WO2016161756A1 - 一种呼叫转移的方法、装置和*** - Google Patents

一种呼叫转移的方法、装置和*** Download PDF

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Publication number
WO2016161756A1
WO2016161756A1 PCT/CN2015/089132 CN2015089132W WO2016161756A1 WO 2016161756 A1 WO2016161756 A1 WO 2016161756A1 CN 2015089132 W CN2015089132 W CN 2015089132W WO 2016161756 A1 WO2016161756 A1 WO 2016161756A1
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Prior art keywords
call forwarding
wireless terminal
charging
transmission signal
call
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PCT/CN2015/089132
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English (en)
French (fr)
Inventor
赵阳
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中兴通讯股份有限公司
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Application filed by 中兴通讯股份有限公司 filed Critical 中兴通讯股份有限公司
Publication of WO2016161756A1 publication Critical patent/WO2016161756A1/zh

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W4/00Services specially adapted for wireless communication networks; Facilities therefor
    • H04W4/16Communication-related supplementary services, e.g. call-transfer or call-hold

Definitions

  • the present invention relates to wireless terminal technologies, and in particular, to a call forwarding method, apparatus and system.
  • the call forwarding function of the wireless terminal has become one of the functions commonly used by users.
  • the possibility of missed calls can be reduced, and functions such as preventing interference can be realized.
  • embodiments of the present invention are expected to provide a method, apparatus, and system for call forwarding, which can simply implement a call forwarding function when a wireless terminal is charging, and also avoid setting errors of call forwarding.
  • an embodiment of the present invention provides a method for call forwarding, where the method is applied to a wireless terminal, and the method includes:
  • the receiving is sent by the charging device
  • the transmission signal carrying the call forwarding number
  • the wireless terminal decodes the received transmission signal, and acquires a call forwarding number carried by the transmission signal;
  • the wireless terminal transmits call forwarding setting signaling to the network side, and the call forwarding setting signaling is used to transfer a call initiated to the wireless terminal to the call forwarding number.
  • the method further includes:
  • the wireless terminal When the charging of the wireless terminal ends, the wireless terminal sends a call transfer stop signaling to the network side, and the call transfer stop signaling is used to cancel the call transfer that is successfully set.
  • the transmission signal carrying the call forwarding number includes:
  • a sound wave signal having a correspondence relationship between the acoustic wave characteristics and the number value.
  • the method further includes:
  • the wireless terminal receives the call forwarding setup success signaling returned by the network side; and sets its own working mode to the flight mode.
  • an embodiment of the present invention provides a method for call forwarding, where the method is applied to a charging device, and the method includes:
  • the charging device After detecting that the wireless terminal is inserted, the charging device carries the call forwarding number in the transmission signal;
  • the charging device transmits the transmission signal to the wireless terminal, and the transmission signal is used by the wireless terminal to decode and acquire the call forwarding number.
  • the transmitting signal includes:
  • a sound wave signal having a correspondence relationship between the acoustic wave characteristics and the number value.
  • an embodiment of the present invention provides a wireless terminal, where the wireless terminal includes: a first detecting unit, a receiving unit, a decoding unit, and a sending unit, where
  • the first detecting unit is configured to trigger the receiving unit after detecting the insertion of the charging device
  • the receiving unit is configured to receive a transmission signal that is sent by the charging device and carries a call forwarding number
  • the decoding unit is configured to decode a transmission signal received by the receiving unit, and acquire a call forwarding number carried by the transmission signal;
  • the sending unit is configured to send call forwarding setting signaling to the network side, where the call forwarding setting signaling is used to transfer a call initiated to the wireless terminal to the call forwarding number.
  • the first detecting unit is further configured to detect that the wireless terminal is charging end, and trigger the sending unit after detecting that the charging of the wireless terminal ends;
  • the sending unit is further configured to send a call transfer stop signaling to the network side, where the call transfer stop signaling is used to cancel the call forwarding that is successfully set.
  • the transmission signal carrying the call forwarding number includes:
  • a sound wave signal having a correspondence relationship between the acoustic wave characteristics and the number value.
  • the receiving unit is further configured to receive the call forwarding setup success signaling returned by the network side;
  • the wireless terminal also includes a setting unit configured to set its own operating mode to an airplane mode.
