WO2018205080A1 - 一种语音呼叫过程中携带随路信令的方法、装置及设备 - Google Patents

一种语音呼叫过程中携带随路信令的方法、装置及设备 Download PDF

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Publication number
WO2018205080A1
WO2018205080A1 PCT/CN2017/083417 CN2017083417W WO2018205080A1 WO 2018205080 A1 WO2018205080 A1 WO 2018205080A1 CN 2017083417 W CN2017083417 W CN 2017083417W WO 2018205080 A1 WO2018205080 A1 WO 2018205080A1
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Prior art keywords
voice
inactive
signaling
transmitted
associated signaling
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PCT/CN2017/083417
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English (en)
French (fr)
Inventor
黄妮
张颖哲
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海能达通信股份有限公司
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Priority to PCT/CN2017/083417 priority Critical patent/WO2018205080A1/zh
Publication of WO2018205080A1 publication Critical patent/WO2018205080A1/zh

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L5/00Arrangements affording multiple use of the transmission path
    • H04L5/14Two-way operation using the same type of signal, i.e. duplex
    • H04L5/16Half-duplex systems; Simplex/duplex switching; Transmission of break signals non-automatically inverting the direction of transmission
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M11/00Telephonic communication systems specially adapted for combination with other electrical systems
    • H04M11/06Simultaneous speech and data transmission, e.g. telegraphic transmission over the same conductors
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02DCLIMATE CHANGE MITIGATION TECHNOLOGIES IN INFORMATION AND COMMUNICATION TECHNOLOGIES [ICT], I.E. INFORMATION AND COMMUNICATION TECHNOLOGIES AIMING AT THE REDUCTION OF THEIR OWN ENERGY USE
    • Y02D30/00Reducing energy consumption in communication networks
    • Y02D30/50Reducing energy consumption in communication networks in wire-line communication networks, e.g. low power modes or reduced link rate

Definitions

  • the present invention relates to the field of communications, and in particular, to a method, device and device for carrying a channel-dependent signaling during a voice call.
  • voice is still mainly half-duplex, single-slot can not pass in a continuous call service
  • the single channel implements the reverse channel.
  • the receiver cannot feed back the relevant information to the transmitting party through a single time slot.
  • the receiving party wants to send some active control information, such as a straight-through priority service or a cluster stealing and demolition, only It can be realized by using another time slot as a reverse channel, which cannot be realized by a single time slot, on the one hand, occupying more time slots, and on the other hand, each time slot occupied by the transmitting side and the receiving side communication is additionally increased.
  • the receiving detection time of 10ms or more is not conducive to power saving.
  • the transmitter cannot send data information at the same time when transmitting voice.
  • the embodiment of the present invention provides a method, a device, and a device for carrying the associated channel signaling in a voice call process, which solves the problem that the reverse channel cannot be implemented through a single time slot and the voice cannot be transmitted in the prior art.
  • a method for carrying the associated signaling in a voice call process includes:
  • the to-be-transmitted voice that has discarded part of the inactive voice is re-encoded according to a preset rule
  • the associated signaling When the time of the discarded inactive voice is greater than or equal to the time occupied by the associated signaling, the associated signaling is embedded in the time slot occupied by the to-be-transmitted voice, and is carried with the associated signaling. Voice.
  • the embedding signaling is embedded in a time slot occupied by the to-be-transmitted voice, and the packet include:
  • the next frame of the first speech frame is replaced with a data frame to be transmitted or a data frame for receiving reverse signaling according to the control frame.
  • the discarding part of the inactive voice includes:
  • the extracted inactive speech is discarded.
  • it also includes:
  • the inactive voice After receiving the voice carrying the associated signaling, the inactive voice is restored according to the preset discarding ratio.
  • the recovering the inactive voice according to the preset discard ratio includes:
  • it also includes:
  • the corresponding operation After receiving the voice carrying the associated signaling, the corresponding operation is performed according to the information included in the associated signaling.
  • the embodiment of the invention further provides a device for carrying the associated signaling during a voice call, the device comprising:
  • Discarding the inactive speech unit determining the active speech and the inactive speech of the speech to be transmitted, and discarding some of the inactive speech;
  • a re-encoding unit configured to re-encode the to-be-transmitted voice that has discarded part of the inactive voice according to a preset rule
  • the embedded associated signaling unit includes:
  • a location determining subunit configured to determine a suitable location of the embedded control frame in a time slot occupied by the to-be-transmitted voice, and the suitable location satisfies a preset condition; wherein the determined suitable embedded location is The position of the first speech frame;
  • control frame embedding subunit for embedding a control frame into a location of the first speech frame
  • the data frame embedding sub-unit is configured to replace the next frame of the first speech frame with the data frame to be transmitted or the data frame for receiving the reverse signaling according to the control frame.
  • the discarding the inactive voice unit includes:
  • a length calculation subunit for calculating the length of the inactive speech
  • the inactive voice extraction subunit is configured to extract the inactive voice according to a preset discarding ratio
  • the inactive voice discarding subunit is configured to discard the extracted inactive voice.
  • it also includes:
  • the inactive voice recovery unit is configured to: after receiving the voice carrying the associated channel signaling, recover the inactive voice according to the preset discarding ratio.
  • the inactive voice recovery unit includes:
  • a first inactive voice recovery subunit configured to add comfort noise to the inactive voice according to the preset discard ratio
  • a second inactive voice recovery sub-unit extracting content of the received inactive voice in the voice carrying the associated signaling, and adding the content of the inactive voice to the non-active voice according to the preset discarding ratio In the active voice.
  • the device further includes:
  • the executing unit is configured to perform corresponding operations according to the information included in the associated signaling after receiving the voice carrying the associated signaling.
  • a device for carrying a channel signaling during a voice call includes:
  • the memory is connected to the processor for storing a program and a program running process Data generated in ;
  • the processor is configured to implement the following functions by running a program stored in the memory:
  • the processor when the processor embeds the associated path signaling into a time slot occupied by the to-be-transmitted voice, the processor is specifically configured to:
  • the processor discards part of the inactive voice, specifically for:
  • Calculating the length of the inactive voice extracting the inactive voice according to a preset discarding ratio; discarding the extracted inactive voice.
  • the processor is further configured to:
  • the inactive voice After receiving the voice carrying the associated signaling, the inactive voice is restored according to the preset discarding ratio.
  • the processor recovers the inactive voice according to the preset discard ratio, specifically for:
  • the processor is further configured to:
  • the corresponding operation After receiving the voice carrying the associated signaling, the corresponding operation is performed according to the information included in the associated signaling.
  • the voice to be transmitted is divided into active voice and inactive voice, part of the inactive voice is discarded, and the to-be-transmitted voice that has discarded part of the inactive voice is re-encoded according to a preset rule, when the discarded inactive is performed.
  • the time slot occupied by the voice is greater than or equal to the time slot occupied by the path signaling
  • the associated channel signaling is embedded in the time slot occupied by the to-be-transmitted voice. In this way, the transmitter can speak In the process of the audio call, the bearer signaling is carried, and the associated signaling can carry not only relevant data information, but also the associated signaling can carry the information of receiving the reverse signaling.
  • the transmitting side can receive the reverse signaling through the time slot used in the transmission while transmitting the voice signal, that is, the reverse channel is realized by the single time slot, and the spectrum resource is saved. .
