耗状态远程唤醒电视机的方法的第一实施例的流程图;7 is a flow chart of a first embodiment of a method for remotely waking up a television set in a low power consumption state according to the present invention;
图8为本发明低功耗状态远程唤醒电视机的方法的第二实施例的流程图;8 is a flow chart of a second embodiment of a method for remotely waking up a television set in a low power consumption state according to the present invention;
图9为本发明低功耗状态远程唤醒电视机的方法的第三实施例的流程图。9 is a flow chart of a third embodiment of a method for remotely waking up a television set in a low power consumption state according to the present invention.
本发明目的的实现、功能特点及优点将结合实施例,参照附图做进一步说明。The implementation, functional features, and advantages of the present invention will be further described in conjunction with the embodiments.
具体实施方式detailed description
应当理解,此处所描述的具体实施例仅仅用以解释本发明,并不用于限定本发明。It is understood that the specific embodiments described herein are merely illustrative of the invention and are not intended to limit the invention.
参照图1,图1为本发明低功耗状态远程唤醒电视机的装置的第一实施例的模块示意图。本实施例中的电视机在关闭主电源201时,电视机处于低功耗状态,电视机不工作。为了实现电视机远程唤醒,在电视机中设置低功耗状态远程唤醒电视机的装置100,与电视机的主电源201连接,包括解调模块110、控制模块120和辅电源130。辅电源130的电源输出端连接控制模块120和解调模块110的电源输入端,辅电源130可以是普通电池、可充电电池、便携式电源等低功耗电源,解调模块110和控制模块120由辅电源130单独供电。在电视机的主电源201导通时,辅电源130关断,解调模块110和控制模块120不工作;在电视机的主电源201关断时,辅电源130开始工作,为解调模块110和控制模块120供电。Referring to FIG. 1, FIG. 1 is a schematic block diagram of a first embodiment of an apparatus for remotely waking up a television set in a low power consumption state according to the present invention. When the television set in this embodiment turns off the main power source 201, the television is in a low power consumption state, and the television does not operate. In order to realize remote wake-up of the television, the device 100 for setting up a low-power state remote wake-up television in the television is connected to the main power supply 201 of the television, and includes a demodulation module 110, a control module 120, and a secondary power supply 130. The power output end of the auxiliary power source 130 is connected to the power input end of the control module 120 and the demodulation module 110. The auxiliary power source 130 can be a low-power power source such as a normal battery, a rechargeable battery, a portable power source, and the demodulation module 110 and the control module 120 are The auxiliary power source 130 is separately powered. When the main power source 201 of the television is turned on, the auxiliary power source 130 is turned off, the demodulation module 110 and the control module 120 are not working; when the main power source 201 of the television is turned off, the auxiliary power source 130 starts to operate, and the demodulation module 110 is activated. And the control module 120 is powered.
解调模块110的输入端接收服务器300发送的电视射频信号,解调模块110可通过电视机的信号输入接口连接电视射频信号线或互联网,再由电视射频信号线或互联网连接到服务器300。服务器300预先将唤醒信号调制到电视射频信号中,解调模块110接收到电视射频信号后,对电视射频信号解调,获得与唤醒信号频率一致的解调后的信号。解调模块110的第一输出端连接控制模块120的输入端,解调模块110将解调后的信号输出给控制模块120,由控制模块120解析解调后的信号,判断该解调后的信号是否为用于唤醒电视机的唤醒信号。控制模块120的控制输出端可通过有线方式或无线方式连接主电源201的控制输入端,在控制模块120判定唤醒信号有效时,控制模块120输出控制信号,控制主电源201导通,电视机被唤醒;否则,控制模块120不输出控制信号,主电源201保持关断状态。The input end of the demodulation module 110 receives the television radio frequency signal sent by the server 300, and the demodulation module 110 can be connected to the television radio frequency signal line or the Internet through the signal input interface of the television, and then connected to the server 300 by the television radio frequency signal line or the Internet. The server 300 pre-modulates the wake-up signal into the television radio frequency signal, and after receiving the television radio frequency signal, the demodulation module 110 demodulates the television radio frequency signal to obtain a demodulated signal that is consistent with the wake-up signal frequency. The first output end of the demodulation module 110 is connected to the input end of the control module 120, and the demodulation module 110 outputs the demodulated signal to the control module 120, and the control module 120 analyzes the demodulated signal to determine the demodulated signal. Whether the signal is a wake-up signal for waking up the television. The control output end of the control module 120 can be connected to the control input end of the main power source 201 by wire or wirelessly. When the control module 120 determines that the wake-up signal is valid, the control module 120 outputs a control signal to control the main power source 201 to be turned on, and the television set is turned on. Wake up; otherwise, the control module 120 does not output a control signal, and the main power source 201 remains in an off state.
唤醒电视机可以是直接将电视机启动开机,电视机中的所有模块都进入工作状态;唤醒电视机也可以是只启动电视机中的部分模块,例如,继续保持视频和音频输出等电路处于关闭状态,启动电视机的主芯片和高频头,使电视机进入假待机状态。电视机唤醒后,能够对电视射频信号中的电视码流(TS码流)进行处理,获取TS码流中的指令,完成相应操作。服务器300可以先将包括唤醒信号的电视射频信号传输到电视机,在电视机被唤醒后,服务器300再向电视机发送一个包括有电视码流的电视射频信号。服务器300还可以分别采用不同的信道将唤醒信号和电视码分别传输给电视机。服务器300还可以采用多路复用技术预先将TS码流与唤醒信号调制到同一个电视射频信号中,将唤醒信号和电视码流同时传输到电视机,由电视机从电视射频信号中分理出唤醒信号和电视码流。Wake up the TV can start the TV directly, all the modules in the TV will enter the working state; wake up the TV can also only start some of the modules in the TV, for example, continue to keep the video and audio output circuits off In the state, the main chip and the tuner of the TV are activated, and the TV enters a false standby state. After the TV wakes up, it can process the TV code stream (TS code stream) in the TV radio frequency signal, obtain the instruction in the TS code stream, and complete the corresponding operation. The server 300 may first transmit a television radio frequency signal including a wake-up signal to the television set. After the television set is woken up, the server 300 transmits a television radio frequency signal including the television code stream to the television set. The server 300 can also separately transmit the wake-up signal and the television code to the television set by using different channels. The server 300 can also pre-modulate the TS code stream and the wake-up signal into the same TV radio frequency signal by using multiplexing technology, and simultaneously transmit the wake-up signal and the TV code stream to the television set, and the television set is separated from the TV radio frequency signal. A wake-up signal and a TV stream are output.