  • the first detecting unit, the receiving unit, the decoding unit, the sending unit, and the setting unit may adopt a central processing unit (CPU, Central Processing) when performing processing. Unit), Digital Signal Processor (DSP, Digital Singnal Processor) or Field-Programmable Gate Array (FPGA).
  • CPU Central Processing
  • DSP Digital Signal Processor
  • FPGA Field-Programmable Gate Array
  • an embodiment of the present invention provides a charging device, where the charging device includes a second detecting unit, a carrying unit, and a sending unit, where
  • the second detecting unit is configured to trigger the bearer unit after detecting that the wireless terminal is inserted;
  • the bearer unit is configured to carry the call forwarding number in the transmission signal
  • the sending unit is configured to send the transmission signal to the wireless terminal, where the transmission signal is used by the wireless terminal to decode and acquire the call forwarding number.
  • the transmitting signal includes:
  • a sound wave signal having a correspondence relationship between the acoustic wave characteristics and the number value.
  • the second detecting unit, the carrying unit, and the sending unit may use a central processing unit (CPU), a digital signal processor (DSP), or a programmable logic array when performing processing. (FPGA, Field-Programmable Gate Array) implementation.
  • CPU central processing unit
  • DSP digital signal processor
  • FPGA Field-Programmable Gate Array
  • an embodiment of the present invention provides a call forwarding system, where the system includes: a wireless terminal and a charging device, where
  • the wireless terminal is configured to receive, after detecting the insertion of the charging device, a transmission signal that is sent by the charging device and carries a call forwarding number;
  • the charging device is configured to carry the call forwarding number in the transmission signal after detecting that the wireless terminal is inserted;
  • Transmitting the transmission signal to the wireless terminal the transmission signal being used by the wireless terminal to decode and acquire the call forwarding number.
  • Embodiments of the present invention provide a method, apparatus, and system for call forwarding; when charging, a wireless terminal receives a preset call forwarding number transmitted by a charger with a predetermined electrical signal as a carrier, and then according to the received call Transfer the number for call forwarding settings. Therefore, not only the call forwarding function when the wireless terminal is charged but also the call forwarding setting error can be avoided.
  • FIG. 1 is a schematic diagram of an application scenario of call forwarding according to an embodiment of the present disclosure
  • FIG. 2 is a schematic flowchart of a method for call forwarding according to an embodiment of the present invention
  • FIG. 3 is a schematic flowchart of another method for call forwarding according to an embodiment of the present invention.
  • FIG. 4 is a schematic diagram of a specific process of call forwarding according to an embodiment of the present invention.
  • FIG. 5 is a schematic structural diagram of a wireless terminal according to an embodiment of the present disclosure.
  • FIG. 6 is a schematic structural diagram of another wireless terminal according to an embodiment of the present disclosure.
  • FIG. 7 is a schematic structural diagram of a charging device according to an embodiment of the present disclosure.
  • FIG. 8 is a schematic structural diagram of a system for call forwarding according to an embodiment of the present invention.
  • FIG. 1 an application scenario of a call forwarding according to an embodiment of the present invention is shown.
  • a charging device 1 and a wireless terminal 2 are included.
  • the basic idea of the embodiment of the present invention is: when the charging device 1 detects When the wireless terminal 2 makes a connection, the charging device 1 will transfer the number of the call.
  • the information is carried in the electrical signal transmitted to the wireless terminal 2, so that the wireless terminal 2 acquires the number of the call forwarding by detecting the electrical signal, and performs call forwarding setting according to the number of the call forwarding.
  • the method can be applied to a wireless terminal, and the wireless terminal can be a smart phone or a laptop.
  • An electronic device that can be used for making a call such as a tablet computer or a personal digital assistant (PDA).
  • the method can include:
  • the wireless terminal After detecting the insertion of the charging device, the wireless terminal receives the transmission signal that is sent by the charging device and carries the call forwarding number;
  • the charging device may be a device and device capable of charging the wireless terminal, such as a car phone system or a charger.
  • the transmission signal that is sent by the charging device and carries the call forwarding number may include at least:
  • a sound wave signal having a correspondence relationship between the acoustic wave characteristics and the number value.
