WO2018076442A1 - 通话断续优化方法和装置 - Google Patents
通话断续优化方法和装置 Download PDFInfo
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- WO2018076442A1 WO2018076442A1 PCT/CN2016/107826 CN2016107826W WO2018076442A1 WO 2018076442 A1 WO2018076442 A1 WO 2018076442A1 CN 2016107826 W CN2016107826 W CN 2016107826W WO 2018076442 A1 WO2018076442 A1 WO 2018076442A1
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- Prior art keywords
- call
- terminal
- data
- cloud server
- call data
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04L—TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
- H04L65/00—Network arrangements, protocols or services for supporting real-time applications in data packet communication
- H04L65/10—Architectures or entities
- H04L65/1016—IP multimedia subsystem [IMS]
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04L—TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
- H04L65/00—Network arrangements, protocols or services for supporting real-time applications in data packet communication
- H04L65/80—Responding to QoS
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W24/00—Supervisory, monitoring or testing arrangements
- H04W24/02—Arrangements for optimising operational condition
Definitions
- the present invention relates to the field of communications technologies, and in particular, to a call interrupt optimization method and apparatus.
- a call interrupt optimization method is applied to a terminal, and the method includes:
- the state of the network call signal is monitored in real time
- the terminal When the network call signal is abnormal, the terminal sends the call data that has not been encoded to the cloud server.
- the terminal has a Wi-Fi or VOLTE (Voice over Long-Term Evolution) function;
- the terminal When an abnormality occurs in the network call signal, the terminal sends the call data that has not been encoded to the cloud server through a Wi-Fi or VOLTE data service.
- the method further comprises:
- the method further includes:
- the call data is received and played from the cloud server.
- the method further comprises:
- the terminal stores the call data when receiving the call data
- the stored call data is cleared.
- a call interrupt optimization method is applied to a cloud server, and the method includes:
- the call data is sent to the other terminal.
- a call interrupt optimization device runs in a terminal, and the device includes:
- a monitoring module configured to monitor a state of the network call signal in real time when establishing a network call between the multiple terminals
- the sending module is configured to send the call data that has not been encoded to the cloud server when the network call signal is abnormal.
- the terminal has a Wi-Fi or VOLTE (Voice over Long-Term Evolution) function;
- the sending module is further configured to send the call data that has not been encoded to the cloud server through a Wi-Fi or VOLTE data service.
- the sending module is further configured to:
- the apparatus further includes a receiving module configured to:
- the call data is received and played from the cloud server.
- the apparatus further comprises:
- a storage module configured to store the call data when receiving the call data
- a call interrupt optimization device runs in a cloud server, and the call interrupt optimization device includes:
- a receiving unit configured to receive and save unencoded call data sent by one of the two parties of the call
- a sending unit configured to send a message to another terminal of the call, to confirm whether the other terminal downloads the call data
- the sending unit is further configured to send the call data to the another terminal when it is confirmed that the another terminal needs to download the call data.
- the cloud server sends a message to the other party of the call to confirm whether the other party needs to download the call data.
- the cloud server sends the call data to the other terminal of the call. Therefore, the present invention can solve the problem that when the two parties talk, the call is interrupted due to the network signal problem, and the call is not convenient to call the other party, the call data can be downloaded from the cloud server, and the call data is optimized. The problem of intermittent calls.
- FIG. 1 is a schematic diagram of an implementation environment of a call interrupt optimization method according to the present invention.
- FIG. 2 is a flow chart of an embodiment of a call break optimization method of the present invention.
- FIG. 3 is a flow chart of another embodiment of a call disruption optimization method of the present invention.
- FIG. 5 is a functional block diagram of an embodiment of the call disruption optimization apparatus of the present invention.
- FIG. 6 is a functional block diagram of another embodiment of the call disruption optimization apparatus of the present invention.
- Fig. 7 is a schematic structural view of an embodiment of a terminal of the present invention.
- FIG. 8 is a schematic structural diagram of an embodiment of a cloud server of the present invention.
- FIG. 1 is a schematic diagram of an implementation environment of a call interrupt optimization method according to the present invention.
- the call disruption optimization method is implemented in a call disruption optimization system 100.
- the call disruption optimization system 100 includes at least a terminal 1, a terminal 2, and at least one cloud server 6.
- the terminal 1 and the terminal 2 can perform connection communication by means of Wi-Fi or VOLTE communication.
- the terminal 1 and the terminal 2 are devices capable of automatically performing numerical calculation and/or information processing according to an instruction set or stored in advance, and the hardware includes but not limited to a microprocessor and an application specific integrated circuit (ASIC). ), Field-Programmable Gate Array (FPGA), Digital Signal Processor (DSP), embedded devices, etc.
- ASIC application specific integrated circuit
- FPGA Field-Programmable Gate Array
- DSP Digital Signal Processor
- the terminal 1, 2 may be, but is not limited to, any electronic product that can interact with a user through a keyboard, a mouse, a remote controller, a touch panel or a voice control device, for example, a personal computer, a tablet computer, or a smart device.
- Mobile phones personal digital assistants (PDAs), game consoles, Internet Protocol Television (IPTV), smart wearable devices, and the like.
- PDAs personal digital assistants
- IPTV Internet Protocol Television
- smart wearable devices and the like.
- the terminals 1 and 2 have a Wi-Fi or VOLTE (Voice over Long-Term Evolution) function.
- the cloud server 6 is a virtualized server in a plurality of traditional physical machine clusters, and has the characteristics of large storage capacity, security, flexibility, configuration, hot migration, and balanced load.
- the cloud server 6 can independently provide services such as computing, storage, online backup, and the like.
- the terminal 2 establishes a call with the terminal 1 under the Wi-Fi or VOLTE data service, and the terminal 2 and the terminal 1 respectively monitor whether the call signal is abnormal in real time, such as The network is unstable or the signal is not good, resulting in intermittent calls.
- the uncoded call data is sent to the cloud server 6 via the Wi-Fi or VOLTE data service. Since the unencoded call data does not go through the radio frequency and/or network path, the call data at this time is complete.
- the cloud server 6 sends a message to the other party of the call to confirm whether the other party terminal needs to download and answer the call data.
- the cloud server sends the call data to the other terminal of the call.
- the present invention can solve the problems of intermittent, inaudible, no sound, etc. caused by network signal problems when the two parties talk, and at the same time, when inconvenient to call and consult the other party, the cloud server 6 can be downloaded.
- the call data during the intermittent call optimizes the problem of call disconnection.