在TS码流中包括的多个指令中还可包括自动断电的指令,电视机按照指令的优先级顺序或时间先后顺序依次处理各个指令,到处理到TS码流中的自动断电指令时,主电源201关断,电视机断电,停止工作。此时辅电源130开始工作,为解调模块110和控制模块120供电,等待下一个电视射频信号到达。此外,自动断电指令也可以包括在服务器300下一次发送的电视射频信号中,在唤醒状态下,电视机从下一次到达的电视射频信号中提取出自动断电指令后,由电视机主芯片根据自动断电指令控制主电源201关断,电视机断电。The plurality of instructions included in the TS stream may further include an automatic power-off instruction, and the television sequentially processes the instructions in accordance with the priority order or the chronological order of the instructions, until the automatic power-off instruction in the TS code stream is processed. The main power supply 201 is turned off, the TV is powered off, and the operation is stopped. At this time, the auxiliary power source 130 starts to work, and supplies power to the demodulation module 110 and the control module 120, waiting for the next television radio frequency signal to arrive. In addition, the automatic power-off command may also be included in the television radio frequency signal transmitted by the server 300 next time. In the awake state, after the television automatically extracts the automatic power-off command from the next arriving television radio frequency signal, the main chip of the television is The main power source 201 is turned off according to the automatic power-off command, and the television is powered off.
本实施例在电视机中设置解调模块110和控制模块120,并由辅电源130对解调模块110和控制模块120单独供电,在电视机的主电源201处于关断状态时,服务器300可向电视机发送携带有唤醒信号的电视射频信号,解调模块110将唤醒信号从电视射频信号中提取出来,再由控制模块120根据唤醒信号控制主电源201导通,唤醒电视机,实现了在关断电视机主电源的情况下随时远程唤醒电视机,同时,由于无须担心电视机在关断主电源的情况下无法响应远程指令的情况,电视机在不使用时可保持主电源关闭,满足了电视机超低待机功耗的需求,有利于节约能源。In this embodiment, the demodulation module 110 and the control module 120 are disposed in the television, and the demodulation module 110 and the control module 120 are separately powered by the auxiliary power source 130. When the main power source 201 of the television is in the off state, the server 300 can The television radio frequency signal carrying the wake-up signal is sent to the television, and the demodulation module 110 extracts the wake-up signal from the television radio frequency signal, and then the control module 120 controls the main power source 201 to be turned on according to the wake-up signal, and wakes up the television, thereby realizing When the main power of the TV is turned off, the TV can be remotely woken up at any time. At the same time, since the TV does not need to respond to the remote command when the main power is turned off, the TV can keep the main power off when not in use. The demand for ultra-low standby power consumption of TV sets is conducive to energy conservation.
参照图2,图2为本发明低功耗状态远程唤醒电视机的装置的第二实施例的模块示意图。本实施例包括图1所示实施例中的模块,进一步的,解调模块110包括第一滤波器111和第一解调器112,第一滤波器111的输入端接收服务器300发送的电视射频信号,滤除电视射频信号中的干扰噪声。同时,由于服务器300在调制电视射频信号时,将唤醒信号的频谱调制到电视射频信号的特定频率范围内,因此,第一滤波器111的带宽与电视射频信号中唤醒信号频谱对应的频率范围一致,电视射频信号经过第一滤波器111滤波后,获得的一段只包括与唤醒信号频率范围一致的电视射频信号。第一滤波器111的输出端连接第一解调器112的输入端,第一滤波器111将过滤后的电视射频信号输出给第一解调器112,第一解调器112对过滤后的电视射频信号解调。由于第一滤波器111滤波后的这一段电视射频信号中只包括唤醒信号的频段,如果电视射频信号中包括有唤醒信号,那么解调后就可以获得无其他频段干扰的唤醒信号。第一解调器112的输出端作为解调模块110的第一输出端连接控制模块120的输入端。第一解调器112将解调后的信号输出给控制模块120,控制模块120还需判断解调后的信号是否就是用于唤醒电视机的唤醒信号,如果是,则根据唤醒信号控制主电源201导通,唤醒电视机;否则,保持主电源201关断。Referring to FIG. 2, FIG. 2 is a schematic block diagram of a second embodiment of an apparatus for remotely waking up a television set in a low power consumption state according to the present invention. The embodiment includes the module in the embodiment shown in FIG. 1. Further, the demodulation module 110 includes a first filter 111 and a first demodulator 112. The input end of the first filter 111 receives the television radio frequency transmitted by the server 300. The signal filters out interference noise in the TV RF signal. At the same time, since the spectrum of the wake-up signal is modulated into the specific frequency range of the television radio frequency signal when the server 300 modulates the television radio frequency signal, the bandwidth of the first filter 111 is consistent with the frequency range corresponding to the wake-up signal spectrum of the television radio frequency signal. After the television radio frequency signal is filtered by the first filter 111, the obtained segment only includes the television radio frequency signal that is consistent with the frequency range of the wake-up signal. The output end of the first filter 111 is connected to the input end of the first demodulator 112, and the first filter 111 outputs the filtered television radio frequency signal to the first demodulator 112, and the first demodulator 112 pairs the filtered TV radio frequency signal demodulation. Since the TV signal filtered by the first filter 111 includes only the frequency band of the wake-up signal, if the television RF signal includes the wake-up signal, the wake-up signal without interference of other frequency bands can be obtained after the demodulation. The output of the first demodulator 112 is connected to the input of the control module 120 as the first output of the demodulation module 110. The first demodulator 112 outputs the demodulated signal to the control module 120. The control module 120 further determines whether the demodulated signal is a wake-up signal for waking up the television, and if so, controls the main power according to the wake-up signal. 201 is turned on to wake up the television; otherwise, the main power supply 201 is turned off.
本实施例采用滤波器和解调器从电视射频信号中提取出无其他频段干扰的唤醒信号,使唤醒信号的提取方式简单,提取的信号准确,有利于提高远程唤醒电视机的响应速度和准确度。In this embodiment, the filter and the demodulator are used to extract the wake-up signal without interference of other frequency bands from the television radio frequency signal, so that the wake-up signal is extracted in a simple manner, and the extracted signal is accurate, which is beneficial to improving the response speed and accuracy of the remote wake-up television. degree.