  • the transmission signal carrying the call forwarding number is a charging electrical signal having a corresponding relationship between the current intensity of the charging and the number value
  • the correspondence between the current intensity and the number value may be: 0.1 amp A represents 1, 0.2A stands for 2, 0.3A stands for 3, 0.4A stands for 4, 0.5A stands for 5, 0.6A stands for 6, 0.7A stands for 7, 0.8A stands for 8, 0.9A stands for 9, and 1.0A stands for 0.
  • the call transfer number is 13912345, for example, the transmission signals are: 0.1A, 0.3A, 0.9A, 0.1A, 0.2A, 0.3A, 0.4A, 0.5A.
  • the transmission signal carrying the call forwarding number is a charging electric signal having a correspondence relationship between the charging voltage and the number value or an acoustic wave signal having a corresponding relationship between the acoustic wave characteristic and the number value
  • the charging voltage and the number value The correspondence between the correspondence or the characteristics of the acoustic wave and the value of the number can be compared with the above-mentioned current intensity and number value. The corresponding relationship between the two is similar, and the embodiment is not described in detail herein.
  • S202 The wireless terminal decodes the received transmission signal, and acquires a call forwarding number carried by the transmission signal.
  • the wireless terminal can decode the transmission signal, so as to obtain the call forwarding number carried in the transmission signal, taking the transmission signal specifically received by the wireless terminal in step S201 as an example, wireless.
  • the terminal can decode the charging electrical signal as the transmission signal according to the correspondence between the current intensity and the number value described above, thereby obtaining the call forwarding number of 13912345.
  • S203 The wireless terminal sends call forwarding setting signaling to the network side, where the call forwarding setting signaling is used to transfer a call initiated to the wireless terminal to the call forwarding number.
  • the wireless terminal after acquiring the call forwarding number, the wireless terminal sends the call forwarding setting signaling to the server on the network side through an air interface in a format specified by the protocol, such as “**21*call forwarding number#”, so that the wireless access occurs later.
  • the network side can transfer the call event to the call forwarding number.
  • the wireless terminal may set its own working mode to the flight mode, it being understood that when the wireless terminal is in flight In the mode, the wireless terminal turns off a lot of function modules during standby, which reduces the power consumption of the wireless terminal during charging. Therefore, charging the wireless terminal in the flight mode can speed up the charging.
  • the method may further include:
  • the wireless terminal transmits a call transfer stop signaling to the network side, and the call transfer stop signaling is used to cancel the call transfer successfully set by steps S201 to S203.
  • the wireless terminal when the wireless terminal is fully charged or the wireless terminal is removed from the charging device, it indicates that the charging of the wireless terminal ends. At this time, the wireless terminal sends a call transfer stop signaling to the network side, and the specific format may be “##21#”.
  • the wireless terminal receives the network side confirmation, it indicates that the call forwarding successfully set by steps S201 to S203 is successfully canceled, so that the situation of forgetting to cancel the call forwarding setting due to the manual operation can be avoided.
  • the wireless terminal can convert its mode from the flight mode to the normal working mode or to the working mode before charging.
  • Embodiments of the present invention provide a call forwarding method.
  • a wireless terminal When a wireless terminal performs charging, it receives a preset call forwarding number transmitted by a charger with a predetermined electrical signal as a carrier, and then performs a call according to the received call forwarding number. Transfer settings. Therefore, not only the call forwarding function when the wireless terminal is charged but also the call forwarding setting error can be avoided.
  • FIG. 3 another method for call forwarding according to an embodiment of the present invention is shown.
  • the method can be applied to the side of the charging device.
  • the charging device can be a car phone system, a charger, etc.
  • a device and device for charging a wireless terminal, the method may include:
  • the charging device After detecting that the wireless terminal is inserted, the charging device carries the call forwarding number in the transmission signal;
  • the transmitting signal may include:
  • a sound wave signal having a correspondence relationship between the acoustic wave characteristics and the number value.
  • the charging device detects that there is a current loop on the charging line, it can be determined that the wireless terminal is inserted into the charging device. After the charging device detects that the wireless terminal is inserted, the call forwarding number may be carried in the transmission signal according to the above correspondence.
  • the charging device sends a transmission signal to the wireless terminal.
  • the transmission signal can be used by the wireless terminal to decode the acquired call forwarding number, and after receiving the transmission signal, the wireless terminal can decode the call forwarding number from the transmission signal, so that the wireless terminal can make a call according to the call forwarding number. Transfer settings.