  • FIG. 1 is a schematic flowchart of Embodiment 1 of a method for carrying a path-to-path signaling in a voice call process provided by the present invention
  • Figure 2-a is a time domain diagram of the speech to be transmitted
  • Figure 2-b is a time domain diagram of the extracted speech to be transmitted
  • FIG. 3 is a schematic flowchart diagram of Embodiment 2 of a method for carrying a path-to-path signaling in a voice call process provided by the present invention
  • FIG. 4 is a schematic structural diagram of a control frame
  • Figure 5 shows a slot diagram of the speech to be transmitted
  • FIG. 6 shows a slot diagram of a voice to be transmitted embedded with path-corresponding signaling
  • Figure 7 is a timing chart showing the speech to be generated in which the associated signaling is embedded
  • FIG. 8 is a schematic flowchart diagram of Embodiment 3 of a method for carrying a path-to-path signaling in a voice call process provided by the present invention
  • FIG. 9 is a schematic structural diagram of Embodiment 1 of a device carrying path-dependent signaling during a voice call according to the present invention.
  • FIG. 10 is a schematic structural diagram of Embodiment 1 of an apparatus for carrying a path-to-path signaling in a voice call process provided by the present invention.
  • Embodiment 1 a schematic flowchart of Embodiment 1 of a method for carrying a path-to-path signaling in a voice call process according to the present invention is shown.
  • the method may include: S101-S103:
  • S101 Determine active voice and inactive voice of the voice to be transmitted, and discard part of the inactive voice
  • the active voice can understand the effective voice information; the inactive voice can be understood as a blank voice, a gap of speech, or a silent state.
  • the voice information is normal between 20ms and 90ms, but during this period, there will be a gap of speaking, 90ms-100ms.
  • the received mute signal therefore, the effective speech information between 20ms-90ms is active speech, and the gap between 0-20ms, 20ms-90ms and 20ms-90ms is inactive. The part of the voice.
  • the slot occupied by a voice signal is a certain one. Since the inactive voice is a part of the voice signal that is not valid, part of the inactive voice can be discarded, thereby saving a part of the time slot.
  • the S101 can include:
  • the extracted inactive speech is discarded.
  • the discard ratio indicates the ratio of the time taken by the discarded inactive voice to the total time occupied by all the inactive voices.
  • the discarding ratio may be preset, and the preset discard ratio may ensure the voice quality of the to-be-transmitted voice.
  • the technician can obtain the discarding ratio through experiments.
  • the discarding ratio can also be adaptively generated. Specifically, the discarding can be generated according to a preset rule on the basis of ensuring the call quality. proportion.
  • the voice to be transmitted is a voice of 1 s, that is, the time slot occupied by the voice to be transmitted is 1 s, as shown in FIG. 2-a, which is a spectrum diagram of the voice to be transmitted, where 1, 2
  • the third part is the inactive speech in the speech signal extracted according to the discard ratio of 1/2.
  • the length of the extracted speech to be transmitted is 0.88s. , saving 0.12s time slot.
  • S102 The to-be-transmitted voice that has discarded part of the inactive voice is re-encoded according to a preset rule.
  • the to-be-transmitted voice is currently a discontinuous voice signal, and the receiver may not be able to recognize such a signal. Therefore, the voice to be transmitted that has discarded some of the inactive voice may be pre-transmitted.
  • the rule is re-encoded, for example, the subsequent active speech can be filled into the part of the previous inactive speech, thereby ensuring the continuity and integrity of each speech frame.
  • the time slot occupied by the to-be-transmitted voice is fixed, and after a part of the inactive voice is discarded, a part of the time slot can be saved, so that the time slot occupied by the voice to be transmitted can be embedded in the time slot occupied by the voice to be transmitted.
  • the information carried in the path signaling may include some specific information such as GPS information, or inform the receiver that the active control information may be sent, or may also inform the receiver that the related information may be fed back to the transmitting party.
  • the active control information may include a direct-through priority service, a cluster stealing and tearing, and a transmission power adjustment.
  • the transmitting party (the walkie-talkie A) embeds the associated signaling into the to-be-transmitted voice, and sends the to-be-transmitted voice to the corresponding
  • the receiving party assumes that the time slot occupied by the transmitting direction of the transmitting side is the first time slot, and after receiving the associated channel signaling by the receiving side (the walkie-talkie B), the receiving party can send the first time slot to the transmitting side.
  • the related direct priority service so that the direct priority service can be sent to the transmitting party without occupying other time slots, thereby saving spectrum resources.
  • the transmission is a mobile terminal
  • the receiving party is a base station.
  • the mobile terminal After the mobile terminal sends relevant information to the base station, it wants to know whether the base station has received the relevant correlation.
  • the information, and the quality of the received related information the mobile terminal may embed the associated signaling including the signaling that informs the receiver that the relevant information can be feedback, into the voice to be transmitted, and carry the associated channel
  • the to-be-transmitted voice is sent to the base station, and after receiving the associated signaling, the base station can feed back related information to the mobile terminal.
  • the corresponding operation may be performed according to the information included in the associated signaling.
  • the transmission is a mobile terminal
  • the receiving party is a base station
  • the mobile terminal transmits the carried path to the base station.
  • the signaling voice occupies the first time slot.
  • the base station receives the voice carried by the mobile terminal and carries the associated channel signaling, the base station sends corresponding feedback information to the mobile terminal through the first time slot base station.
  • the voice to be transmitted is divided into active voice and inactive voice, part of the inactive voice is discarded, and the to-be-transmitted voice that has discarded part of the inactive voice is re-encoded according to a preset rule, when the discarded inactive is performed.
  • the time slot occupied by the voice is greater than or equal to the time slot occupied by the path signaling
  • the associated channel signaling is embedded in the time slot occupied by the to-be-transmitted voice.
  • the transmitting party can carry the sending channel signaling in the process of the voice call, and the associated channel signaling can not only carry related data information, but the channel associated signaling can also carry the information of receiving the reverse signaling.
  • the transmitting side can receive the reverse signaling through the time slot used in the transmission while transmitting the voice signal, that is, the reverse channel is realized by the single time slot, and the spectrum resource is saved. .
  • Embodiment 2 a schematic flowchart of Embodiment 2 of a method for carrying a path-to-path signaling in a voice call process according to the present invention is shown.
  • the method may include:
  • the associated signaling mentioned in S103 of Embodiment 1 may include two parts: a control frame and a data frame, where the control frame may indicate a specific operation of the next frame, where the specific S103 may include:
  • S301 Determine a suitable location of the embedded control frame in the time slot occupied by the to-be-transmitted voice, and the suitable location meets a preset condition; wherein the determined suitable embedded location is the first voice frame. position;
  • the preset conditions in S301 may include the following three conditions:
  • Condition 1 Excluding the position of the synchronization frame in the speech to be transmitted
  • Condition 2 The determined suitable position has a certain time interval from the next frame of the interval, so that the receiver has enough time to process the next frame (related information included in the path signaling).
  • VE is the determined suitable position
  • the next frame after VE is VF
  • the next frame after VF is VA
  • the time interval between VE and VA so that the receiver can have enough time to process VE The content of the next frame.
  • Condition 3 It cannot be the location where other signaling is embedded in the voice to be transmitted.
  • the determined position of the embedded control information should satisfy the above three conditions.