参照图3,图3为本发明低功耗状态远程唤醒电视机的装置的第三实施例的模块示意图。本实施例包括图1所示实施例中的模块,进一步的,低功耗状态远程唤醒电视机的装置100还与电视机的高频头202和主芯片203连接。服务器300采用了多路复用技术,例如频分复用、时分复用等,预先将TS码流与唤醒信号调制到同一个电视射频信号中。在TS码流中包含有电视机需要执行的操作指令,例如升级包、需调整的参数等。服务器300通过一个信道即可同时将TS码流与唤醒信号传输到电视机。解调模块110接收到电视射频信号后,对电视射频信号分离和解调,获得两路信号,第一路信号的频率与唤醒信号的信号频率一致,第二路信号的频率与TS码流的信号频率一致。解调模块110将第一路信号输出给控制模块120,由控制模块120判定第一路信号为有效的唤醒信号后,控制电视机主电源201导通。主电源201的电源输出端连接主芯片203和高频头202的电源输入端,在主电源201导通后,主电源201向主芯片203和高频头202供电,主芯片203和高频头202开始工作。同时,解调模块110的第二输出端连接高频头202的输入端,解调模块110将第二路信号输出给高频头202,在主电源201向高频头202和主芯片203供电后,高频头202从第二路信号中提取出TS码流包括的相关指令以及音视频信号,高频头202的输出端连接主芯片203的输入端,高频头202将相关指令和音视频信号传输到主芯片203,主芯片203根据相关指令执行相应操作。Referring to FIG. 3, FIG. 3 is a schematic block diagram of a third embodiment of an apparatus for remotely waking up a television set in a low power consumption state according to the present invention. The embodiment includes the module in the embodiment shown in FIG. 1. Further, the device 100 for remotely waking up the television in a low power consumption state is also connected to the tuner 202 and the main chip 203 of the television. The server 300 employs multiplexing techniques such as frequency division multiplexing, time division multiplexing, etc., to pre-modulate the TS code stream and the wake-up signal into the same television radio frequency signal. The TS stream includes operation instructions that the TV needs to perform, such as an upgrade package, parameters to be adjusted, and the like. The server 300 can simultaneously transmit the TS stream and the wake-up signal to the television through one channel. After receiving the radio frequency signal, the demodulation module 110 separates and demodulates the television radio frequency signal to obtain two signals. The frequency of the first signal is consistent with the signal frequency of the wake-up signal, and the frequency of the second signal and the TS stream are The signal frequency is the same. The demodulation module 110 outputs the first path signal to the control module 120, and after the control module 120 determines that the first path signal is a valid wake-up signal, the television main power source 201 is controlled to be turned on. The power output end of the main power source 201 is connected to the power input terminals of the main chip 203 and the high frequency head 202. After the main power source 201 is turned on, the main power source 201 supplies power to the main chip 203 and the high frequency head 202, and the main chip 203 and the high frequency head. 202 started working. At the same time, the second output end of the demodulation module 110 is connected to the input end of the high frequency head 202, and the demodulation module 110 outputs the second path signal to the high frequency head 202 to supply power to the high frequency head 202 and the main chip 203 at the main power source 201. After that, the tuner 202 extracts related instructions and audio and video signals included in the TS stream from the second signal, and the output of the tuner 202 is connected to the input end of the main chip 203, and the tuner 202 will be related to the command and audio and video. The signal is transmitted to the main chip 203, and the main chip 203 performs a corresponding operation in accordance with the relevant instruction.
本实施例通过解调模块110从电视射频信号中分离出TS码流与唤醒信号,在传输信号时只占用一个传输信道,且只接收一次射频信号,就可以同时获得TS码流与唤醒信号,缩短了信号传输时间,提高了远程唤醒电视机的响应速度。In this embodiment, the TS code stream and the wake-up signal are separated from the TV radio frequency signal by the demodulation module 110, and only one transmission channel is occupied when the signal is transmitted, and only one radio frequency signal is received, and the TS code stream and the wake-up signal can be simultaneously obtained. The signal transmission time is shortened, and the response speed of the remote wake-up TV is improved.
参照图4,图4为本发明低功耗状态远程唤醒电视机的装置的第四实施例的模块示意图。本实施例包括图2和图3所示实施例中的模块,进一步的,解调模块110还包括第二滤波器113和第二解调器114,解调模块110在接收到服务器300发送的电视射频信号后,将电视射频信号同时分发到第一滤波器111和第二滤波器113。由于服务器300在调制电视射频信号时,将唤醒信号和TS码流的频谱同时调制到电视射频信号中,为了使唤醒信号和TS码流的频谱在电视射频信号中不重叠,唤醒信号和TS码流的频谱分别被调制到不同的频率范围内。因此,第一滤波器111和第二滤波器113采用了不同的带宽,第一滤波器111的带宽与电视射频信号中唤醒信号对应的频率范围一致,第二滤波器113的带宽与电视射频信号中TS码流对应的频率范围一致。电视射频信号经过第一滤波器111滤波后,获得的一段只包括与唤醒信号频率范围一致的电视射频信号;电视射频信号经过第二滤波器113滤波后,获得的一段只包括与唤醒信号频率范围一致的电视射频信号。如此一来,通过第一滤波器111和第二滤波器113,便将电视射频信号中的唤醒信号和TS码流分离开来。第二滤波器113的输出端连接第二解调器114的输入端,第二滤波器113将过滤后的电视射频信号输出给第二解调器114,第二解调器114对过滤后的电视射频信号解调。由于第二滤波器113滤波后的这一段电视射频信号中只包括TS码流的频段,第二解调器114解调后就可以获得无其他频段干扰的TS码流。第二解调器114的输出端作为解调模块110的第二输出端连接高频头202的输入端。第二解调器114将解调后的TS码流输出给高频头202,如果控制模块120已经根据唤醒信号控制主电源201向高频头202和主芯片203供电,则高频头202从TS码流中提取出相关指令以及音视频信号,并传输到主芯片203,主芯片203根据相关指令执行相应操作;否则,保持主电源201关断,高频头202不工作,不对接收到的TS码流进行处理。Referring to FIG. 4, FIG. 4 is a schematic block diagram of a fourth embodiment of an apparatus for remotely waking up a television set in a low power consumption state according to the present invention. The embodiment includes the modules in the embodiment shown in FIG. 2 and FIG. 3. Further, the demodulation module 110 further includes a second filter 113 and a second demodulator 114. The demodulation module 110 receives the transmission sent by the server 300. After the television radio frequency signal, the television radio frequency signal is simultaneously distributed to the first filter 111 and the second filter 113. Since the server 300 modulates the television radio frequency signal, the spectrum of the wake-up signal and the TS code stream are simultaneously modulated into the television radio frequency signal, so that the wake-up signal and the TS code stream do not overlap in the television radio frequency signal, and the wake-up signal and the TS code are The spectrum of the stream is modulated into different frequency ranges, respectively. Therefore, the first filter 111 and the second filter 113 adopt different bandwidths, the bandwidth of the first filter 111 is consistent with the frequency range corresponding to the wake-up signal in the television radio frequency signal, and the bandwidth of the second filter 113 and the television radio frequency signal The frequency range corresponding to the medium TS stream is the same. After the television radio frequency signal is filtered by the first filter 111, the obtained segment only includes the television radio frequency signal consistent with the frequency range of the wake-up signal; after the television radio frequency signal is filtered by the second filter 113, the obtained segment only includes the frequency range of the wake-up signal. Consistent TV RF signal. In this way, the wake-up signal and the TS code stream in the television radio frequency signal are separated by the first filter 111 and the second filter 113. The output of the second filter 113 is connected to the input of the second demodulator 114, and the second filter 113 outputs the filtered television radio frequency signal to the second demodulator 114, and the second demodulator 114 filters the filtered TV radio frequency signal demodulation. Since the second radio frequency signal filtered by the second filter 113 includes only the frequency band of the TS code stream, the second demodulator 114 demodulates the TS code stream without interference of other frequency bands. The output of the second demodulator 114 is coupled to the input of the tuner 202 as a second output of the demodulation module 110. The second demodulator 114 outputs the demodulated TS code stream to the tuner 202. If the control module 120 has controlled the main power source 201 to supply power to the tuner 202 and the main chip 203 according to the wake-up signal, the tuner 202 is The relevant instruction and the audio and video signals are extracted from the TS code stream and transmitted to the main chip 203. The main chip 203 performs corresponding operations according to the relevant instructions; otherwise, the main power supply 201 is turned off, the high frequency head 202 does not work, and the received data is not received. The TS code stream is processed.