  • Embodiments of the present invention provide a call forwarding method.
  • a wireless terminal When a wireless terminal performs charging, it receives a preset call forwarding number transmitted by a charger with a predetermined electrical signal as a carrier, and then performs a call according to the received call forwarding number. Transfer settings. Therefore, not only the call forwarding function when the wireless terminal is charged but also the call forwarding setting error can be avoided.
  • the wireless terminal may be a smart phone
  • the charging device may be an in-vehicle system.
  • the specific process in this embodiment may include:
  • the in-vehicle system is not only a charging device for charging the smart phone, but also a destination terminal for call forwarding of a smart phone; when the in-vehicle system detects that there is a loop on its own charging line, it can be considered
  • the in-vehicle system detects the insertion of the smartphone, at which point the processor of the in-vehicle system can receive a hardware interrupt signal.
  • the call forwarding number pre-stored in the memory of the in-vehicle system may be carried in the transmission signal; for example, the call may be placed according to the correspondence between the current intensity and the number value.
  • the transfer number is encoded into the charging electrical signal, and the call forwarding number can also be encoded into the charging electrical signal according to the correspondence between the voltage and the number value, and the call forwarding number can be encoded into the sound wave according to the correspondence between the acoustic wave characteristic and the number value.
  • Signals and the like, in the present embodiment an example in which the call forwarding number is encoded to the charging electric signal in accordance with the correspondence between the current intensity and the number value will be described. Understandably, by The in-vehicle system itself is also a destination terminal for call forwarding of a smart phone, and therefore, the call forwarding number can be the telephone number of the in-vehicle system itself.
  • the transmission signal carrying the call forwarding number is a charging electrical signal having a corresponding relationship between the current intensity of the charging and the number value
  • the correspondence between the current intensity and the number value may be: 0.1 amp A represents 1, 0.2A stands for 2, 0.3A stands for 3, 0.4A stands for 4, 0.5A stands for 5, 0.6A stands for 6, 0.7A stands for 7, 0.8A stands for 8, 0.9A stands for 9, and 1.0A stands for 0; each current strength is maintained.
  • the call forwarding number is 13912345, for example, the transmission signals are: 0.1A, 0.3A, 0.9A, 0.1A, 0.2A, 0.3A, 0.4A, 0.5A. It can be understood that when the transmission signal is other types of signals, the correspondence between the current intensity and the number value may be similar to the above, and the embodiment is not specifically described herein.
  • S402 the in-vehicle system sends a transmission signal to the smart phone
  • the processor of the in-vehicle system instructs the voltage converter to output the charging electrical signal, and then the charging is performed by the charging line of the vehicle system.
  • the electrical signal is sent to the smartphone.
  • S403 The smart phone decodes the received transmission signal, and acquires a call forwarding number carried by the transmission signal.
  • the interrupt signal is output to the smart phone processor; after receiving the interrupt signal, the processor of the smart phone passes the current detecting circuit.
  • the current value of the charging circuit of the smart phone is read, and then, according to the correspondence between the current intensity and the number value, the current value of the charging electric signal is decoded, thereby obtaining the call forwarding number of 13912345.
  • S404 The smart phone sends call forwarding setting signaling to the network side.
  • the call forwarding setting signaling is used to transfer a call initiated to the smart phone to the call forwarding number; specifically, after acquiring the call forwarding number, the smart phone passes the air interface in a format specified by the protocol, such as “* *21*Call Forwarding Number#" sends a call to the server on the network side
  • the transfer setting signaling is called so that the network side can transfer the call event to the call forwarding number when a call event initiated to the smartphone occurs.
  • the call forwarding setting success signaling can be fed back to the smart phone.
  • the charging speed can be accelerated by charging the smart phone in the flight mode.
  • the smartphone can set its current working mode to flight mode.
  • the call forwarding stop signaling is used to cancel the call forwarding that is successfully set. Specifically, when the smart phone is fully charged or the wireless terminal is unplugged from the charging device, the charging of the smart phone ends. At this time, the smart phone sends a call transfer stop signaling to the network side, and the specific format may be “##21#”;
  • the smart phone After receiving the confirmation signaling returned by the network side, the smart phone converts its mode from the flight mode to the normal working mode or to the working mode before charging.