  • control frame may indicate the operation of the subsequent voice frame, for example, may indicate that the next frame is replaced with a data frame that needs to be transmitted or the next frame is converted into a data frame that receives the reverse signaling.
  • the data frame that needs to be transmitted may be GPS information
  • the data frame that receives the reverse signaling may include:
  • the receiver can send a data frame of the active control information, or inform the receiver that the data frame of the relevant information can be fed back to the transmitting party.
  • the functions that can be implemented by the path signaling are not limited to those mentioned in this embodiment, and may be extended according to the existing protocols of the DMR.
  • control information includes a synchronization frame.
  • control frame may be 20 bits, and the specific structure may include: a control code part, an FEC check part, and a control data part.
  • the control code portion is used to describe that the next voice frame is replaced with a data frame that needs to be transmitted or the next frame is converted into a data frame that receives reverse signaling.
  • S303 Replace the next frame of the first voice frame with the data frame that needs to be transmitted or convert the data frame that receives the reverse signaling according to the control frame.
  • the data frame that needs to be transmitted some information to be transmitted, such as GPS information, may be used, and the data frame that receives the reverse signaling indicates that the related information transmitted by the receiver may be received, for example,
  • the receiving party receives the accompanying signaling carried by the sender, and the sender can receive the feedback signaling. At this time, the receiver can send relevant feedback information to the sender, and thus, the sender transmits the voice signal. At the same time, it can also receive relevant information sent by the receiver.
  • the length of the to-be-transmitted voice is 1 s
  • 80 ms of the inactive voice frame is discarded according to a preset ratio
  • the space of 80 ms is saved, and the space can be utilized.
  • This 80ms space is embedded with the associated signaling.
  • the associated signaling may include a 20 ms control frame and a 60 ms data frame.
  • the speech to be transmitted needs to be compressed and then sent out from the air interface. Therefore, for the saved 80 ms voice duration, the length of the 20 ms control frame can be compressed to 7.5 ms, and 80 ms.
  • the data frame can be compressed to 30ms (wherein 30m includes 5ms of sync frames).
  • 30m includes 5ms of sync frames.
  • the control frame is embedded in the position of V E 1
  • V F is the position of the data frame
  • the information contained in the data frame frame may be: informing the receiver that the direct priority service can be sent, and the transmitting party can receive the service.
  • This position can also be understood as RC (Chinese full name: reverse channel, English full name: reverse channel).
  • a control frame is embedded in the position of V E 1
  • V F is the position of the data frame
  • the information contained in the data frame frame may be: GPS information.
  • the control frame in the channel-dependent signaling is embedded in the position where the voice to be transmitted is suitable.
  • the next frame of the first speech frame is replaced with a data frame to be transmitted or a data frame for receiving reverse signaling according to the control frame. In this way, not only the integrity of the original speech frame content is ensured, but also The receiver may have sufficient time to process the associated signaling.
  • Embodiment 3 of a method for carrying a path-to-path signaling in a voice call process according to the present invention is shown.
  • the method may include:
  • S801 The transmitting party determines the active voice and the inactive voice of the voice to be transmitted, and discards part of the inactive voice;
  • S802 The transmitting party re-encodes the to-be-transmitted voice that has discarded part of the inactive voice according to a preset rule.
  • S804 The transmitting party sends the voice carrying the associated signaling to the receiver.
  • the execution subject of the steps S801-S804 is the transmitting side, and S801-S803 is consistent with the content of S101-S103 in Embodiment 1, and details are not described herein again.
  • Embodiment 1 and Embodiment 2 after the transmitting party sends the voice carrying the associated signaling obtained in Embodiment 1 to the receiver, the receiver needs to carry the received
  • the inactive voice in the voice of the road signaling is recovered according to a preset discarding ratio, wherein the recovery of the discarded inactive voice is according to the discarding ratio mentioned in Embodiment 1, that is, when the inactive voice is discarded.
  • Proportion, adding content of the corresponding inactive voice, wherein the added content may include: comfort noise and/or received content of the inactive voice in the voice carrying the associated signaling.
  • S804 may include:
  • the receiver recovers the inactive voice according to the discarding ratio when the inactive voice is discarded.
  • the instant party discards some of the inactive voice, but does not affect the receiver. The quality of the voice carrying the associated signaling.
  • FIG. 9 is a schematic structural diagram of Embodiment 1 of a device for carrying a path-to-path signaling during a voice call according to the present invention.
  • the device may include:
  • the re-encoding unit 902 is configured to re-encode the to-be-transmitted voice that has discarded part of the inactive voice according to a preset rule;
  • the embedded associated signaling unit 903 is configured to embed the associated signaling into the occupied voice to be transmitted when the occupied time of the discarded inactive voice is greater than or equal to the time occupied by the associated signaling In the gap, the voice carrying the associated signaling is obtained.
  • the embedded associated signaling unit includes:
  • a location determining subunit configured to determine a suitable location of the embedded control frame in a time slot occupied by the to-be-transmitted voice, and the suitable location satisfies a preset condition; wherein the determined suitable embedded location is The position of the first speech frame;
  • control frame embedding subunit for embedding a control frame into a location of the first speech frame
  • the data frame embedding sub-unit is configured to replace the next frame of the first speech frame with the data frame to be transmitted or the data frame for receiving the reverse signaling according to the control frame.
  • the discarding the inactive voice unit includes:
  • a length calculation subunit for calculating the length of the inactive speech
  • the inactive voice extraction subunit is configured to extract the inactive voice according to a preset discarding ratio
  • the inactive voice discarding subunit is configured to discard the extracted inactive voice.
  • it also includes:
  • the inactive voice recovery unit is configured to: after receiving the voice carrying the associated channel signaling, recover the inactive voice according to the preset discarding ratio.
  • the inactive voice recovery unit includes:
  • a first inactive voice recovery subunit configured to add comfort noise to the inactive voice according to the preset discard ratio
  • a second inactive voice recovery sub-unit extracting content of the received inactive voice in the voice carrying the associated signaling, and adding the content of the inactive voice according to the preset discarding ratio Into the inactive voice.
  • it also includes:
  • the executing unit is configured to perform corresponding operations according to the information included in the associated signaling after receiving the voice carrying the associated signaling.
  • the device to be transmitted is divided into active voice and inactive voice by the device in this embodiment, and part of the inactive voice is discarded, and the to-be-transmitted voice that has discarded part of the inactive voice is re-encoded according to a preset rule, when discarded.
  • the time slot occupied by the inactive voice is greater than or equal to the time slot occupied by the path signaling, the associated channel signaling is embedded in the time slot occupied by the to-be-transmitted voice.
  • the transmitting party can carry the sending channel signaling in the process of the voice call, and the associated channel signaling can not only carry related data information, but the channel associated signaling can also carry the information of receiving the reverse signaling.
  • the transmitting side can receive the reverse signaling through the time slot used in the transmission while transmitting the voice signal, that is, the reverse channel is realized by the single time slot, and the spectrum resource is saved. .