- FIG. 2 it is a flowchart of an embodiment of the call discontinuity optimization method of the present invention, and the call intermittent optimization method is applied to a terminal.
- the order of the steps in the flowchart may be changed according to different requirements, and some steps may be omitted.
- the two parties of the call for example, the terminal 1 and the terminal 2, establish a network call through a Wi-Fi or VOLTE data service.
- the call state remains unchanged.
- the call data may be sent to the cloud server 6 through a Wi-Fi or VOLTE data service.
- the abnormality of the network call signal refers to a situation in which a call is interrupted, unclear, or no sound due to a network problem.
- the uncoded call disconnection data has not yet taken the radio frequency and the network path, and therefore, the call data at this time is not intermittent.
- the transmission of the uncoded call data to the cloud server is stopped.
- FIG. 3 it is a flowchart of another embodiment of the call disruption optimization method of the present invention, which is applied to the cloud server 6.
- the order of the steps in the flowchart may be changed according to different requirements, and some steps may be omitted.
- the cloud server 6 receives and saves uncoded call data sent by any one of the two parties.
- the uncoded call data is sent to the cloud server 6 by a Wi-Fi or VOTLE data service by any one of the two parties.
- the uncoded call disconnection data has not yet taken the radio frequency and the network path, and therefore, the call data at this time is not intermittent.
- the cloud server 6 sends a message to the other party of the call to confirm whether the other party downloads the call data.
- the call disconnection data is sent to the cloud server 6 through the Wi-Fi or VOLTE data service.
- the cloud server 6 sends a message to the other party of the call, such as the terminal 2, to confirm whether the terminal 2 wants to download the call disconnection data.
- the cloud server sends the call data to the other party terminal.
- FIG. 4 it is still another flowchart of an embodiment of the call interruption optimization method of the present invention.
- the call discontinuous optimization method is applied to the terminal.
- the order of the steps in the flowchart may be changed according to different requirements, and some steps may be omitted.
- the terminal receives a message sent by the cloud server 6 whether to download call data.
- any terminal of the two parties can upload the call data that has not been encoded to the cloud server 6 when the call signal is bad.
- the terminal 1 uploads the call when the call signal is bad.
- Data to the cloud server 6.
- the cloud server 6 sends a message to the other party of the call, for example, the terminal 2, whether to download the call data.
- the call data is stored together.
- the terminal may set a time period, for example, every two days or every other week, automatically clear the stored call data after a preset time period to ensure storage of the terminal. space.
- FIG. 5 it is a functional block diagram of an embodiment of the call disruption optimization apparatus of the present invention.
- the call interruption optimization device 22 of the present invention may comprise a plurality of program segments consisting of computer program code, which may be installed in the terminal and executed by the terminal to implement optimization processing during call interruption.
- the call disruption optimization device 22 shown in FIG. 5 can be divided into a plurality of functional modules according to the functions performed thereby.
- the function module at least includes: a monitoring module 221, a sending module 222, a receiving module 223, a storage module 224, and a clearing module 225.
- a module as referred to herein refers to a series of computer program segments that can be executed by a processing device (e.g., processing device 102 in FIG. 7) and that are capable of performing a fixed function, stored in a storage device (eg, the storage in FIG. 7). In device 103).
- the functions of the respective modules will be described in detail in the subsequent embodiments.
- the monitoring module 221 is configured to monitor the state of the network call signal in real time when establishing a network call between the terminals.
- the two parties of the call for example, the terminal 1 and the terminal 2, establish a network call through a Wi-Fi or VOLTE data service.
- the sending module 222 is configured to send, when the network call signal is abnormal, the call data that has not been encoded to the cloud server.
- the call state remains unchanged.
- the call data may be sent to the cloud server 6 through a Wi-Fi or VOLTE data service.
- the abnormality of the network call signal refers to a situation in which a call is interrupted, unclear, or no sound due to a network problem.
- the uncoded call disconnection data has not yet taken the radio frequency and the network path, and therefore, the call data at this time is not intermittent.
- the transmission of the uncoded call data to the cloud server is stopped.
- the receiving module 223 is configured to receive a message sent by the cloud server 6 whether to download the call data.
- any terminal of the two parties can upload the call data that has not been encoded to the cloud server 6 when the call signal is bad.
- the terminal 1 uploads the call when the call signal is bad.
- Data to the cloud server 6.
- the cloud server 6 sends a message to the other party of the call, for example, the terminal 2, whether to download the call data.
- the receiving module 223 is further configured to receive and play the call data from the cloud server 6 when it is determined that the call data needs to be downloaded.
- the storage module 224 is configured to store the call data together when downloading the call data from the cloud server 6.
- the clearing module 225 is configured to automatically clear the stored call data after a preset time period.
- the terminal may set a time period, for example, every two days or every other week, automatically clear the stored call data after a preset time period to ensure storage of the terminal. space.
- FIG. 6 is a functional block diagram of another embodiment of the call disruption optimization apparatus of the present invention.
- the call disruption optimization apparatus 12 of the present invention may include a program segment composed of a plurality of computer program codes, which may be installed in the cloud server 6 and executed by the cloud server 6.
- the call disruption optimization device 12 shown in FIG. 6 can be divided into a plurality of functional modules according to the functions performed by the call interrupting optimization device 12.
- the function module at least includes: a receiving unit 120 and a sending unit 122.
- module refers to a series of computer program segments that can be executed by a processing device (such as cloud processing device 603 in FIG. 8) and that are capable of performing fixed functions, stored in a storage device (eg, in FIG. 8 Stored in processing device 602).
- a processing device such as cloud processing device 603 in FIG. 8
- FIG. 8 Stored in processing device 602
- the functions of the respective modules will be described in detail in the subsequent embodiments.
- the receiving unit 120 is configured to receive and save uncoded call data sent by any one of the two parties.
- the uncoded call data is sent to the cloud server 6 by a Wi-Fi or VOTLE data service by any one of the two parties.
- the uncoded call disconnection data has not yet taken the radio frequency and the network path, and therefore, the call data at this time is not intermittent.
- the sending unit 122 is configured to send a message to the other party of the call, and confirm whether the other party downloads the call data.
- the call disconnection data is sent to the cloud server 6 through the Wi-Fi or VOLTE data service.
- the cloud server 6 sends a message to the other party of the call, such as the terminal 2, to confirm whether the terminal 2 wants to download the call disconnection data.
- the sending unit 122 is further configured to: when the other terminal needs to download the call data, the cloud server 6 sends the call data to the other terminal.