本实施例采用带宽不相同的滤波器将电视射频信号中的TS码流和唤醒信号分离,并经过解调器获得原始的TS码流和唤醒信号,使TS码流和唤醒信号分离的分离提取方式简单,提取的信号准确,有利于提高远程唤醒电视机的响应速度和准确度。In this embodiment, the TS code stream and the wake-up signal in the TV radio frequency signal are separated by using a filter with different bandwidth, and the original TS code stream and the wake-up signal are obtained through the demodulator, so that the TS code stream and the wake-up signal are separated and extracted separately. The method is simple, the extracted signal is accurate, and it is beneficial to improve the response speed and accuracy of the remote wake-up television.
参照图5,图5为本发明低功耗状态远程唤醒电视机的装置的第五实施例的模块示意图。本实施例包括图1所示实施例中的模块,进一步的,低功耗状态远程唤醒电视机的装置100,还包括与主电源201电连接的可控开关140。主电源201除了由主电源201自身的开关来控制主电源201的导通与关断以外,还可由可控开关140进行控制。当主电源201处于关断状态时,可控开关140也处于断开状态。可控开关140的控制输入端可通过有线方式或无线方式连接控制模块120的控制输出端,当控制模块120输出闭合可控开关140的控制信号至可控开关140时,可控开关140闭合,主电源201导通,唤醒电视机。此外,如果服务器300下一次发送的电视射频信号中包括自动断电指令,在唤醒状态下,电视机从下一次到达的电视射频信号中提取出自动断电指令后,由电视机主芯片根据自动断电指令向可控开关140发送断开可控开关140的控制信号至可控开关140,可控开关140断开,主电源201关断,电视机断电。Referring to FIG. 5, FIG. 5 is a schematic block diagram of a fifth embodiment of an apparatus for remotely waking up a television set in a low power consumption state according to the present invention. The embodiment includes the module in the embodiment shown in FIG. 1. Further, the device 100 for remotely waking up the television in a low power consumption state further includes a controllable switch 140 electrically connected to the main power source 201. The main power source 201 can be controlled by the controllable switch 140 in addition to the on/off of the main power source 201 by the switch of the main power source 201 itself. When the main power source 201 is in the off state, the controllable switch 140 is also in the off state. The control input end of the controllable switch 140 can be connected to the control output of the control module 120 by wire or wirelessly. When the control module 120 outputs a control signal for closing the controllable switch 140 to the controllable switch 140, the controllable switch 140 is closed. The main power source 201 is turned on to wake up the television. In addition, if the TV radio signal sent by the server 300 next time includes an automatic power-off command, in the awake state, the television automatically extracts the automatic power-off command from the next-received television radio frequency signal, and the main chip of the television is automatically The power-off command sends a control signal to the controllable switch 140 to turn off the controllable switch 140 to the controllable switch 140, the controllable switch 140 is turned off, the main power source 201 is turned off, and the television is powered off.
本实施例采用控制模块120控制可控开关140的闭合或断开,进而实现对主电源201的导通或关断进行控制,主电源201自身的开关与可控开关140区别开,独立工作互不影响;一方面不会对主电源201自身开关的结构和性能有更高要求,主电源201的自身开关仍然可以使用原有的电路结构,不会增加电视机原有的制作成本;另一方面在主电源201关断时通过可控开关140实现对主电源201的控制,使主电源201通断的控制更加多样化。In this embodiment, the control module 120 is used to control the closing or opening of the controllable switch 140, thereby implementing the control of turning on or off the main power source 201. The switch of the main power source 201 is separated from the controllable switch 140, and the independent working is mutually independent. It does not affect; on the one hand, it does not have higher requirements on the structure and performance of the main power supply 201's own switch. The main switch of the main power supply 201 can still use the original circuit structure, and will not increase the original production cost of the TV set; In the aspect, when the main power source 201 is turned off, the control of the main power source 201 is realized by the controllable switch 140, and the control of turning on and off the main power source 201 is more diversified.
参照图6,图6为本发明低功耗状态远程唤醒电视机的装置的第六实施例的模块示意图。本实施例包括图1所示实施例中的模块,本实施例中的控制模块120采用了无线控制技术,可包括Sub-GHz、ZigBee、Wifi、蓝牙等多种可选方式。以Sub-GHz技术为例,控制模块120包括Sub-GHz芯片,唤醒信号采用Sub-GHz信号,解调模块110将电视射频信号解调后,获得Sub-GHz信号,通过控制模块120中的Sub-GHz芯片直接对Sub-GHz信号进行识别,当识别的Sub-GHz信号为有效的识别信号时,控制模块120控制主电源201导通,唤醒电视机。由于Sub-GHz技术是一种在1 GHz频率范围之内的无线连接技术,与2.4GHz频段相比,Sub-GHz频段频谱干扰更少,功耗很低,在电视机休眠模式下Sub-GHz芯片仅需几十纳安电流消耗,仅采用单电池就可运行几年以上,有利于降低功耗,节约成本,满足了电视机超低待机功耗的需求。Referring to FIG. 6, FIG. 6 is a schematic block diagram of a sixth embodiment of an apparatus for remotely waking up a television set in a low power consumption state according to the present invention. The embodiment includes the module in the embodiment shown in FIG. 1. The control module 120 in this embodiment adopts a wireless control technology, and may include multiple options such as Sub-GHz, ZigBee, Wifi, and Bluetooth. Taking the Sub-GHz technology as an example, the control module 120 includes a Sub-GHz chip, and the wake-up signal adopts a Sub-GHz signal. The demodulation module 110 demodulates the TV radio frequency signal to obtain a Sub-GHz signal, and passes the Sub in the control module 120. The -GHz chip directly recognizes the Sub-GHz signal. When the identified Sub-GHz signal is a valid identification signal, the control module 120 controls the main power source 201 to be turned on to wake up the television. Since Sub-GHz technology is a kind in 1 Compared with the 2.4GHz band, the wireless connection technology in the GHz frequency range has less spectrum interference and lower power consumption in the Sub-GHz band. In the sleep mode of the TV, the Sub-GHz chip requires only a few tens of nanoamperes of current consumption. It can run for more than a few years with only a single battery, which is beneficial to reducing power consumption and cost, and meets the demand for ultra-low standby power consumption of TV sets.
本发明实施例还提出一种利用图1至图6所示任一个实施例中的低功耗状态远程唤醒电视机的装置实现低功耗状态远程唤醒电视机的方法,如图7所示,图7为本发明低功耗状态远程唤醒电视机的方法的第一实施例的流程图,本实施例提出的低功耗状态远程唤醒电视机的方法包括以下步骤:The embodiment of the present invention further provides a method for remotely waking up a television set in a low power consumption state by using a device for remotely waking up a television in a low power consumption state in any of the embodiments shown in FIG. 1 to FIG. 6, as shown in FIG. FIG. 7 is a flowchart of a first embodiment of a method for remotely waking up a television set in a low power consumption state according to the present invention. The method for remotely waking up a television set in a low power consumption state according to the present embodiment includes the following steps:
步骤S10,在电视机的主电源处于关断状态时,辅电源向解调模块和控制模块供电;Step S10, when the main power of the television is in an off state, the auxiliary power supply supplies power to the demodulation module and the control module;
本实施例中的电视机在关闭主电源时,电视机处于低功耗状态,电视机不工作。为了实现电视机远程唤醒,在电视机中设置低功耗状态远程唤醒电视机的装置,与电视机的主电源连接,包括解调模块、控制模块和辅电源。辅电源可以是普通电池、可充电电池、便携式电源等低功耗电源,解调模块和控制模块由辅电源单独供电。When the television in this embodiment turns off the main power, the television is in a low power consumption state, and the television does not work. In order to realize remote wake-up of the television, a device for setting up a low-power state remote wake-up television in the television is connected to the main power of the television, including a demodulation module, a control module and an auxiliary power supply. The auxiliary power source can be a low-power power source such as a normal battery, a rechargeable battery, a portable power source, and the demodulation module and the control module are separately powered by the auxiliary power source.