  • FIG. 10 it is a schematic structural diagram of Embodiment 1 of an apparatus for carrying a path-to-path signaling in a voice call process provided by the present invention, where the apparatus includes:
  • the memory 1001 is connected to the processor 1002 for storing a program and data generated during a running of the program;
  • the processor 1001 is configured to implement the following functions by running a program stored in the memory:
  • the processor 1001 when the processor 1001 embeds the associated path signaling into a time slot occupied by the to-be-transmitted voice, the processor 1001 is specifically configured to:
  • the processor 1001 discards part of the inactive voice, specifically for:
  • Calculating the length of the inactive voice extracting the inactive voice according to a preset discarding ratio; discarding the extracted inactive voice.
  • the processor 1001 is further configured to:
  • the inactive voice After receiving the voice carrying the associated signaling, the inactive voice is restored according to the preset discarding ratio.
  • the processor 1001 recovers the inactive voice according to the preset discard ratio, specifically for:
  • the processor 1001 is further configured to:
  • the corresponding operation After receiving the voice carrying the associated signaling, the corresponding operation is performed according to the information included in the associated signaling.
  • the to-be-transmitted voice is divided into active voice and inactive voice, part of the inactive voice is discarded, and the to-be-transmitted voice that has discarded part of the inactive voice is re-encoded according to a preset rule, when discarded
  • the associated channel signaling is embedded in the time slot occupied by the to-be-transmitted voice.
  • the transmitting party can carry the sending channel signaling in the process of the voice call, and the associated channel signaling can not only carry related data information, but the channel associated signaling can also carry the information of receiving the reverse signaling.
  • the transmitting side can receive the reverse signaling through the time slot used in the transmission while transmitting the voice signal, that is, the reverse channel is realized by the single time slot, and the spectrum resource is saved. .

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Abstract

本发明实施例提供了一种语音呼叫过程中携带随路信令的方法、装置及设备,该方法包括:将待发射语音划分为活动语音和非活动语音,丢弃部分非活动语音,并将丢弃了部分非活动语音的待发射语音依据预设的规则重新编码,当丢弃的非活动语音占用的时隙大于或者等于随路信令所占用的时隙时,将所述随路信令嵌入到该待发射语音所占用的时隙中。这样,发射方可以在语音呼叫的过程中,携带发送随路信令,该随路信令不仅可以携带相关的数据信息,而且该随路信令还可以携带接收反向信令的信息。因此,不仅实现了语音和数据业务的并发,并且发射方在发射语音信号的同时可以通过发射时采用的时隙接收反向信令,即通过单时隙实现了反向信道,节省了频谱资源。

Description

一种语音呼叫过程中携带随路信令的方法、装置及设备 技术领域
本发明涉及通讯领域,尤其涉及一种语音呼叫过程中携带随路信令的方法、装置及设备。
背景技术
在DMR-PDT(英文全称:Digital Mobile Radio-Portable data terminal中文全称:数字对讲机-便携式数据终端)系统中,语音仍是以半双工为主,在一个连续的呼叫业务中单时隙无法通过单时隙实现反向信道,例如:接收方无法通过单时隙向发射方反馈相关的信息;并且,若是接收方想要发送一些主动控制信息,例如直通优先业务或者集群抢插强拆等,只可以通过另外的时隙作为反向信道来实现,无法用单时隙来实现,一方面占用了更多的时隙,另一方面发射方和接收方通信所占用的每个时隙都额外增加了10ms以上的接收检测时间,不利于省电。除此之外,发射方无法在发射语音时同时发送数据信息。
发明内容
有鉴于此,本发明实施例提供了一种语音呼叫过程中携带随路信令的方法、装置及设备,解决了现有技术中,无法通过单时隙实现反向信道及无法在发射语音时同时发送数据信息的问题。
本发明实施例提供的一种语音呼叫过程中携带随路信令的方法,所述方法包括:
确定待发射语音的活动语音和非活动语音,并丢弃部分非活动语音;
将丢弃了部分非活动语音的所述待发射语音依据预设的规则重新编码;
当丢弃的非活动语音占用的时间大于或者等于随路信令所占用的时间时,将所述随路信令嵌入到所述待发射语音所占用的时隙中,得到携带有随路信令的语音。
可选的,所述将所述随路信令嵌入到所述待发射语音所占用的时隙中,包 括:
在所述待发射语音所占用的时隙中确定嵌入控制帧的合适位置,且所述合适的位置满足预设的条件;其中,所述确定的合适的嵌入位置为第一语音帧的位置;
将控制帧嵌入到所述第一语音帧的位置中;
依据所述控制帧将第一语音帧的下一帧替换为需要发射的数据帧或者转为接收反向信令的数据帧。
可选的,所述丢弃部分非活动语音包括:
计算非活动语音的长度;
依据预设的丢弃比例对所述非活动语音进行抽取;
丢弃抽取出的所述非活动语音。
可选的,还包括:
当接收到携带有随路信令的语音后,依据所述预设的丢弃比例恢复非活动语音。
可选的,所述依据所述预设的丢弃比例恢复非活动语音包括:
依据所述预设的丢弃比例,将舒适噪声添加到非活动语音中;
或者
提取接收到的携带有随路信令的语音中的非活动语音的内容,并依据所述预设的丢弃比例,将所述非活动语音的内容添加到非活动语音中。
可选的,还包括:
当接收到携带有随路信令的语音后,依据所述随路信令包含的信息进行相应的操作。
本发明实施例还提供了一种语音呼叫过程中携带随路信令的装置,所述装置包括:
丢弃非活动语音单元,用于确定待发射语音的活动语音和非活动语音,并丢弃部分非活动语音;
重新编码单元,用于将丢弃了部分非活动语音的所述待发射语音依据预设的规则重新编码;
嵌入随路信令单元,用于当丢弃的非活动语音占用的时间大于或者等于随 路信令所占用的时间时,将所述随路信令嵌入到所述待发射语音所占用的时隙中,得到携带有随路信令的语音。
可选的,所述嵌入随路信令单元,包括:
位置确定子单元,用于在所述待发射语音所占用的时隙中确定嵌入控制帧的合适位置,且所述合适的位置满足预设的条件;其中,所述确定的合适的嵌入位置为第一语音帧的位置;
控制帧嵌入子单元,用于将控制帧嵌入到所述第一语音帧的位置中;
数据帧嵌入子单元,用于依据所述控制帧将第一语音帧的下一帧替换为需要发射的数据帧或者转为接收反向信令的数据帧。
可选的,所述丢弃非活动语音单元,包括:
长度计算子单元,用于计算非活动语音的长度;
非活动语音抽取子单元,用于依据预设的丢弃比例对所述非活动语音进行抽取;
非活动语音丢弃子单元,用于丢弃抽取出的所述非活动语音。
可选的,还包括:
非活动语音恢复单元,用于当接收到携带有随路信令的语音后,依据所述预设的丢弃比例恢复非活动语音。
可选的,所述非活动语音恢复单元,包括:
第一非活动语音恢复子单元,用于依据所述预设的丢弃比例,将舒适噪声添加到非活动语音中;
或者
第二非活动语音恢复子单元,提取接收到的携带有随路信令的语音中的非活动语音的内容,并依据所述预设的丢弃比例,将所述非活动语音的内容添加到非活动语音中。
可选的,所述装置还包括:
执行单元,用于当接收到携带有随路信令的语音后,依据所述随路信令包含的信息进行相应的操作。
一种语音呼叫过程中携带随路信令的设备,所述设备包括:
存储器和处理器;
其中,所述存储器与所述处理器连接,用于存储程序,以及程序运行过程 中产生的数据;
所述处理器,用于通过运行所述存储器中存储的程序,实现以下功能:
确定待发射语音的活动语音和非活动语音,并丢弃部分非活动语音;将丢弃了部分非活动语音的所述待发射语音依据预设的规则重新编码;当丢弃的非活动语音占用的时间大于或者等于随路信令所占用的时间时,将所述随路信令嵌入到所述待发射语音所占用的时隙中,得到携带有随路信令的语音。
可选的,所述处理器将所述随路信令嵌入到所述待发射语音所占用的时隙中时,具体用于:
在所述待发射语音所占用的时隙中确定嵌入控制帧的合适位置,且所述合适的位置满足预设的条件;其中,所述确定的合适的嵌入位置为第一语音帧的位置;将控制帧嵌入到所述第一语音帧的位置中;依据所述控制帧将第一语音帧的下一帧替换为需要发射的数据帧或者转为接收反向信令的数据帧。
可选的,所述处理器丢弃部分非活动语音,具体用于:
计算非活动语音的长度;依据预设的丢弃比例对所述非活动语音进行抽取;丢弃抽取出的所述非活动语音。
可选的,所述处理器还用于:
当接收到携带有随路信令的语音后,依据所述预设的丢弃比例恢复非活动语音。
可选的,所述处理器依据所述预设的丢弃比例恢复非活动语音,具体用于:
依据所述预设的丢弃比例,将舒适噪声添加到非活动语音中;
或者
提取接收到的携带有随路信令的语音中的非活动语音的内容,并依据所述预设的丢弃比例,将所述非活动语音的内容添加到非活动语音中。
可选的,所述处理器还用于:
当接收到携带有随路信令的语音后,依据所述随路信令包含的信息进行相应的操作。
本实施例中,将待发射语音划分为活动语音和非活动语音,丢弃部分非活动语音,并将丢弃了部分非活动语音的该待发射语音依据预设的规则重新编码,当丢弃的非活动语音占用的时隙大于或者等于随路信令所占用的时隙时,将所述随路信令嵌入到该待发射语音所占用的时隙中。这样,发射方可以在语 音呼叫的过程中,携带发送随路信令,该随路信令不仅可以携带相关的数据信息,而且该随路信令还可以携带接收反向信令的信息。因此,不仅实现了语音和数据业务的并发,并且发射方在发射语音信号的同时可以通过发射时采用的时隙接收反向信令,即通过单时隙实现了反向信道,节省了频谱资源。
附图说明
为了更清楚地说明本发明实施例或现有技术中的技术方案,下面将对实施例或现有技术描述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本发明的实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据提供的附图获得其他的附图。
图1示出了本发明提供的一种语音呼叫过程中携带随路信令的方法实施例1的流程示意图;
图2-a为待发射的语音的时域图;
图2-b为抽取后的待发射的语音的时域图;
图3示出了本发明提供的一种语音呼叫过程中携带随路信令的方法实施例2流程示意图;
图4示出了控制帧的结构示意图;
图5示出了待发射语音的时隙图;
图6示出了嵌入了随路信令的待发射语音的时隙图;
图7示出了嵌入了随路信令的待发生语音的时隙图;
图8示出了本发明提供的一种语音呼叫过程中携带有随路信令的方法实施例3的流程示意图;
图9示出了本发明提供的一种语音呼叫过程中携带有随路信令的装置实施例1的结构示意图;
图10示出了本发明提供的一种语音呼叫过程中携带随路信令的设备实施例1的结构示意图。
具体实施方式
下面将结合本发明实施例中的附图,对本发明实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本发明一部分实施例,而不是 全部的实施例。基于本发明中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,都属于本发明保护的范围。
参考图1,示出了本发明提供的一种语音呼叫过程中携带随路信令的方法实施例1的流程示意图,在本实施例中,所述方法可以包括S101-S103:
S101:确定待发射语音的活动语音和非活动语音,并丢弃部分非活动语音;
在本实施例中,所述活动语音可以理解,有效的语音信息;非活动语音可以理解为,空白的语音、说话的间隙或者静音状态。例如:对于一个1s的语音,在0-20ms可以是空白语音,即发送端用户没有说话,20ms-90ms之间是正常的语音信息,但是在这期间,会存在说话的间隙,90ms-100ms之间,接收到的是静音的信号;因此,在20ms-90ms之间的有效的语音信息为活动语音,而在0-20ms、20ms-90ms以及20ms-90ms之间语音的空隙,都属于非活动语音的部分。
其中,一个语音信号所占用的时隙是一定的,由于非活动语音是非有效的语音信号部分,因此,可以丢弃部分的非活动语音,从而节省出一部分时隙,具体的,S101可以包括:
计算非活动语音的长度;
依据预设的丢弃比例对所述非活动语音进行抽取;
丢弃抽取出的所述非活动语音。
本实施例中,需要说明的是,该丢弃比例表示的是丢弃的非活动语音所占的时间占所有非活动语音所占的总时间的比例。