- FIG. 7 is a schematic structural diagram of a terminal according to an embodiment of a method for implementing a call interruption optimization according to the present invention.
- the terminal 1 in the embodiment of the present invention may be different types of electronic devices, for example, a smart phone, a tablet computer, a palmtop computer, and a mobile internet device, a personal digital assistant, a media player, a smart TV, a smart watch, smart glasses, and a smart hand. Ring and so on.
- the terminal 1 in the embodiment of the present invention includes: at least one sending device 101, at least one processing device 102, such as a CPU, at least one storage device 103, at least one receiving device 104, and at least one first communication bus 105.
- the first communication bus 105 is used to implement connection communication between these components.
- the sending device 101 and the receiving device 104 may be wired sending ports, or may be wireless devices, for example, including antenna devices for performing data communication with other devices.
- the storage device 103 may be a high speed RAM memory or a non-volatile memory such as at least one disk storage.
- the processing device 102 can execute the operating system of the terminal 1 and various installed applications, program codes, and the like, such as the call interruption optimization device 22.
- the processing device 102 can include one or more microprocessors, digital processors.
- Program code is stored in the storage device 103, and the processing device 102 can invoke program code stored in the storage device 103 through the first communication bus 105 to perform related functions.
- the call interruption optimization method of the present invention is implemented by the call interruption optimization device 22 in the terminal 1.
- the terminal 1 establishes a network call with another terminal 2 through Wi-Fi or VOLTE, and when the terminal 1 or the terminal 2 detects that the signal of the network call is abnormal, Sending the unencoded call data to the cloud server 6 via a Wi-Fi or VOLTE data service, and after the call ends, the cloud server 6 sends a message to the other party of the call to confirm whether it needs to be downloaded. Call data when the call is intermittent. When the other terminal of the call confirms that the call data when the call is disconnected needs to be downloaded, the call data is received from the cloud server.
- the terminal of any one of the calls can send the uncoded call data to the cloud server, because there is no After the constipation call data has not gone through the RF and network access, so the data at this time is not intermittent.
- the two parties end the call, either party can go to the cloud server to download and play the call content when the signal is abnormal.
- FIG. 8 it is a schematic structural diagram of a cloud server that implements an embodiment of a call interruption optimization method according to the present invention.
- the cloud server 6 in the embodiment of the present invention may be a virtual server in a plurality of traditional physical machine clusters, and has the characteristics of large storage capacity, security, flexibility, configuration, hot migration, and balanced load.
- the cloud server 6 can independently provide Internet infrastructure services such as computing, storage, online backup, and bandwidth.
- the cloud server 6 in the embodiment of the present invention includes: at least one storage processing device 602, at least one cloud processing device 603, such as a CPU, at least one second communication bus 604, and at least one network processing device 605.
- the second communication bus 604 is used to implement connection communication between these components.
- the cloud processing device 603 can execute an operating system of the cloud server 6 and various installed applications, program codes, and the like, such as the call interruption optimization device 12.
- the cloud processing device 603 can include one or more cloud processors.
- the storage processing device 602 can provide a massive amount of data storage and processing services.
- Program code is stored in the storage processing device 602, and the cloud processing device 603 can invoke program code stored in the storage processing device 602 through the second communication bus 604 to perform related functions.
- the call interruption optimization method of the present invention is implemented by the call interruption optimization device 12 in the cloud server 6.
- the call data that is not yet encoded is sent to the cloud server 6 through the Wi-Fi or VOLTE data service.
- the cloud server 6 sends a message to the call terminal to confirm whether the call terminal needs to download and play the call data, and if necessary, sends the call data to the call terminal. Since the uncoded call data does not pass through the radio frequency and network path, the call data is not intermittent.
- the above-described integrated unit implemented in the form of a software function module can be stored in a computer readable storage medium.
- the software function modules described above are stored in a storage medium and include instructions for causing a computer device (which may be a personal computer, a server, or a network device, etc.) or a processor to perform the methods of the various embodiments of the present invention. Part of the steps.
- the processing device 102 can execute an operating system in the terminal 1 and various installed applications, program codes, and the like, for example, each module described above, including the The monitoring module 221, the sending module 222, the receiving module 223, the storage module 224, the clearing module 225, and the like.
- Program code is stored in the storage device 103, and the processing device 102 can invoke program code stored in the storage device 103 to perform related functions.
- the various modules eg, the monitoring module 221, the transmitting module 222, the receiving module 223, the storage module 224, and the clearing module 225, etc.
- FIG. 5 are program codes stored in the storage device 103, and Executed by the processing device 102 to implement the functions of the various modules to enable optimization of call discontinuities.
- the storage device 103 stores a plurality of instructions that are executed by the processing device 102 to implement a method of call break optimization. Specifically, the performing, by the processing device 102, the execution of the multiple instructions includes:
- the state of the network call signal is monitored in real time; when the network call signal is abnormal, the terminal sends the call data that has not been encoded to the cloud server.
- the terminal is provided with a Wi-Fi or VOLTE (Voice over Long-Term Evolution) function; when an abnormality occurs in the network call signal, the terminal transmits the call data that has not been encoded through the Wi A -Fi or VOLTE data service is sent to the cloud server.
- Wi-Fi or VOLTE Vehicle over Long-Term Evolution
- the processing device 102 may execute the plurality of instructions to further implement: when the network call signal recovers from an abnormal state, stop sending uncoded call data to the cloud server. .
- the processing device 102 may execute the multiple instructions to further implement: after the two parties end the call, receiving a message sent by the cloud server whether to download the call data; When it is determined that a download is required, the call data is received and played from the cloud server.
- the processing device 102 may execute the multiple instructions to further implement: storing the call data when the terminal receives the call data; and after emptying the preset time period, clearing the Stored call data.
- the cloud processing device 603 can execute an operating system in the cloud server 6 and various installed applications, program codes, and the like, for example, each module described above, including The receiving unit 120, the transmitting unit 122, and the like.
- Program code is stored in the storage processing device 602, and the cloud processing device 603 can invoke program code stored in the storage processing device 602 to perform related functions.
- the respective modules for example, the receiving unit 120 and the transmitting unit 122, etc.
- FIG. 6 are program codes stored in the storage processing device 602, and are executed by the cloud processing device 603. Thereby implementing the functions of the respective modules to achieve optimization of call interruption.
- the storage processing device 602 stores a plurality of instructions that are executed by the cloud processing device 603 to implement a method of inter-talk optimization.