步骤S20,解调模块接收服务器发送的电视射频信号;Step S20, the demodulation module receives the television radio frequency signal sent by the server;
服务器与电视机的信号输入接口之间可通过电视射频信号线或互联网连接,服务器预先将唤醒信号调制到电视射频信号中,并通过电视射频信号线或互联网发送给电视机。The signal input interface between the server and the television can be connected through a television RF signal line or the Internet. The server pre-modulates the wake-up signal into the TV RF signal and transmits it to the TV through the TV RF signal line or the Internet.
步骤S31,解调模块从电视射频信号中提取出唤醒信号,并将唤醒信号发送给控制模块;Step S31, the demodulation module extracts the wake-up signal from the television radio frequency signal, and sends the wake-up signal to the control module;
解调模块接收到电视射频信号后,对电视射频信号解调,获得与唤醒信号频率一致的解调后的信号,并输出解调后的信号给控制模块。After receiving the radio frequency signal, the demodulation module demodulates the television radio frequency signal, obtains a demodulated signal consistent with the frequency of the wake-up signal, and outputs the demodulated signal to the control module.
步骤S40,控制模块在判定唤醒信号有效时,控制电视机的主电源导通,唤醒电视机。In step S40, when the control module determines that the wake-up signal is valid, the control module controls the main power of the television to be turned on to wake up the television.
控制模块解析解调后的信号,判断该解调后的信号是否为用于唤醒电视机的唤醒信号。在控制模块判定唤醒信号有效时,控制模块输出控制信号,控制主电源导通,电视机被唤醒;否则,控制模块不输出控制信号,主电源保持关断状态。The control module parses the demodulated signal to determine whether the demodulated signal is a wake-up signal for waking up the television. When the control module determines that the wake-up signal is valid, the control module outputs a control signal to control the main power source to be turned on, and the television is awakened; otherwise, the control module does not output the control signal, and the main power source remains in the off state.
本实施例在电视机中设置解调模块和控制模块,并由辅电源对解调模块和控制模块单独供电,在电视机的主电源处于关断状态时,服务器可向电视机发送携带有唤醒信号的电视射频信号,解调模块将唤醒信号从电视射频信号中提取出来,再由控制模块根据唤醒信号控制主电源导通,唤醒电视机,实现了在关断电视机主电源的情况下随时远程唤醒电视机,同时,由于无须担心电视机在关断主电源的情况下无法响应远程指令的情况,电视机在不使用时可保持主电源关闭,满足了电视机超低待机功耗的需求,有利于节约能源。In this embodiment, a demodulation module and a control module are set in the television, and the demodulation module and the control module are separately powered by the auxiliary power source. When the main power of the television is in an off state, the server can send a wakeup to the television. The TV radio frequency signal of the signal, the demodulation module extracts the wake-up signal from the TV radio frequency signal, and then the control module controls the main power supply to turn on according to the wake-up signal, wakes up the television, and realizes the situation that the main power of the television is turned off at any time. Wake up the TV remotely. At the same time, because there is no need to worry about the TV set being unable to respond to remote commands when the main power is turned off, the TV can keep the main power off when not in use, which satisfies the demand for ultra-low standby power consumption of the TV. It is conducive to saving energy.
如图8所示,图8为本发明低功耗状态远程唤醒电视机的方法的第二实施例的流程图,本实施例包括图7所示实施例中的步骤,在步骤S20之后还包括:As shown in FIG. 8, FIG. 8 is a flowchart of a second embodiment of a method for remotely waking up a television set in a low-power state according to the present invention. The embodiment includes the steps in the embodiment shown in FIG. 7, and further includes after step S20. :
步骤S32,解调模块从电视射频信号中提取出电视码流,并将电视码流发送给电视机的高频头;Step S32, the demodulation module extracts the television code stream from the television radio frequency signal, and sends the television code stream to the tuner of the television set;
本实施例中,电视射频信号除了包括唤醒信号外,还可包括电视码流。服务器采用了多路复用技术,例如频分复用、时分复用等,预先将TS码流与唤醒信号调制到同一个电视射频信号中。在TS码流中包含有电视机需要执行的操作指令,例如升级包、需调整的参数等。服务器通过一个信道即可同时将TS码流与唤醒信号传输到电视机。解调模块接收到电视射频信号后,对电视射频信号分离和解调,获得两路信号,第一路信号的频率与唤醒信号的信号频率一致,第二路信号的频率与TS码流的信号频率一致。解调模块将第一路信号输出给控制模块,将第二路信号输出给高频头。如果控制模块判定第一路信号不是有效的唤醒信号,那么主电源继续保持关断状态,高频头不工作,也就不会对接收到的TS码流进行相关处理。由于本实施例通过解调模块从电视射频信号中分离出TS码流与唤醒信号,在传输信号时只占用一个传输信道,且只接收一次射频信号,就可以同时获得TS码流与唤醒信号,缩短了信号传输时间,提高了远程唤醒电视机的响应速度。In this embodiment, the television radio frequency signal may include a television code stream in addition to the wake-up signal. The server employs multiplexing techniques such as frequency division multiplexing, time division multiplexing, etc., to pre-modulate the TS stream and the wake-up signal into the same television RF signal. The TS stream includes operation instructions that the TV needs to perform, such as an upgrade package, parameters to be adjusted, and the like. The server can simultaneously transmit the TS stream and the wake-up signal to the television through one channel. After receiving the radio frequency signal, the demodulation module separates and demodulates the television radio frequency signal to obtain two signals. The frequency of the first signal is consistent with the signal frequency of the wake-up signal, and the frequency of the second signal and the signal of the TS stream The frequency is the same. The demodulation module outputs the first signal to the control module, and outputs the second signal to the high frequency head. If the control module determines that the first signal is not a valid wake-up signal, then the main power supply remains in the off state, the high frequency head does not work, and the received TS code stream is not processed. In this embodiment, the TS code stream and the wake-up signal are separated from the TV radio frequency signal by the demodulation module, and only one transmission channel is occupied when the signal is transmitted, and only one radio frequency signal is received, and the TS code stream and the wake-up signal can be simultaneously obtained. The signal transmission time is shortened, and the response speed of the remote wake-up TV is improved.