其中,该丢弃比例可以是预设好的,并且该预设的丢弃比例可以保证该待发射的语音的语音质量。例如,技术人员可以通过实验得到该丢弃比例,除此之外,该丢弃比例还可以是自适应生成的,具体的,可以依据预设的规则,在保证通话质量的基础上,生成相应的丢弃比例。
举例说明:假设该待发射的语音为一个1s的语音,即该待发射的语音占用的时隙为1s,如图2-a所示,为该待发射的语音的频谱图,其中1,2,3部分为依照1/2的丢弃比例抽取的该语音信号中的非活动语音,将非活动语音抽取出后,如图2-b所示,抽取后的待发射语音的语音长度为0.88s,节省出了0.12s的时隙。
S102:将丢弃了部分非活动语音的所述待发射语音依据预设的规则重新编码。
本实施例中,丢弃了部分非活动语音后,该待发射语音目前为不连续的语音信号,接收方可能无法识别这样的信号,因此,可以将丢弃了部分非活动语音的待发射语音依据预设的规则重新编码,例如可以将后续的活动语音填充到前面非活动语音的部分,进而保证每个语音帧的连续性和完整性。
S103:当丢弃的非活动语音占用的时间大于或者等于随路信令所占用的时间时,将所述随路信令嵌入到所述待发射语音所占用的时隙中,得到携带有随路信令的语音。
本实施例中,该待发射的语音所占用的时隙是一定的,丢弃了部分非活动语音后,可以节省出一部分的时隙,这样可以在该待发射的语音所占用的时隙中嵌入随路信令。
本实施例中,随路信令中携带的信息可以包括一些特定的信息例如GPS信息、或者是告知接收方可以发送主动控制信息、或者还可以是告知接收方可以向发射方反馈相关信息等。其中,主动控制信息可以包括,直通优先业务、集群抢插强拆、发射功率调整等。
举例说明:当随路信令中包括的是告知接收方可以发送直通优先业务时,发射方(对讲机A)将该随路信令嵌入到待发射语音中,并将该待发射语音发送给相应的接收方,假设发射方向接收方发送语音所占用的时隙为第一时隙,接收方(对讲机B)接收到该随路信令后,接收方可以通过该第一时隙向发射方发送相关的直通优先业务,这样可以不占用其它时隙,向发射方发送直通优先业务,节省了频谱资源。
当随路信令中包括的告知接收方可以反馈相关信息的信令时,假设发射为移动终端,接收方为基站,移动终端向基站发送了相关信息后,想知道基站是否接收到了发送的相关信息、以及接收到的相关信息的质量如何,移动终端可以将该包括告知接收方可以反馈相关信息的信令的随路信令,嵌入到待发射的语音中,并将该携带有随路信令的待发射语音发送给基站,基站接收到该随路信令后,可以向移动终端反馈相关的信息。
因此,当接收方接收到携带有随路信令的语音时,可以依据所述随路信令包含的信息进行相应的操作。
举例说明:当随路信令中包括的告知接收方可以反馈相关信息的信令时,假设发射为移动终端,接收方为基站,并且移动终端向基站发送携带有该随路 信令的语音占用的是第一时隙,当基站接收到移动终端发送的携带有该随路信令的语音后,通过第一时隙基站向移动终端发送相应的反馈信息。
本实施例中,将待发射语音划分为活动语音和非活动语音,丢弃部分非活动语音,并将丢弃了部分非活动语音的该待发射语音依据预设的规则重新编码,当丢弃的非活动语音占用的时隙大于或者等于随路信令所占用的时隙时,将所述随路信令嵌入到该待发射语音所占用的时隙中。这样,发射方可以在语音呼叫的过程中,携带发送随路信令,该随路信令不仅可以携带相关的数据信息,而且该随路信令还可以携带接收反向信令的信息。因此,不仅实现了语音和数据业务的并发,并且发射方在发射语音信号的同时可以通过发射时采用的时隙接收反向信令,即通过单时隙实现了反向信道,节省了频谱资源。
参考图3,示出了本发明提供的一种语音呼叫过程中携带随路信令的方法实施例2的流程示意图,在本实施例中,所述方法可以包括:
本实施例中,实施例1的S103中提到的随路信令可以包括两部分:控制帧和数据帧,其中控制帧可以指示下一帧具体的操作,其中具体的S103可以包括:
S301:在所述待发射语音所占用的时隙中确定嵌入控制帧的合适位置,且所述合适的位置满足预设的条件;其中,所述确定的合适的嵌入位置为第一语音帧的位置;
本实施例中,需要说明的是,S301中预设的条件可以包括以下的三个条件:
条件一:排除掉该待发射语音中同步帧的位置;
条件二:确定的合适的位置与间隔的下一帧有一定的时间间隔,使得接收方有足够的时间处理下一帧(随路信令包括的相关信息)。
举例说明:假设VE为确定的合适的位置,VE之后的下一帧为VF,VF之后的下一帧为VA,则VE与VA之间的时间间隔,使得接收方可以有足够的时间处理VE后一帧的内容。
条件三:不能是待发射语音中已嵌入其它信令的位置。
本实施例中,确定的嵌入控制信息的合适位置应满足以上的三个条件。
S302:将控制帧嵌入到所述第一语音帧的位置;
本实施例中,该控制帧可以指示后续的语音帧的操作,例如可以指示下一帧替换为需要发射的数据帧或者将下一帧转为接收反向信令的数据帧。例如:需要发射的数据帧可以为GPS信息、接收反向信令的数据帧可以包括:告知接 收方可以发送主动控制信息的数据帧、或者告知接收方可以向发射方反馈相关信息的数据帧等。除此之外,随路信令能够实现的功能不局限于本实施例提到的这些,还可以根据DMR现有的协议进行相应的扩展。
本实施例中,需要说明的是,该控制信息中包括同步帧。
举例说明:参考图4,示出了控制帧的结构示意图。例如该控制帧可以为20bit,具体结构可以包括:控制码部分、FEC校验部分和控制数据部分。其中控制码部分用来描述下一语音帧替换为需要发射的数据帧或者将下一帧转为接收反向信令的数据帧。
S303:依据所述控制帧将第一语音帧的下一帧替换为需要发射的数据帧或者转为接收反向信令的数据帧。
本实施例中,需要说明的是,对于需要发射的数据帧可以是GPS信息等一些待发射的信息,而接收反向信令的数据帧表示的是,可以接收接收方发射的相关信息,例如,接受方接收到发送方携带的随路信令为,发送方可以接收反馈信令,此时接收方可以向发送方发送相关的反馈信息,因此,也就实现了发送方在发送语音信号的同时也可以接收接收方发送的相关信息。
举例说明:如图5所示,为待发射语音的时隙图,假设该待发射语音长度为1s,按照预设的比例丢弃了80ms的非活动语音帧后,节省了80ms的空间,可以利用这80ms的空间嵌入随路信令。该随路信令可以包括20ms的控制帧和60ms的数据帧。当时,在实际应用时,待发射的语音需要经过压缩后,再从空口上发出的,因此,对于节省出来的80ms的语音时长,20ms的控制帧的长度可以压缩为7.5ms,而,80ms的数据帧可以压缩为30ms(其中,这30m中包括5ms的同步帧)。参考图6,假设将控制帧嵌入到VE 1的位置,VF为数据帧的位置,而且该数据帧帧包含的信息可以为:告知接收方可以发送直通优先业务,发射方可以接收该业务,该位置也可以理解为RC(中文全称:反向信道,英文全称:reverse channel)。参考图7,假设将控制帧嵌入到VE 1的位置,VF为数据帧的位置,而且该数据帧帧包含的信息可以为:GPS信息。
本实施例中,当待发射语音所丢弃的非活动语音累计的时间大于等于随路信令所占用的时间时,将随路信令中的控制帧嵌入到该待发射语音合适的位置中,依据所述控制帧将第一语音帧的下一帧替换为需要发射的数据帧或者转为接收反向信令的数据帧。这样,不仅保证了原有语音帧内容的完整性,而且使 得接收方可以有足够的时间处理该随路信令。
参考图8,示出了本发明提供的一种语音呼叫过程中携带有随路信令的方法实施例3的流程示意图,在本实施例中,所述方法可以包括:
S801:发射方确定待发射语音的活动语音和非活动语音,并丢弃部分非活动语音;
S802:发射方将丢弃了部分非活动语音的所述待发射语音依据预设的规则重新编码;
S803:当丢弃的非活动语音占用的时间大于或者等于随路信令所占用的时间时,发射方将所述随路信令嵌入到所述待发射语音所占用的时隙中,得到携带有随路信令的语音;
S804:发射方将所述携带有随路信令的语音发送给接收方;
本实施例中,对于S801-S804的步骤的执行主体是发射方,并且,S801-S803与实施例1中S101-S103的内容一致,在这里就不再赘述。