- the executing, by the cloud processing device 603, the multiple instructions includes: receiving and saving unencoded call data sent by one of the two parties of the call; sending the message to another terminal of the call, confirming the other Whether the terminal downloads the call data; when it is confirmed that the other terminal needs to download the call data, the call data is sent to the other terminal.
- the specific implementation method of the foregoing processing device 102 may refer to the description of the related steps in the corresponding embodiment of FIG. 2 and FIG. 4, and the specific implementation method of the foregoing processing instruction of the cloud processing device 603 may refer to FIG. The description of the relevant steps in the examples will not be repeated here.
- modules described as separate components may or may not be physically separated, and the components displayed as modules may or may not be physical units, that is, may be located in one place, or may be distributed to multiple network units. Some or all of the modules may be selected according to actual needs to achieve the purpose of the solution of the embodiment.
- each functional module in each embodiment of the present invention may be integrated into one processing unit, or each unit may exist physically separately, or two or more units may be integrated into one unit.
- the above integrated unit can be implemented in the form of hardware or in the form of hardware plus software function modules.
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Abstract
一种通话断续优化方法,应用于终端中,所述方法包括:在多个终端之间建立网络通话时,实时监测所述网络通话信号的状态;当所述网络通话信号出现异常时,所述终端将还没有编码的通话数据发送至云服务器。在通话双方结束通话后,接收所述云服务器发送的是否下载通话数据的消息;当所述终端确定需要下载时,从所述云服务器接收并播放所述通话数据。本发明还提供一种通话断续优化装置。本发明可以解决网络信号问题导致通话断续等问题,用户可以从云服务器下载通话断续时的通话数据,从而优化了通话断续的问题。
Description
本申请要求于2016年10月31日提交中国专利局,申请号为201610931619.3、发明名称为“通话断续优化方法和装置”的中国专利申请的优先权,其全部内容通过引用结合在本申请中。
本发明涉及通信技术领域,尤其涉及一种通话断续优化方法和装置。
现有智能终端,例如手机,具有Wi-Fi功能或基于IMS的语音业务(Voice over Long-Term Evolution,VOLTE)功能,在进行网络通话时,通常会遭遇网络不稳定或信号不好的情况,这种情况会导致通话断断续续,影响用户的体验。目前的解决方案是,从用户方面来说,会换一个信号好的地方继续打电话。从厂商方面来会说,会努力优化终端的天线性能。但是,就算天线性能很好,在信号覆盖差的地方也会造成通话断续;即使找到了信号好的地方通话,也会影响用户体验。
鉴于以上内容,有必要提供一种通话断续优化方法和装置,能够解决网络信号问题导致通话断续等问题,用户可以从云服务器下载通话断续时的通话数据,从而优化了通话断续的问题。
一种通话断续优化方法,应用于终端中,所述方法包括:
在多个终端之间建立网络通话时,实时监测所述网络通话信号的状态;
当所述网络通话信号出现异常时,所述终端将还没有编码的通话数据发送至云服务器。
在进一步的实施例中,所述终端具备Wi-Fi或者VOLTE(Voice over Long-Term Evolution)功能;
在所述网络通话信号出现异常时,所述终端将还没有编码的通话数据通过Wi-Fi或者VOLTE数据服务发送至所述云服务器。
在进一步的实施例中,所述方法还包括:
当所述网络通话信号由异常状态恢复良好时,停止发送没有编码的通话数据至所述云服务器。
在进一步的实施例中,在通话双方结束通话后,所述方法还包括:
接收所述云服务器发送的是否下载通话数据的消息;
当所述终端确定需要下载时,从所述云服务器接收并播放所述通话数据。
在进一步的实施例中,所述方法进一步包括:
所述终端接收所述通话数据时存储所述通话数据;及
在预设时间段之后,清空所存储的通话数据。
一种通话断续优化方法,应用于云服务器中,所述方法包括:
接收并保存通话双方中任一方终端发送的未经编码的通话数据;
发送消息至通话另一终端,确认所述另一终端是否下载所述通话数据;
当确认所述另一终端需要下载所述通话数据时,发送所述通话数据至所述另一终端。
一种通话断续优化装置,运行于终端中,所述装置包括:
监测模块,设置为在多个终端之间建立网络通话时,实时监测所述网络通话信号的状态;
发送模块,设置为当所述网络通话信号出现异常时,发送还没有编码的通话数据至云服务器。
在进一步的实施例中,所述终端具备Wi-Fi或者VOLTE(Voice over Long-Term Evolution)功能;
所述发送模块进一步设置为将还没有编码的通话数据通过Wi-Fi或者VOLTE数据服务发送至所述云服务器。