如图9所示,图9为本发明低功耗状态远程唤醒电视机的方法的第三实施例的流程图,本实施例包括图8所示实施例中的步骤,步骤S40包括:As shown in FIG. 9, FIG. 9 is a flowchart of a third embodiment of a method for remotely waking up a television set in a low-power state according to the present invention. The present embodiment includes the steps in the embodiment shown in FIG. 8. Step S40 includes:
步骤S41,控制模块判断唤醒信号是否有效;如果是,则执行步骤S42;如果否,则执行步骤S45;Step S41, the control module determines whether the wake-up signal is valid; if yes, step S42 is performed; if not, step S45 is performed;
步骤S42,控制模块控制电视机的主电源导通,由主电源向电视机的主芯片和高频头供电;Step S42, the control module controls the main power of the television to be turned on, and the main power source supplies power to the main chip and the high frequency head of the television;
步骤S43,高频头解调电视码流,并将解调后的电视码流发送给主芯片;Step S43, the tuner demodulates the television code stream, and sends the demodulated television code stream to the main chip;
步骤S44,主芯片根据解调后的电视码流执行对应操作;Step S44, the main chip performs a corresponding operation according to the demodulated television code stream;
步骤S45,电视机的主电源保持关断状态。In step S45, the main power of the television is kept in an off state.
本实施例中,解调模块将接收到的电视射频信号分离获得两路信号后,将第一路信号输出给控制模块,由控制模块判定第一路信号为有效的唤醒信号后,控制电视机主电源导通。在主电源导通后,主电源向主芯片和高频头供电,主芯片和高频头开始工作。同时,解调模块将第二路信号输出给高频头,在主电源向高频头和主芯片供电后,高频头从第二路信号中提取出TS码流包括的相关指令以及音视频信号,高频头将相关指令和音视频信号传输到主芯片,主芯片根据相关指令执行相应操作。由于本实施例通过解调模块从电视射频信号中分离出TS码流与唤醒信号,在传输信号时只占用一个传输信道,且只接收一次射频信号,就可以同时获得TS码流与唤醒信号,缩短了信号传输时间,提高了远程唤醒电视机的响应速度。此外,服务器还可以先将包括唤醒信号的电视射频信号传输到电视机,在电视机被唤醒后,服务器再向电视机发送一个包括有电视码流的电视射频信号。服务器还可以分别采用不同的信道将唤醒信号和电视码分别传输给电视机。In this embodiment, after the demodulation module separates the received television radio frequency signals to obtain two signals, the first channel signal is output to the control module, and the control module determines that the first channel signal is a valid wake-up signal, and then controls the television. The main power is turned on. After the main power is turned on, the main power supply powers the main chip and the high frequency head, and the main chip and the high frequency head start to work. At the same time, the demodulation module outputs the second signal to the tuner. After the main power supply is supplied to the tuner and the main chip, the tuner extracts related instructions and audio and video included in the TS stream from the second signal. The signal, the tuner transmits relevant instructions and audio and video signals to the main chip, and the main chip performs corresponding operations according to the relevant instructions. In this embodiment, the TS code stream and the wake-up signal are separated from the TV radio frequency signal by the demodulation module, and only one transmission channel is occupied when the signal is transmitted, and only one radio frequency signal is received, and the TS code stream and the wake-up signal can be simultaneously obtained. The signal transmission time is shortened, and the response speed of the remote wake-up TV is improved. In addition, the server may first transmit a television radio frequency signal including a wake-up signal to the television. After the television is awakened, the server transmits a television radio frequency signal including the television code stream to the television. The server can also separately transmit the wake-up signal and the television code to the television set by using different channels.
以上所述仅为本发明的优选实施例,并非因此限制本发明的专利范围,凡是利用本发明说明书及附图内容所作的等效结构或等效流程变换,或直接或间接运用在其他相关的技术领域,均同理包括在本发明的专利保护范围内。The above is only the preferred embodiment of the present invention, and is not intended to limit the scope of the invention, and the equivalent structure or equivalent process transformations made by the description of the invention and the drawings are directly or indirectly applied to other related The technical field is equally included in the scope of patent protection of the present invention.

Claims (19)

  1. 一种低功耗状态远程唤醒电视机的装置,其特征在于,包括解调模块、控制模块和辅电源,所述解调模块的输入端接收服务器发送的电视射频信号,所述电视射频信号包括唤醒信号;所述解调模块的第一输出端连接所述控制模块的输入端,所述解调模块从所述电视射频信号中提取出唤醒信号,并将所述唤醒信号发送给所述控制模块;所述控制模块的控制输出端连接电视机的主电源的控制输入端,所述控制模块在判定所述唤醒信号有效时,输出导通电源的控制信号至所述主电源,控制所述主电源导通;所述辅电源的电源输出端连接所述控制模块和解调模块的电源输入端,在所述主电源处于关断状态时,所述辅电源向所述解调模块和控制模块供电; An apparatus for remotely waking up a television set in a low-power state, comprising: a demodulation module, a control module, and a secondary power supply, wherein an input end of the demodulation module receives a television radio frequency signal sent by a server, and the television radio frequency signal includes a wake-up signal; a first output end of the demodulation module is connected to an input end of the control module, the demodulation module extracts a wake-up signal from the television radio frequency signal, and sends the wake-up signal to the control a control output end of the control module is connected to a control input end of a main power source of the television, and the control module outputs a control signal for turning on the power to the main power source when the wake-up signal is determined to be valid, and controls the module The main power source is connected; the power output end of the auxiliary power source is connected to the power input end of the control module and the demodulation module, and when the main power source is in an off state, the auxiliary power source is to the demodulation module and is controlled. Module power supply;
    所述电视射频信号还包括电视码流,所述低功耗状态远程唤醒电视机的装置还与所述电视机的高频头和主芯片连接,所述解调模块的第二输出端连接所述高频头的输入端,所述解调模块从所述电视射频信号中提取出电视码流,并将所述电视码流发送给所述高频头;所述高频头的输出端连接所述主芯片的输入端,所述主电源的电源输出端连接所述主芯片和所述高频头的电源输入端,在所述主电源导通时,所述主电源向电视机的主芯片和高频头供电,所述高频头和主芯片工作;The television radio frequency signal further includes a television code stream, and the device for remotely waking up the television set in the low power consumption state is further connected to the tuner and the main chip of the television set, and the second output end of the demodulation module is connected to the Determining an input end of the tuner, the demodulation module extracts a television code stream from the television radio frequency signal, and transmits the television code stream to the tuner; the output end of the tuner is connected An input end of the main chip, a power output end of the main power source is connected to the main chip and a power input end of the tuner, and when the main power is turned on, the main power is directed to the main body of the television The chip and the tuner are powered, and the tuner and the main chip work;
    所述低功耗状态远程唤醒电视机的装置还包括与所述主电源电连接的可控开关,所述可控开关的控制输入端连接所述控制模块的控制输出端,接收所述控制模块输出的控制信号,闭合所述可控开关,所述主电源导通;在所述主电源关断时,所述可控开关断开。The device for remotely waking up the television set in the low power consumption state further comprises a controllable switch electrically connected to the main power source, wherein a control input end of the controllable switch is connected to a control output end of the control module, and the control module is received The output control signal closes the controllable switch, the main power source is turned on; when the main power source is turned off, the controllable switch is turned off.