S804:当接收方接收到携带有随路信令的语音后,依据所述预设的丢弃比例恢复非活动语音。
本实施例中,根据实施例1和实施例2的介绍,当发射方将实施例1中得到的携带有随路信令的语音发送给接收方后,接收方需要将接收到的携带有随路信令的语音中的非活动语音按照预设的丢弃比例进行恢复,其中,对于丢弃的非活动语音的恢复,是按照实施例1中提到的丢弃比例,即在丢弃非活动语音时的比例,添加上相应的非活动语音的内容,其中添加的内容可以包括:舒适噪声和/或接收到的携带有随路信令的语音中非活动语音的内容。具体的,S804可以包括:
依据所述预设的丢弃比例,将舒适噪声添加到非活动语音中;
或者
提取接收到的携带有随路信令的语音信号中的非活动语音的内容,并依据所述预设的丢弃比例,将所述非活动语音的内容添加到非活动语音中。
本实施例中,接收方按照丢弃非活动语音时的丢弃比例,对非活动语音进行恢复,通过对非活动语音的恢复,即时发生方丢弃了部分非活动语音,但是不影响接收方接收到的携带有随路信令的语音的质量。
参考图9示出了本发明提供的一种语音呼叫过程中携带随路信令的装置实施例1的结构示意图,在本实施例中所述装置可以包括:
丢弃非活动语音单元901,用于确定待发射语音的活动语音和非活动语音,并丢弃部分非活动语音;
重新编码单元902,用于将丢弃了部分非活动语音的所述待发射语音依据预设的规则重新编码;
嵌入随路信令单元903,用于当丢弃的非活动语音占用的时间大于或者等于随路信令所占用的时间时,将所述随路信令嵌入到所述待发射语音所占用的时隙中,得到携带有随路信令的语音。
可选的,所述嵌入随路信令单元,包括:
位置确定子单元,用于在所述待发射语音所占用的时隙中确定嵌入控制帧的合适位置,且所述合适的位置满足预设的条件;其中,所述确定的合适的嵌入位置为第一语音帧的位置;
控制帧嵌入子单元,用于将控制帧嵌入到所述第一语音帧的位置中;
数据帧嵌入子单元,用于依据所述控制帧将第一语音帧的下一帧替换为需要发射的数据帧或者转为接收反向信令的数据帧。
可选的,所述丢弃非活动语音单元,包括:
长度计算子单元,用于计算非活动语音的长度;
非活动语音抽取子单元,用于依据预设的丢弃比例对所述非活动语音进行抽取;
非活动语音丢弃子单元,用于丢弃抽取出的所述非活动语音。
可选的,还包括:
非活动语音恢复单元,用于当接收到携带有随路信令的语音后,依据所述预设的丢弃比例恢复非活动语音。
可选的,所述非活动语音恢复单元,包括:
第一非活动语音恢复子单元,用于依据所述预设的丢弃比例,将舒适噪声添加到非活动语音中;
或者
第二非活动语音恢复子单元,提取接收到的携带有随路信令的语音中的非活动语音的内容,并依据所述预设的丢弃比例,将所述非活动语音的内容添加 到非活动语音中。
可选的,还包括:
执行单元,用于当接收到携带有随路信令的语音后,依据所述随路信令包含的信息进行相应的操作。
通过本实施例的装置,将待发射语音划分为活动语音和非活动语音,丢弃部分非活动语音,并将丢弃了部分非活动语音的该待发射语音依据预设的规则重新编码,当丢弃的非活动语音占用的时隙大于或者等于随路信令所占用的时隙时,将所述随路信令嵌入到该待发射语音所占用的时隙中。这样,发射方可以在语音呼叫的过程中,携带发送随路信令,该随路信令不仅可以携带相关的数据信息,而且该随路信令还可以携带接收反向信令的信息。因此,不仅实现了语音和数据业务的并发,并且发射方在发射语音信号的同时可以通过发射时采用的时隙接收反向信令,即通过单时隙实现了反向信道,节省了频谱资源。
参考图10,示出了本发明提供的一种语音呼叫过程中携带随路信令的设备实施例1的结构示意图,所述设备包括:
存储器1001和处理器1002;
其中,所述存储器1001与所述处理器1002连接,用于存储程序,以及程序运行过程中产生的数据;
所述处理器1001,用于通过运行所述存储器中存储的程序,实现以下功能:
确定待发射语音的活动语音和非活动语音,并丢弃部分非活动语音;将丢弃了部分非活动语音的所述待发射语音依据预设的规则重新编码;当丢弃的非活动语音占用的时间大于或者等于随路信令所占用的时间时,将所述随路信令嵌入到所述待发射语音所占用的时隙中,得到携带有随路信令的语音。
可选的,所述处理器1001将所述随路信令嵌入到所述待发射语音所占用的时隙中时,具体用于:
在所述待发射语音所占用的时隙中确定嵌入控制帧的合适位置,且所述合适的位置满足预设的条件;其中,所述确定的合适的嵌入位置为第一语音帧的位置;将控制帧嵌入到所述第一语音帧的位置中;依据所述控制帧将第一语音帧的下一帧替换为需要发射的数据帧或者转为接收反向信令的数据帧。
可选的,所述处理器1001丢弃部分非活动语音,具体用于:
计算非活动语音的长度;依据预设的丢弃比例对所述非活动语音进行抽取;丢弃抽取出的所述非活动语音。
可选的,所述处理器1001还用于:
当接收到携带有随路信令的语音后,依据所述预设的丢弃比例恢复非活动语音。
可选的,所述处理器1001依据所述预设的丢弃比例恢复非活动语音,具体用于:
依据所述预设的丢弃比例,将舒适噪声添加到非活动语音中;
或者
提取接收到的携带有随路信令的语音中的非活动语音的内容,并依据所述预设的丢弃比例,将所述非活动语音的内容添加到非活动语音中。
可选的,所述处理器1001还用于:
当接收到携带有随路信令的语音后,依据所述随路信令包含的信息进行相应的操作。
通过本实施例的设备,将待发射语音划分为活动语音和非活动语音,丢弃部分非活动语音,并将丢弃了部分非活动语音的该待发射语音依据预设的规则重新编码,当丢弃的非活动语音占用的时隙大于或者等于随路信令所占用的时隙时,将所述随路信令嵌入到该待发射语音所占用的时隙中。这样,发射方可以在语音呼叫的过程中,携带发送随路信令,该随路信令不仅可以携带相关的数据信息,而且该随路信令还可以携带接收反向信令的信息。因此,不仅实现了语音和数据业务的并发,并且发射方在发射语音信号的同时可以通过发射时采用的时隙接收反向信令,即通过单时隙实现了反向信道,节省了频谱资源。
对所公开的实施例的上述说明,使本领域专业技术人员能够实现或使用本发明。对这些实施例的多种修改对本领域的专业技术人员来说将是显而易见的,本文中所定义的一般原理可以在不脱离本发明的精神或范围的情况下,在其它实施例中实现。因此,本发明将不会被限制于本文所示的这些实施例,而是要符合与本文所公开的原理和新颖特点相一致的最宽的范围。

Claims (18)

  1. 一种语音呼叫过程中携带随路信令的方法,其特征在于,所述方法包括:
    确定待发射语音的活动语音和非活动语音,并丢弃部分非活动语音;
    将丢弃了部分非活动语音的所述待发射语音依据预设的规则重新编码;
    当丢弃的非活动语音占用的时间大于或者等于随路信令所占用的时间时,将所述随路信令嵌入到所述待发射语音所占用的时隙中,得到携带有随路信令的语音。
  2. 根据权利要求1所述的方法,其特征在于,所述将所述随路信令嵌入到所述待发射语音所占用的时隙中,包括:
    在所述待发射语音所占用的时隙中确定嵌入控制帧的合适位置,且所述合适的位置满足预设的条件;其中,所述确定的合适的嵌入位置为第一语音帧的位置;
    将控制帧嵌入到所述第一语音帧的位置中;
    依据所述控制帧将第一语音帧的下一帧替换为需要发射的数据帧或者转为接收反向信令的数据帧。
  3. 根据权利要求1所述的方法,其特征在于,所述丢弃部分非活动语音包括:
    计算非活动语音的长度;
    依据预设的丢弃比例对所述非活动语音进行抽取;
    丢弃抽取出的所述非活动语音。
  4. 根据权利要求3所述的方法,其特征在于,还包括:
    当接收到携带有随路信令的语音后,依据所述预设的丢弃比例恢复非活动语音。
  5. 根据权利要求4所述的方法,其特征在于,所述依据所述预设的丢弃比例恢复非活动语音包括:
    依据所述预设的丢弃比例,将舒适噪声添加到非活动语音中;