在进一步的实施例中,所述发送模块还设置为:
当所述网络通话信号由异常状态恢复良好时,停止发送没有编码的通话数据至所述云服务器。
在进一步的实施例中,所述装置还包括接收模块,设置为:
接收所述云服务器发送的是否下载通话数据的消息;及
当确定需要下载时,从所述云服务器接收并播放所述通话数据。
在进一步的实施例中,所述装置还包括:
存储模块,设置为接收所述通话数据时存储所述通话数据;
清除模块,设置为在预设时间段之后,清空所存储的通话数据。
一种通话断续优化装置,运行于云服务器中,所述通话断续优化装置包括:
接收单元,设置为接收并保存通话双方中任一方终端发送的未经编码的通话数据;
发送单元,设置为发送消息至通话另一终端,确认所述另一终端是否下载所述通话数据;
所述发送单元,还设置为当确认所述另一终端需要下载所述通话数据时,发送所述通话数据至所述另一终端。
由以上技术方案可以看出,本发明在网络信号不良时,通话双方的任何一方终端将未经编码的通话数据发送至云服务器,因为未经编码的通话数据没有经过射频和网络通路,因此数据是没有断续的。当通话双方结束通话后,所述云服务器向通话的另一方终端发送消息,确认所述另一方终端是否需要下载所述通话数据。在所述通话另一方终端确认需要下载时,所述云服务器发送所述通话数据至所述通话另一方终端。因此,本发明可以解决当双方通话时,遇到因网络信号问题导致通话断续等问题,同时不方便再打电话向对方咨询时,可以从云服务器下载通话断续时的通话数据,优化了通话断续的问题。
图1是本发明通话断续优化方法的实施环境示意图。
图2是本发明通话断续优化方法的实施例的流程图。
图3是本发明通话断续优化方法的另一实施例的流程图。
图4是本发明通话断续优化方法的又一实施例的流程图。
图5是本发明通话断续优化装置的实施例的功能模块图。
图6是本发明通话断续优化装置的另一实施例的功能模块图。
图7是本发明的终端的实施例的结构示意图。
图8是本发明的云服务器的实施例的结构示意图。
| 终端 | 1、2 |
| 云服务器 | 6 |
| 通话断续优化装置 | 22、12 |
| 监测模块 | 221 |
| 发送模块 | 222 |
| 接收模块 | 223 |
| 存储模块 | 224 |
| 清除模块 | 225 |
| 接收单元 | 120 |
| 发送单元 | 122 |
| 发送设备 | 101 |
| 处理设备 | 102 |
| 存储设备 | 103 |
| 接收设备 | 104 |
| 第一通信总线 | 105 |
| 存储处理设备 | 602 |
| 云处理设备 | 603 |
| 第二通信总线 | 604 |
| 网络处理设备 | 605 |
为了使本发明的目的、技术方案和优点更加清楚,下面将结合附图和具体实施例,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的一部分实施例,而不是全部的实施例。此外,应当理解,本文所描述的具体实施例,仅用以解释本发明,并不用于限定本发明。
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的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。
实施例一
如图1所示,是本发明通话断续优化方法的实施环境示意图。
本发明较佳实施例中,所述通话断续优化方法在一个通话断续优化系统100中实施。所述通话断续优化系统100包括至少终端1、终端2,至少一个云服务器6。所述终端1、终端2可以通过Wi-Fi或者VOLTE的通信方式进行连接通信。
所述终端1以及终端2是能够按照事先设定或存储的指令,自动进行数值计算和/或信息处理的设备,其硬件包括但不限于微处理器、专用集成电路(Application Specific Integrated Circuit,ASIC)、可编程门阵列(Field-Programmable Gate Array,FPGA)、数字处理器(Digital Signal Processor,DSP)、嵌入式设备等。
所述终端1、2可以是,但不限于任何一种可与用户通过键盘、鼠标、遥控器、触摸板或声控设备等方式进行人机交互的电子产品,例如,个人计算机、平板电脑、智能手机、个人数字助理(Personal Digital Assistant,PDA)、游戏机、交互式网络电视(Internet Protocol Television,IPTV)、智能穿戴式设备等。
所述终端1、2具备Wi-Fi或者VOLTE(Voice over Long-Term Evolution)功能。
所述云服务器6是在多台传统物理机集群虚拟出来的服务器,具有存储量大,安全,能弹性所需配置,热迁移,均衡负载等特点。所述云服务器6可独立提供计算、存储、在线备份等服务。
在本发明的一个实施例中,所述终端2与所述终端1在Wi-Fi或者VOLTE数据服务下建立通话,所述终端2和所述终端1分别实时监测所述通话信号是否异常,比如网络不稳定或信号不好,从而造成通话断续。当任何通话一方监测到信号异常时,就将还未经编码的通话数据通过Wi-Fi或者VOLTE数据服务发送至云服务器6。因为未经编码的通话数据还没有走射频及/或网络通路,因此此时的通话数据是完整的。当通话双方打完电话后,所述云服务器6向通话的另一方终端发送消息,确认所述另一方终端是否需要下载接听所述通话数据。在所述通话另一方终端确认需要下载时,所述云服务器发送所述通话数据至所述通话另一方终端。
因此,本发明可以解决当双方通话时,遇到因网络信号问题导致的断续、听不清、无声音等问题,同时不方便再打电话向对方咨询时,可以从所述云服务器6下载通话断续时的通话数据,优化了通话断续的问题。
实施例二
如图2所示,是本发明通话断续优化方法的实施例的流程图,该通话断续优化方法应用于终端中。根据不同的需求,该流程图中步骤的顺序可以改变,某些步骤可以省略。
S10,多个终端之间建立网络通话时,通话双方终端实时监测网络通话信号的状态。
在本发明的一个实施例中,所述通话双方终端,例如所述终端1和所述终端2,双方通过Wi-Fi或者VOLTE数据服务建立网络通话。
S12,当所述终端1及/或所述终端2监测到所述网络通话信号出现异常时,将还没有编码的通话数据发送至所述云服务器。
在本发明的一个实施例中,当所述终端1及/或所述终端2没有监测到所述网络通话信号出现异常时,保持通话状态不变。
在本发明的一个实施例中,通话的任何一方监测到通话信号出现异常时,均可以将所述通话数据通过Wi-Fi或者VOLTE数据服务发送至所述云服务器6。
在本发明的一个实施例中,所述网络通话信号出现异常是指出现了因网络问题导致通话断续、听不清楚或者无声音等情况。
在本发明的一个实施例中,未经编码的通话断续数据还没有走射频及网络通路,因此,这个时候的通话数据是没有断续的。
在本发明的其他实施例中,当所述网络通话信号由异常状态恢复良好时,停止发送没有编码的通话数据至所述云服务器。
实施例三
如图3所示,是本发明通话断续优化方法的另一实施例的流程图,该通话断续优化方法应用于云服务器6中。根据不同的需求,该流程图中步骤的顺序可以改变,某些步骤可以省略。