  2. 如权利要求1所述的低功耗状态远程唤醒电视机的装置,其特征在于,所述解调模块包括第一滤波器和第一解调器,所述第一滤波器的输入端接收服务器发送的电视射频信号,过滤所述电视射频信号,获得第一滤波信号,所述第一滤波信号与所述唤醒信号的频率范围一致;所述第一解调器的输入端连接所述第一滤波器的输出端,接收并解调所述第一滤波信号,获得所述唤醒信号;所述第一解调器的输出端作为所述解调模块的第一输出端连接所述控制模块的输入端,输出所述唤醒信号至所述控制模块。 The apparatus for remotely waking up a television set in a low power consumption state according to claim 1, wherein said demodulation module comprises a first filter and a first demodulator, and an input end of said first filter receives a server Sending a television radio frequency signal, filtering the television radio frequency signal to obtain a first filtered signal, wherein the first filtered signal is consistent with a frequency range of the wake-up signal; an input end of the first demodulator is connected to the first An output end of the filter receives and demodulates the first filtered signal to obtain the wake-up signal; an output end of the first demodulator is connected to the control module as a first output end of the demodulation module At the input end, the wake-up signal is output to the control module.
  3. 如权利要求2所述的低功耗状态远程唤醒电视机的装置,其特征在于,所述解调模块还包括第二滤波器和第二解调器,所述第二滤波器的输入端接收服务器发送的电视射频信号,过滤所述电视射频信号,获得第二滤波信号,所述第二滤波信号与所述电视码流的频率范围一致;所述第二解调器的输入端连接所述第二滤波器的输出端,接收并解调所述第二滤波信号,获得所述电视码流;所述第二解调器的输出端作为所述解调模块的第二输出端连接所述高频头的输入端,输出所述电视码流至所述高频头。The apparatus for remotely waking up a television set in a low power consumption state according to claim 2, wherein said demodulation module further comprises a second filter and a second demodulator, wherein the input of said second filter is received a television radio frequency signal sent by the server, filtering the television radio frequency signal to obtain a second filtered signal, wherein the second filtered signal is consistent with a frequency range of the television code stream; an input end of the second demodulator is connected to the An output of the second filter, receiving and demodulating the second filtered signal to obtain the television code stream; and an output end of the second demodulator as a second output end of the demodulation module An input end of the tuner outputs the television code stream to the tuner.
  4. 如权利要求1所述的低功耗状态远程唤醒电视机的装置,其特征在于,所述控制模块为无线控制模块,所述控制模块的控制输出端与所述主电源的控制输入端无线连接。The apparatus for remotely waking up a television set in a low power consumption state according to claim 1, wherein the control module is a wireless control module, and a control output end of the control module is wirelessly connected to a control input end of the main power source. .
  5. 如权利要求2所述的低功耗状态远程唤醒电视机的装置,其特征在于,所述控制模块为无线控制模块,所述控制模块的控制输出端与所述主电源的控制输入端无线连接。The apparatus for remotely waking up a television set in a low power consumption state according to claim 2, wherein the control module is a wireless control module, and a control output end of the control module is wirelessly connected to a control input end of the main power source. .
  6. 如权利要求5所述的低功耗状态远程唤醒电视机的装置,其特征在于,所述控制模块包括Sub-GHz芯片。The apparatus of claim 5, wherein the control module comprises a Sub-GHz chip.
  7. 一种低功耗状态远程唤醒电视机的装置,其特征在于,包括解调模块、控制模块和辅电源,所述解调模块的输入端接收服务器发送的电视射频信号,所述电视射频信号包括唤醒信号;所述解调模块的第一输出端连接所述控制模块的输入端,所述解调模块从所述电视射频信号中提取出唤醒信号,并将所述唤醒信号发送给所述控制模块;所述控制模块的控制输出端连接电视机的主电源的控制输入端,所述控制模块在判定所述唤醒信号有效时,输出导通电源的控制信号至所述主电源,控制所述主电源导通;所述辅电源的电源输出端连接所述控制模块和解调模块的电源输入端,在所述主电源处于关断状态时,所述辅电源向所述解调模块和控制模块供电。An apparatus for remotely waking up a television set in a low-power state, comprising: a demodulation module, a control module, and a secondary power supply, wherein an input end of the demodulation module receives a television radio frequency signal sent by a server, and the television radio frequency signal includes a wake-up signal; a first output end of the demodulation module is connected to an input end of the control module, the demodulation module extracts a wake-up signal from the television radio frequency signal, and sends the wake-up signal to the control a control output end of the control module is connected to a control input end of a main power source of the television, and the control module outputs a control signal for turning on the power to the main power source when the wake-up signal is determined to be valid, and controls the module The main power source is connected; the power output end of the auxiliary power source is connected to the power input end of the control module and the demodulation module, and when the main power source is in an off state, the auxiliary power source is to the demodulation module and is controlled. The module is powered.
  8. 如权利要求7所述的低功耗状态远程唤醒电视机的装置,其特征在于,所述电视射频信号还包括电视码流,所述低功耗状态远程唤醒电视机的装置还与所述电视机的高频头和主芯片连接,所述解调模块的第二输出端连接所述高频头的输入端,所述解调模块从所述电视射频信号中提取出电视码流,并将所述电视码流发送给所述高频头;所述高频头的输出端连接所述主芯片的输入端,所述主电源的电源输出端连接所述主芯片和所述高频头的电源输入端,在所述主电源导通时,所述主电源向电视机的主芯片和高频头供电,所述高频头和主芯片工作。The device for remotely waking up a television set in a low-power state according to claim 7, wherein the television radio frequency signal further comprises a television code stream, and the device for remotely waking up the television set in the low power consumption state is further related to the television The tuner of the machine is connected to the main chip, the second output of the demodulation module is connected to the input end of the tuner, and the demodulation module extracts the TV stream from the television radio frequency signal, and The TV code stream is sent to the tuner; an output end of the tuner is connected to an input end of the main chip, and a power output end of the main power source is connected to the main chip and the tuner The power input terminal supplies power to the main chip and the high frequency head of the television set when the main power source is turned on, and the high frequency head and the main chip work.
  9. 如权利要求8所述的低功耗状态远程唤醒电视机的装置,其特征在于,所述解调模块包括第一滤波器和第一解调器,所述第一滤波器的输入端接收服务器发送的电视射频信号,过滤所述电视射频信号,获得第一滤波信号,所述第一滤波信号与所述唤醒信号的频率范围一致;所述第一解调器的输入端连接所述第一滤波器的输出端,接收并解调所述第一滤波信号,获得所述唤醒信号;所述第一解调器的输出端作为所述解调模块的第一输出端连接所述控制模块的输入端,输出所述唤醒信号至所述控制模块。The apparatus for remotely waking up a television set in a low power consumption state according to claim 8, wherein said demodulation module comprises a first filter and a first demodulator, and an input end of said first filter receives a server Sending a television radio frequency signal, filtering the television radio frequency signal to obtain a first filtered signal, wherein the first filtered signal is consistent with a frequency range of the wake-up signal; an input end of the first demodulator is connected to the first An output end of the filter receives and demodulates the first filtered signal to obtain the wake-up signal; an output end of the first demodulator is connected to the control module as a first output end of the demodulation module At the input end, the wake-up signal is output to the control module.