  • the smart phone receiving the confirmation signaling returned by the network side indicates that the call forwarding successfully set by the steps S401 to S405 is successfully canceled, so that the situation of forgetting to cancel the call forwarding setting due to the manual operation can be avoided.
  • the embodiment of the present invention provides a specific implementation process of call forwarding.
  • the wireless terminal When the wireless terminal performs charging, it receives a preset call forwarding number transmitted by the charger with a predetermined electrical signal as a carrier, and then according to the received call forwarding number. Make call forwarding settings. So that not only can it be simple The call forwarding function when charging the wireless terminal is realized, and the setting of the call forwarding is also avoided.
  • the wireless terminal 50 may include: a first detecting unit 501, a receiving unit 502, and a decoding unit 503. And transmitting unit 504, wherein
  • the first detecting unit 501 is configured to trigger the receiving unit 502 after detecting the insertion into the charging device;
  • the receiving unit 502 is configured to receive a transmission signal that is sent by the charging device and carries the call forwarding number
  • the decoding unit 503 is configured to decode the transmission signal received by the receiving unit 502, and obtain a call forwarding number carried by the transmission signal;
  • the sending unit 504 is configured to send call forwarding setting signaling to the network side, and the call forwarding setting signaling is used to transfer the call initiated to the wireless terminal 50 to the call forwarding number.
  • the first detecting unit 501 is further configured to detect that the wireless terminal 50 is charging end, and after detecting that the wireless terminal 50 is charged, triggering the sending unit 504;
  • the sending unit 504 is further configured to send call forwarding stop signaling to the network side, where the call transfer stop signaling is used to cancel the call forwarding that is successfully set.
  • the transmission signal carrying the call forwarding number includes:
  • a sound wave signal having a correspondence relationship between the acoustic wave characteristics and the number value.
  • the receiving unit 502 is further configured to receive the call forwarding setup success signaling returned by the network side;
  • the wireless terminal 50 further includes a setting unit 505 configured to set its own operating mode to the flight mode.
  • the embodiment of the present invention provides a wireless terminal 50, which is detected by the first detecting unit 501.
  • the receiving unit 502 receives the preset call forwarding number transmitted by the charger with the predetermined electrical signal as the carrier, and then the wireless terminal 50 performs the call forwarding setting based on the received call forwarding number. Thereby, not only the call forwarding function when the wireless terminal 50 is charged but also the call forwarding setting error can be avoided.
  • the charging device 70 may include: a second detecting unit 701, a carrying unit 702, and a sending unit 703. among them,
  • the second detecting unit 701 is configured to trigger the bearer unit 702 after detecting that the wireless terminal is inserted;
  • the bearer unit 702 is configured to carry the call forwarding number in the transmission signal
  • the sending unit 703 is configured to send a transmission signal to the wireless terminal, where the transmission signal is used by the wireless terminal to decode and acquire the call forwarding number.
  • the foregoing transmission signal may include:
  • a sound wave signal having a correspondence relationship between the acoustic wave characteristics and the number value.
  • the system 80 includes: a wireless terminal 50 and a charging device 70, wherein
  • the wireless terminal 50 is configured to receive, after detecting the insertion of the charging device 70, a transmission signal transmitted by the charging device 70 carrying the call forwarding number;
  • the charging device 70 is configured to transmit the call forwarding number after detecting that the wireless terminal 50 is inserted Loaded in the transmitted signal;
  • a transmission signal is transmitted to the wireless terminal 50, and the transmission signal is used by the wireless terminal 50 to decode the acquired call forwarding number.
  • embodiments of the present invention can be provided as a method, system, or computer program product. Accordingly, the present invention can take the form of a hardware embodiment, a software embodiment, or a combination of software and hardware. Moreover, the invention can take the form of a computer program product embodied on one or more computer-usable storage media (including but not limited to disk storage and optical storage, etc.) including computer usable program code.
  • the computer program instructions can also be stored in a computer readable memory that can direct a computer or other programmable data processing device to operate in a particular manner, such that the instructions stored in the computer readable memory produce an article of manufacture comprising the instruction device.
  • the apparatus implements the functions specified in one or more blocks of a flow or a flow and/or block diagram of the flowchart.