S20,所述云服务器6接收并保存通话双方中任一方终端发送的未经编码的通话数据。
在本发明的一个实施例中,所述未经编码的通话数据是由所述通话双方中任一方终端通过Wi-Fi或者VOTLE数据服务发送至所述云服务器6。
在本发明的一个实施例中,未经编码的通话断续数据还没有走射频及网络通路,因此,这个时候的通话数据是没有断续的。
S22,所述云服务器6发送消息至通话另一方终端,确认所述另一方终端是否下载所述通话数据。
在本发明的一个实施例中,当通话任一方,比如终端1,监测到网络通话信号出现异常时,即将所述通话断续数据通过Wi-Fi或者VOLTE数据服务发送至所述述云服务器6。当双方通话结束后,所述云服务器6向通话另一方,比如终端2,发送消息以确认所述终端2是否要下载所述通话断续数据。
S24,当确认所述另一方终端需要下载所述通话数据时,所述云服务器发送所述通话数据至所述另一方终端。
实施例四
如图4所示,是本发明通话断续优化方法的实施例的又一个流程图。该通话断续优化方法应用于终端中。根据不同的需求,该流程图中步骤的顺序可以改变,某些步骤可以省略。
S30,所述终端接收所述云服务器6发送的是否下载通话数据的消息。
在本发明的一个实施例中,通话双方的任一终端均可以在通话信号不良时,将还没有编码的通话数据上传到云服务器6,例如,所述终端1在通话信号不良时,上传通话数据至所述云服务器6。在通话完毕时,所述云服务器6会向通话的另一方,例如所述终端2,发送是否下载接听所述通话数据的消息。
S32,当所述终端确定需要下载所述通话数据时,从所述云服务器接收并播放所述通话数据。
在本发明的一个实施例中,在所述终端下载所述通话数据时,一并存储所述通话数据。
在本发明的一个实施例中,所述终端可以设置一个时间段,比如,每隔两天或者每隔一周,在预设时间段之后自动清空所存储的通话数据,以保证所述终端的存储空间。
如图5所示,是本发明通话断续优化装置的实施例的功能模块图。
本发明所述通话断续优化装置22可以包括多个由计算机程序代码所组成的程序段,可以安装在所述终端中,并由所述终端所执行,以实现通话断续时的优化处理。
本实施例中,图5所示的通话断续优化装置22根据其执行的功能,可以被划分为多个功能模块。本实施例中,所述功能模块至少包括:监测模块221,发送模块222,接收模块223,存储模块224,清除模块225。本发明所称的模块是指一种能够被处理设备(例如图7中的处理设备102)所执行并且能够完成固定功能的一系列计算机程序段,其存储在存储设备(例如图7中的存储设备103)中。在本实施例中,关于各模块的功能将在后续的实施例中详述。
所述监测模块221,设置为在所述终端之间建立网络通话时,实时监测所述网络通话信号的状态。
在本发明的一个实施例中,所述通话双方终端,例如所述终端1和所述终端2,双方通过Wi-Fi或者VOLTE数据服务建立网络通话。
所述发送模块222,设置为当监测到所述网络通话信号出现异常时,将还没有编码的通话数据发送至所述云服务器。
在本发明的一个实施例中,当所述终端1及/或所述终端2没有监测到所述网络通话信号出现异常时,保持通话状态不变。
在本发明的一个实施例中,通话的任何一方监测到通话信号出现异常时,均可以将所述通话数据通过Wi-Fi或者VOLTE数据服务发送至所述云服务器6。
在本发明的一个实施例中,所述网络通话信号出现异常是指出现了因网络问题导致通话断续、听不清楚或者无声音等情况。
在本发明的一个实施例中,未经编码的通话断续数据还没有走射频及网络通路,因此,这个时候的通话数据是没有断续的。
在本发明的其他实施例中,当所述网络通话信号由异常状态恢复良好时,停止发送没有编码的通话数据至所述云服务器。
所述接收模块223,设置为接收所述云服务器6发送的是否下载通话数据的消息。
在本发明的一个实施例中,通话双方的任一终端均可以在通话信号不良时,将还没有编码的通话数据上传到云服务器6,例如,所述终端1在通话信号不良时,上传通话数据至所述云服务器6。在通话完毕时,所述云服务器6会向通话的另一方,例如所述终端2,发送是否下载接听所述通话数据的消息。
所述接收模块223,还设置为当确定需要下载所述通话数据时,从所述云服务器6接收并播放所述通话数据。
所述存储模块224,设置为在从所述云服务器6下载所述通话数据时,一并存储所述通话数据。
所述清除模块225,设置为在预设时间段之后自动清空所存储的通话数据。
在本发明的一个实施例中,所述终端可以设置一个时间段,比如,每隔两天或者每隔一周,在预设时间段之后自动清空所存储的通话数据,以保证所述终端的存储空间。
实施例六
如图6所示,是本发明通话断续优化装置的另一实施例的功能模块图。
本发明所述通话断续优化装置12可以包括多个计算机程序代码所组成的程序段,可以安装在所述云服务器6中,并由所述云服务器6所执行。
本实施例中,图6所示的通话断续优化装置12根据其所执行的功能,可以被划分为多个功能模块。本实施例中,所述功能模块至少包括:接收单元120,发送单元122。本发明所称的模块是指一种能够被处理设备(例如图8中的云处理设备603)所执行并且能够完成固定功能的一系列计算机程序段,其存储在存储设备(例如图8中的存储处理设备602)中。在本实施例中,关于各模块的功能将在后续的实施例中详述。
所述接收单元120,设置为接收并保存通话双方中任一方终端发送的未经编码的通话数据。
在本发明的一个实施例中,所述未经编码的通话数据是由所述通话双方中任一方终端通过Wi-Fi或者VOTLE数据服务发送至所述云服务器6。
在本发明的一个实施例中,未经编码的通话断续数据还没有走射频及网络通路,因此,这个时候的通话数据是没有断续的。
所述发送单元122,设置为发送消息至通话另一方终端,确认所述另一方终端是否下载所述通话数据。
在本发明的一个实施例中,当通话任一方,比如终端1,监测到网络通话信号出现异常时,即将所述通话断续数据通过Wi-Fi或者VOLTE数据服务发送至所述述云服务器6。当双方通话结束后,所述云服务器6向通话另一方,比如终端2,发送消息以确认所述终端2是否要下载所述通话断续数据。
所述发送单元122,还设置为当确认所述另一方终端需要下载所述通话数据时,所述云服务器6发送所述通话数据至所述另一方终端。
实施例七
如图7所示,是本发明实现通话断续优化方法的实施例的终端的结构示意图。
本发明实施例中的终端1可以是不同类型的电子设备,例如,智能手机、平板电脑、掌上电脑以及移动互联网设备、个人数字助理、媒体播放器、智能电视、智能手表、智能眼镜、智能手环等。如图7所示,本发明实施例中的终端1包括:至少一个发送设备101,至少一个处理设备102,例如CPU,至少一个存储设备103,至少一个接收设备104,至少一个第一通信总线105。其中,所述第一通信总线105用于实现这些组件之间的连接通信。所述发送设备101和所述接收设备104可以是有线发送端口,也可以为无线设备,例如包括天线装置,用于与其他设备进行数据通信。所述存储设备103可以是高速RAM存储器,也可以是非易失性存储器(non-volatile memory),例如至少一个磁盘存储器。