  10. 如权利要求9所述的低功耗状态远程唤醒电视机的装置,其特征在于,所述解调模块还包括第二滤波器和第二解调器,所述第二滤波器的输入端接收服务器发送的电视射频信号,过滤所述电视射频信号,获得第二滤波信号,所述第二滤波信号与所述电视码流的频率范围一致;所述第二解调器的输入端连接所述第二滤波器的输出端,接收并解调所述第二滤波信号,获得所述电视码流;所述第二解调器的输出端作为所述解调模块的第二输出端连接所述高频头的输入端,输出所述电视码流至所述高频头。The apparatus for remotely waking up a television set in a low power consumption state according to claim 9, wherein said demodulation module further comprises a second filter and a second demodulator, wherein the input of said second filter is received a television radio frequency signal sent by the server, filtering the television radio frequency signal to obtain a second filtered signal, wherein the second filtered signal is consistent with a frequency range of the television code stream; an input end of the second demodulator is connected to the An output of the second filter, receiving and demodulating the second filtered signal to obtain the television code stream; and an output end of the second demodulator as a second output end of the demodulation module An input end of the tuner outputs the television code stream to the tuner.
  11. 如权利要求7所述的低功耗状态远程唤醒电视机的装置,其特征在于,还包括与所述主电源电连接的可控开关,所述可控开关的控制输入端连接所述控制模块的控制输出端,接收所述控制模块输出的控制信号,闭合所述可控开关,所述主电源导通;在所述主电源关断时,所述可控开关断开。The apparatus for remotely waking up a television set in a low power consumption state according to claim 7, further comprising a controllable switch electrically connected to said main power source, said control input terminal of said controllable switch being connected to said control module Receiving a control signal output by the control module, closing the controllable switch, the main power source is turned on; and when the main power source is turned off, the controllable switch is turned off.
  12. 如权利要求8所述的低功耗状态远程唤醒电视机的装置,其特征在于,还包括与所述主电源电连接的可控开关,所述可控开关的控制输入端连接所述控制模块的控制输出端,接收所述控制模块输出的控制信号,闭合所述可控开关,所述主电源导通;在所述主电源关断时,所述可控开关断开。The device for remotely waking up a television set in a low power consumption state according to claim 8, further comprising a controllable switch electrically connected to said main power source, said control input of said controllable switch being connected to said control module Receiving a control signal output by the control module, closing the controllable switch, the main power source is turned on; and when the main power source is turned off, the controllable switch is turned off.
  13. 如权利要求9所述的低功耗状态远程唤醒电视机的装置,其特征在于,还包括与所述主电源电连接的可控开关,所述可控开关的控制输入端连接所述控制模块的控制输出端,接收所述控制模块输出的控制信号,闭合所述可控开关,所述主电源导通;在所述主电源关断时,所述可控开关断开。The apparatus for remotely waking up a television set in a low power consumption state according to claim 9, further comprising a controllable switch electrically connected to said main power source, said control input terminal of said controllable switch being connected to said control module Receiving a control signal output by the control module, closing the controllable switch, the main power source is turned on; and when the main power source is turned off, the controllable switch is turned off.
  14. 如权利要求10所述的低功耗状态远程唤醒电视机的装置,其特征在于,还包括与所述主电源电连接的可控开关,所述可控开关的控制输入端连接所述控制模块的控制输出端,接收所述控制模块输出的控制信号,闭合所述可控开关,所述主电源导通;在所述主电源关断时,所述可控开关断开。The apparatus for remotely waking up a television set in a low power consumption state according to claim 10, further comprising a controllable switch electrically connected to said main power source, said control input terminal of said controllable switch being connected to said control module Receiving a control signal output by the control module, closing the controllable switch, the main power source is turned on; and when the main power source is turned off, the controllable switch is turned off.
  15. 如权利要求7所述的低功耗状态远程唤醒电视机的装置,其特征在于,所述控制模块为无线控制模块,所述控制模块的控制输出端与所述主电源的控制输入端无线连接。The apparatus for remotely waking up a television set in a low power consumption state according to claim 7, wherein the control module is a wireless control module, and a control output end of the control module is wirelessly connected to a control input end of the main power source. .
  16. 如权利要求15所述的低功耗状态远程唤醒电视机的装置,其特征在于,所述控制模块包括Sub-GHz芯片。The apparatus for remotely waking up a television set in a low power state according to claim 15, wherein said control module comprises a Sub-GHz chip.
  17. 一种利用权利要求7所述的低功耗状态远程唤醒电视机的装置实现低功耗状态远程唤醒电视机的方法,其特征在于,包括步骤:A method for remotely waking up a television set in a low power consumption state by using a low power consumption state remote wake-up television set according to claim 7, comprising the steps of:
    在电视机的主电源处于关断状态时,辅电源向解调模块和控制模块供电;When the main power of the television is in the off state, the auxiliary power supply supplies power to the demodulation module and the control module;
    所述解调模块接收服务器发送的电视射频信号,所述电视射频信号包括唤醒信号;The demodulation module receives a television radio frequency signal sent by a server, where the television radio frequency signal includes a wake-up signal;
    所述解调模块从所述电视射频信号中提取出唤醒信号,并将所述唤醒信号发送给所述控制模块;The demodulation module extracts a wake-up signal from the television radio frequency signal, and sends the wake-up signal to the control module;
    所述控制模块在判定所述唤醒信号有效时,控制电视机的主电源导通,唤醒所述电视机。The control module controls the main power of the television to be turned on to wake up the television when it is determined that the wake-up signal is valid.
  18. 如权利要求17所述的低功耗状态远程唤醒电视机的方法,其特征在于,所述解调模块接收服务器发送的电视射频信号的步骤之后还包括:The method of remotely waking up a television set in a low-power state according to claim 17, wherein the step of the demodulation module receiving the television radio frequency signal sent by the server further comprises:
    所述解调模块从所述电视射频信号中提取出电视码流,并将所述电视码流发送给电视机的高频头。The demodulation module extracts a television code stream from the television radio frequency signal, and transmits the television code stream to a tuner of the television set.
  19. 如权利要求18所述的低功耗状态远程唤醒电视机的方法,其特征在于,所述控制模块在判定所述唤醒信号有效时,控制电视机的主电源导通,唤醒所述电视机的步骤包括:The method for remotely waking up a television set in a low-power state according to claim 18, wherein the control module controls the main power of the television to be turned on when the wake-up signal is determined to be active, and wakes up the television set. The steps include:
    所述控制模块在判定所述唤醒信号有效时,控制电视机的主电源导通,由所述主电源向电视机的主芯片和高频头供电;The control module controls the main power of the television to be turned on when determining that the wake-up signal is valid, and supplies power to the main chip and the high-frequency head of the television by the main power source;
    所述高频头解调所述电视码流,并将解调后的所述电视码流发送给所述主芯片;The tuner demodulates the television code stream, and sends the demodulated television code stream to the main chip;
    所述主芯片根据解调后的所述电视码流执行对应操作。The main chip performs a corresponding operation according to the demodulated television code stream.
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