    或者
    提取接收到的携带有随路信令的语音中的非活动语音的内容,并依据所述 预设的丢弃比例,将所述非活动语音的内容添加到非活动语音中。
  6. 根据权利要求1所述的方法,其特征在于,还包括:
    当接收到携带有随路信令的语音后,依据所述随路信令包含的信息进行相应的操作。
  7. 一种语音呼叫过程中携带随路信令的装置,其特征在于,所述装置包括:
    丢弃非活动语音单元,用于确定待发射语音的活动语音和非活动语音,并丢弃部分非活动语音;
    重新编码单元,用于将丢弃了部分非活动语音的所述待发射语音依据预设的规则重新编码;
    嵌入随路信令单元,用于当丢弃的非活动语音占用的时间大于或者等于随路信令所占用的时间时,将所述随路信令嵌入到所述待发射语音所占用的时隙中,得到携带有随路信令的语音。
  8. 根据权利要求7所述的装置,其特征在于,所述嵌入随路信令单元,包括:
    位置确定子单元,用于在所述待发射语音所占用的时隙中确定嵌入控制帧的合适位置,且所述合适的位置满足预设的条件;其中,所述确定的合适的嵌入位置为第一语音帧的位置;
    控制帧嵌入子单元,用于将控制帧嵌入到所述第一语音帧的位置中;
    数据帧嵌入子单元,用于依据所述控制帧将第一语音帧的下一帧替换为需要发射的数据帧或者转为接收反向信令的数据帧。
  9. 根据权利要求7所述的装置,其特征在于,所述丢弃非活动语音单元,包括:
    长度计算子单元,用于计算非活动语音的长度;
    非活动语音抽取子单元,用于依据预设的丢弃比例对所述非活动语音进行抽取;
    非活动语音丢弃子单元,用于丢弃抽取出的所述非活动语音。
  10. 根据权利要求9所述的装置,其特征在于,还包括:
    非活动语音恢复单元,用于当接收到携带有随路信令的语音后,依据所述 预设的丢弃比例恢复非活动语音。
  11. 根据权利要求10所述的装置,其特征在于,所述非活动语音恢复单元,包括:
    第一非活动语音恢复子单元,用于依据所述预设的丢弃比例,将舒适噪声添加到非活动语音中;
    或者
    第二非活动语音恢复子单元,提取接收到的携带有随路信令的语音中的非活动语音的内容,并依据所述预设的丢弃比例,将所述非活动语音的内容添加到非活动语音中。
  12. 根据权利要求7所述的装置,其特征在于,还包括:
    执行单元,用于当接收到携带有随路信令的语音后,依据所述随路信令包含的信息进行相应的操作。
  13. 一种语音呼叫过程中携带随路信令的设备,其特征在于,所述设备包括:
    存储器和处理器;
    其中,所述存储器与所述处理器连接,用于存储程序,以及程序运行过程中产生的数据;
    所述处理器,用于通过运行所述存储器中存储的程序,实现以下功能:
    确定待发射语音的活动语音和非活动语音,并丢弃部分非活动语音;将丢弃了部分非活动语音的所述待发射语音依据预设的规则重新编码;当丢弃的非活动语音占用的时间大于或者等于随路信令所占用的时间时,将所述随路信令嵌入到所述待发射语音所占用的时隙中,得到携带有随路信令的语音。
  14. 根据权利要求13所述的设备,其特征在于,所述处理器将所述随路信令嵌入到所述待发射语音所占用的时隙中时,具体用于:
    在所述待发射语音所占用的时隙中确定嵌入控制帧的合适位置,且所述合适的位置满足预设的条件;其中,所述确定的合适的嵌入位置为第一语音帧的位置;将控制帧嵌入到所述第一语音帧的位置中;依据所述控制帧将第一语音帧的下一帧替换为需要发射的数据帧或者转为接收反向信令的数据帧。
  15. 根据权利要求13所述的设备,其特征在于,所述处理器丢弃部分非活动语音,具体用于:
    计算非活动语音的长度;依据预设的丢弃比例对所述非活动语音进行抽取;丢弃抽取出的所述非活动语音。
  16. 根据权利要求15所述的设备,其特征在于,所述处理器还用于:
    当接收到携带有随路信令的语音后,依据所述预设的丢弃比例恢复非活动语音。
  17. 根据权利要求16所述的设备,其特征在于,所述处理器依据所述预设的丢弃比例恢复非活动语音,具体用于:
    依据所述预设的丢弃比例,将舒适噪声添加到非活动语音中;
    或者
    提取接收到的携带有随路信令的语音中的非活动语音的内容,并依据所述预设的丢弃比例,将所述非活动语音的内容添加到非活动语音中。
  18. 根据权利要求13所述的设备,其特征在于,所述处理器还用于:
    当接收到携带有随路信令的语音后,依据所述随路信令包含的信息进行相应的操作。
PCT/CN2017/083417 2017-05-08 2017-05-08 一种语音呼叫过程中携带随路信令的方法、装置及设备 WO2018205080A1 (zh)

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Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20060217983A1 (en) * 2005-03-28 2006-09-28 Tellabs Operations, Inc. Method and apparatus for injecting comfort noise in a communications system
US20070115832A1 (en) * 2005-11-21 2007-05-24 Cisco Technology, Inc. System and method for facilitating network performance analysis
CN1984398A (zh) * 2006-04-17 2007-06-20 华为技术有限公司 一种提高cdma系统语音接口传输效率的方法和装置
CN102820942A (zh) * 2012-08-17 2012-12-12 广州海格天立通信息技术有限公司 基于tdma系统突发帧的帧同步方法
CN102843206A (zh) * 2012-08-17 2012-12-26 广州海格天立通信息技术有限公司 基于随路信令的语音传输方法
CN104601284A (zh) * 2015-01-13 2015-05-06 哈尔滨海能达科技有限公司 一种数据信息传输的方法、装置及系统

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20060217983A1 (en) * 2005-03-28 2006-09-28 Tellabs Operations, Inc. Method and apparatus for injecting comfort noise in a communications system
US20070115832A1 (en) * 2005-11-21 2007-05-24 Cisco Technology, Inc. System and method for facilitating network performance analysis
CN1984398A (zh) * 2006-04-17 2007-06-20 华为技术有限公司 一种提高cdma系统语音接口传输效率的方法和装置
CN102820942A (zh) * 2012-08-17 2012-12-12 广州海格天立通信息技术有限公司 基于tdma系统突发帧的帧同步方法
CN102843206A (zh) * 2012-08-17 2012-12-26 广州海格天立通信息技术有限公司 基于随路信令的语音传输方法
CN104601284A (zh) * 2015-01-13 2015-05-06 哈尔滨海能达科技有限公司 一种数据信息传输的方法、装置及系统

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