所述处理设备102可执行所述终端1的操作系统以及安装的各类应用程序、程序代码等,例如通话断续优化装置22。所述处理设备102可以包括一个或者多个微处理器、数字处理器。
所述存储设备103中存储有程序代码,且所述处理设备102可通过第一通信总线105调用所述存储设备103中存储的程序代码以执行相关的功能。
优选地,本发明的通话断续优化方法通过所述终端1中的通话断续优化装置22来实现。
在本发明的一个实施例中,所述终端1通过Wi-Fi或者VOLTE与另一个终端2建立网络通话,当所述终端1或者所述终端2监测到所述网络通话的信号出现异常时,将所述未经编码的通话数据通过Wi-Fi或者VOLTE数据服务发送至所述云服务器6保存,并在通话结束后,由所述云服务器6向通话的另一方终端发送消息确认是否需要下载通话断续时的通话数据。当所述通话的另一方终端确认需要下载所述通话断续时的通话数据时,就从所述云服务器接收所述通话数据。
本发明在网络通话信号出现异常时,例如通话断续、没有声音、听不清等状况,所述通话任一方的终端,均可以将未经编码的通话数据发送至所述云服务器,因为没有经过便秘的通话数据还没有走射频及网络通路,所以这个时候的数据是没有断续的。当双方通话结束时,通话任一方均可以至云服务器下载及播放信号异常时的通话内容。
实施例八
如图8所示,是本发明实现通话断续优化方法的实施例的云服务器的结构示意图。
本发明实施例中的云服务器6可以是在多台传统物理机集群虚拟出来的服务器,具有存储量大,安全,能弹性所需配置,热迁移,均衡负载等特点。所述云服务器6可独立提供计算、存储、在线备份、带宽等互联网基础设施服务。
如图8所示,本发明实施例中的云服务器6包括:至少一个存储处理设备602,至少一个云处理设备603,例如CPU,至少一个第二通信总线604,至少一个网络处理设备605。其中,所述第二通信总线604用于实现这些组件之间的连接通信。
所述云处理设备603可执行所述云服务器6的操作系统以及安装的各类应用程序、程序代码等,例如通话断续优化装置12。所述云处理设备603可以包括一个或者多个云处理器。
所述存储处理设备602可以提供海量的数据存储和处理服务。所述存储处理设备602中存储有程序代码,且所述云处理设备603可通过第二通信总线604调用所述存储处理设备602中存储的程序代码以执行相关的功能。
优选地,本发明的通话断续优化方法通过所述云服务器6中的通话断续优化装置12来实现。
在本发明的一个实施例中,当通话双方任一终端监测到通话网络信号状态异常时,即将还未经编码的通话数据通过Wi-Fi或者VOLTE数据服务发送至所述云服务器6,所述云服务器6在双方通话结束后,发送消息至通话终端,确认通话终端是否需要下载播放所述通话数据,如果确认需要,则将所述通话数据发送至所述通话终端。因为未经编码的通话数据没有经过射频及网络通路,所以所述的通话数据是没有断续的。
上述以软件功能模块的形式实现的集成单元,可以存储在一个计算机可读取存储介质中。上述软件功能模块存储在一个存储介质中,包括若干指令用以使得一台计算机设备(可以是个人计算机,服务器,或者网络设备等)或处理器(processor)执行本发明各个实施例所述方法的部分步骤。
结合图7,在本发明的一个实施例中,所述处理设备102可执行所述终端1中的操作系统以及安装的各类应用程序、程序代码等,例如,上述的各个模块,包括所述监测模块221、发送模块222、接收模块223、存储模块224及清除模块225等。
所述存储设备103中存储有程序代码,且所述处理设备102可调用所述存储设备103中存储的程序代码以执行相关的功能。例如,图5中所述的各个模块(例如,所述监测模块221、发送模块222、接收模块223、存储模块224及清除模块225等)是存储在所述存储设备103中的程序代码,并由所述处理设备102所执行,从而实现所述各个模块的功能以实现通话断续的优化。
在本发明的一个实施例中,所述存储设备103存储多个指令,所述多个指令被所述处理设备102所执行以实现通话断续的优化的方法。具体而言,所述处理设备102对所述多个指令的执行包括:
在多个终端之间建立网络通话时,实时监测所述网络通话信号的状态;当所述网络通话信号出现异常时,所述终端将还没有编码的通话数据发送至云服务器。
在本发明的一个实施例中,所述终端具备Wi-Fi或者VOLTE(Voice over Long-Term Evolution)功能;在所述网络通话信号出现异常时,所述终端将还没有编码的通话数据通过Wi-Fi或者VOLTE数据服务发送至所述云服务器。
在本发明的一个实施例中,所述处理设备102可执行所述多个指令从而进一步实现:当所述网络通话信号由异常状态恢复良好时,停止发送没有编码的通话数据至所述云服务器。
在本发明的一个实施例中,所述处理设备102可执行所述多个指令从而进一步实现:在通话双方结束通话后,接收所述云服务器发送的是否下载通话数据的消息;当所述终端确定需要下载时,从所述云服务器接收并播放所述通话数据。
在本发明的一个实施例中,所述处理设备102可执行所述多个指令从而进一步实现:所述终端接收所述通话数据时存储所述通话数据;及在预设时间段之后,清空所存储的通话数据。
结合图8,在本发明的一个实施例中,所述云处理设备603可执行所述云服务器6中的操作系统以及安装的各类应用程序、程序代码等,例如,上述的各个模块,包括所述接收单元120及所述发送单元122等。
所述存储处理设备602中存储有程序代码,且所述云处理设备603可调用所述存储处理设备602中存储的程序代码以执行相关的功能。例如,图6中所述的各个模块(例如,所述接收单元120及所述发送单元122等)是存储在所述存储处理设备602中的程序代码,并由所述云处理设备603所执行,从而实现所述各个模块的功能以实现通话断续的优化。
在本发明的一个实施例中,所述存储处理设备602存储多个指令,所述多个指令被所述云处理设备603所执行以实现通话断续的优化的方法。具体而言,所述云处理设备603对所述多个指令的执行包括:接收并保存通话双方中任一方终端发送的未经编码的通话数据;发送消息至通话另一终端,确认所述另一终端是否下载所述通话数据;当确认所述另一终端需要下载所述通话数据时,发送所述通话数据至所述另一终端。
具体地,所述处理设备102对上述指令的具体实现方法可参考图2及图4对应实施例中相关步骤的描述,所述云处理设备603对上述指令的具体实现方法可参考图3对应实施例中相关步骤的描述,在此不赘述。
在本发明所提供的几个实施例中,应该理解到,所揭露的系统,装置和方法,可以通过其它的方式实现。例如,以上所描述的装置实施例仅仅是示意性的,例如,所述模块的划分,仅仅为一种逻辑功能划分,实际实现时可以有另外的划分方式。
所述作为分离部件说明的模块可以是或者也可以不是物理上分开的,作为模块显示的部件可以是或者也可以不是物理单元,即可以位于一个地方,或者也可以分布到多个网络单元上。可以根据实际的需要选择其中的部分或者全部模块来实现本实施例方案的目的。
另外,在本发明各个实施例中的各功能模块可以集成在一个处理单元中,也可以是各个单元单独物理存在,也可以两个或两个以上单元集成在一个单元中。上述集成的单元既可以采用硬件的形式实现,也可以采用硬件加软件功能模块的形式实现。
对于本领域技术人员而言,显然本发明不限于上述示范性实施例的细节,而且在不背离本发明的精神或基本特征的情况下,能够以其他的具体形式实现本发明。因此,无论从哪一点来看,均应将实施例看作是示范性的,而且是非限制性的,本发明的范围由所附权利要求而不是上述说明限定,因此旨在将落在权利要求的等同要件的含义和范围内的所有变化涵括在本发明内。不应将权利要求中的任何附关联图标记视为限制所涉及的权利要求。此外,显然“包括”一词不排除其他单元或步骤,单数不排除复数。系统权利要求中陈述的多个模块或装置也可以由一个模块或装置通过软件或者硬件来实现。第一,第二等词语用来表示名称,而并不表示任何特定的顺序。
最后应说明的是,以上实施例仅用以说明本发明的技术方案而非限制,尽管参照较佳实施例对本发明进行了详细说明,本领域的普通技术人员应当理解,可以对本发明的技术方案进行修改或等同替换,而不脱离本发明技术方案的精神和范围。
Claims (12)
- 一种通话断续优化方法,应用于终端中,其特征在于,所述方法包括:在多个终端之间建立网络通话时,实时监测所述网络通话信号的状态;当所述网络通话信号出现异常时,所述终端将还没有编码的通话数据发送至云服务器。
- 如权利要求1所述的通话断续优化方法,其特征在于,所述终端具备Wi-Fi或者VOLTE(Voice over Long-Term Evolution)功能;在所述网络通话信号出现异常时,所述终端将还没有编码的通话数据通过Wi-Fi或者VOLTE数据服务发送至所述云服务器。
- 如权利要求1所述的通话断续优化方法,其特征在于,所述方法还包括:当所述网络通话信号由异常状态恢复良好时,停止发送没有编码的通话数据至所述云服务器。
- 如权利要求1所述的通话断续优化方法,其特征在于,在通话双方结束通话后,所述方法还包括:接收所述云服务器发送的是否下载通话数据的消息;当所述终端确定需要下载时,从所述云服务器接收并播放所述通话数据。
- 如权利要求4所述的通话断续优化方法,其特征在于,所述方法进一步包括:所述终端接收所述通话数据时存储所述通话数据;及在预设时间段之后,清空所存储的通话数据。
- 一种通话断续优化方法,应用于云服务器中,其特征在于,所述方法包括:接收并保存通话双方中任一方终端发送的未经编码的通话数据;发送消息至通话另一终端,确认所述另一终端是否下载所述通话数据;当确认所述另一终端需要下载所述通话数据时,发送所述通话数据至所述另一终端。
- 一种通话断续优化装置,运行于终端中,其特征在于,所述装置包括:监测模块,设置为在多个终端之间建立网络通话时,实时监测所述网络通话信号的状态;发送模块,设置为当所述网络通话信号出现异常时,发送还没有编码的通话数据至云服务器。
- 如权利要求7所述的通话断续优化装置,其特征在于,所述终端具备Wi-Fi或者VOLTE(Voice over Long-Term Evolution)功能;所述发送模块进一步设置为将还没有编码的通话数据通过Wi-Fi或者VOLTE数据服务发送至所述云服务器。
- 如权利要求7所述的通话断续优化装置,其特征在于,所述发送模块还设置为:当所述网络通话信号由异常状态恢复良好时,停止发送没有编码的通话数据至所述云服务器。
- 如权利要求7所述的通话断续优化装置,其特征在于,所述装置还包括接收模块,设置为:接收所述云服务器发送的是否下载通话数据的消息;及当确定需要下载时,从所述云服务器接收并播放所述通话数据。
- 如权利要求10所述的通话断续优化装置,其特征在于,所述装置还包括:存储模块,设置为接收所述通话数据时存储所述通话数据;清除模块,设置为在预设时间段之后,清空所存储的通话数据。
- 一种通话断续优化装置,运行于云服务器中,其特征在于,所述通话断续优化装置包括:接收单元,设置为接收并保存通话双方中任一方终端发送的未经编码的通话数据;发送单元,设置为发送消息至通话另一终端,确认所述另一终端是否下载所述通话数据;所述发送单元,还设置为当确认所述另一终端需要下载所述通话数据时,发送所述通话数据至所述另一终端。
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Citations (6)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| JP2005020311A (ja) * | 2003-06-25 | 2005-01-20 | Ntt Docomo Inc | 移動局 |
| CN101873180A (zh) * | 2010-06-09 | 2010-10-27 | 华为终端有限公司 | 一种自动保存语音的方法及终端 |
| CN104601814A (zh) * | 2015-01-09 | 2015-05-06 | 广东小天才科技有限公司 | 一种通话异常的处理方法及系统 |
| CN104683960A (zh) * | 2013-11-27 | 2015-06-03 | 中兴通讯股份有限公司 | 一种实现语音通话的方法及装置 |
| CN104836878A (zh) * | 2015-05-20 | 2015-08-12 | 三星电子(中国)研发中心 | 在通话过程中输出提示的方法、装置及系统 |
| CN106027745A (zh) * | 2016-06-16 | 2016-10-12 | 珠海市魅族科技有限公司 | 通话语音的处理方法与装置 |
-
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Patent Citations (6)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| JP2005020311A (ja) * | 2003-06-25 | 2005-01-20 | Ntt Docomo Inc | 移動局 |
| CN101873180A (zh) * | 2010-06-09 | 2010-10-27 | 华为终端有限公司 | 一种自动保存语音的方法及终端 |
| CN104683960A (zh) * | 2013-11-27 | 2015-06-03 | 中兴通讯股份有限公司 | 一种实现语音通话的方法及装置 |
| CN104601814A (zh) * | 2015-01-09 | 2015-05-06 | 广东小天才科技有限公司 | 一种通话异常的处理方法及系统 |
| CN104836878A (zh) * | 2015-05-20 | 2015-08-12 | 三星电子(中国)研发中心 | 在通话过程中输出提示的方法、装置及系统 |
| CN106027745A (zh) * | 2016-06-16 | 2016-10-12 | 珠海市魅族科技有限公司 | 通话语音的处理方法与装置 |
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