  • These computer program instructions can also be loaded onto a computer or other programmable data processing device such that a series of operational steps are performed on a computer or other programmable device to produce computer-implemented processing for execution on a computer or other programmable device.
  • the instructions provide steps for implementing the functions specified in one or more of the flow or in a block or blocks of a flow diagram.
  • the wireless terminal when the wireless terminal performs charging, a preset call forwarding number transmitted by the charger with a predetermined electrical signal as a carrier is received, and then the call forwarding setting is performed according to the received call forwarding number.

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Abstract

本发明实施例公开了一种呼叫转移的方法、装置和***,该方法可以应用于无线终端,该方法包括:所述无线终端在检测到***充电设备之后,接收由所述充电设备发送的承载了呼叫转移号码的传输信号;所述无线终端对接收到的传输信号进行解码,获取所述传输信号所承载的呼叫转移号码;所述无线终端向网络侧发送呼叫转移设置信令,所述呼叫转移设置信令用于将向所述无线终端发起的呼叫转移到所述呼叫转移号码。

Description

一种呼叫转移的方法、装置和*** 技术领域
本发明涉及无线终端技术,尤其涉及一种呼叫转移的方法、装置和***。
背景技术
随着无线终端技术的发展,无线终端的呼叫转移功能已经成为用户常用的功能之一,通过设置呼叫转移可以降低电话漏接的可能性,以及实现防止打扰等功能。
目前,当无线终端在充电过程中,由于用户通常会离开正在充电的无线终端,为了避免漏接来电,通常是用户在对无线终端进行充电之前,手工地对无线终端进行呼叫转移,并在充电结束之后手工地进行呼叫转移取消,这样的人工操作增加了呼叫转移的复杂性,而且由于人工操作还容易产生呼叫转移的设置错误,例如,在将无线终端进行充电时,通常会忘记进行呼叫转移设置;当充电完成后,忘记取消呼叫转移设置等等。
发明内容
为解决上述技术问题,本发明实施例期望提供一种呼叫转移的方法、装置和***,能够简单地实现无线终端充电时的呼叫转移功能,而且还避免了呼叫转移的设置错误。
本发明的技术方案是这样实现的:
第一方面,本发明实施例提供了一种呼叫转移的方法,所述方法应用于无线终端,所述方法包括:
所述无线终端在检测到***充电设备之后,接收由所述充电设备发送 的承载了呼叫转移号码的传输信号;
所述无线终端对接收到的传输信号进行解码,获取所述传输信号所承载的呼叫转移号码;
所述无线终端向网络侧发送呼叫转移设置信令,所述呼叫转移设置信令用于将向所述无线终端发起的呼叫转移到所述呼叫转移号码。
上述方案中,所述方法还包括:
当所述无线终端充电结束时,所述无线终端向所述网络侧发送呼叫转移停止信令,所述呼叫转移停止信令用于取消设置成功的呼叫转移。
上述方案中,所述承载了呼叫转移号码的传输信号,包括:
充电的电流强度与号码数值之间具有对应关系的充电电信号;
或者,充电电压与号码数值之间具有对应关系的充电电信号;
或者,声波特性与号码数值之间具有对应关系的声波信号。
上述方案中,所述无线终端向网络侧发送呼叫转移设置信令之后,所述方法还包括:
所述无线终端接收所述网络侧返回的呼叫转移设置成功信令;并将自身的工作模式设置为飞行模式。
第二方面,本发明实施例提供了一种呼叫转移的方法,所述方法应用于充电设备,所述方法包括:
所述充电设备在检测到无线终端***后,将呼叫转移号码承载于传输信号中;
所述充电设备向所述无线终端发送所述传输信号,所述传输信号用于所述无线终端解码获取所述呼叫转移号码。
上述方案中,所述传输信号,包括:
电流强度与号码数值之间具有对应关系的充电电信号;
或者,电压与号码数值之间具有对应关系的充电电信号;
或者,声波特性与号码数值之间具有对应关系的声波信号。
第三方面,本发明实施例提供了一种无线终端,所述无线终端,包括:第一检测单元,接收单元,解码单元和发送单元,其中,
所述第一检测单元,配置为检测到***充电设备之后,触发所述接收单元;
所述接收单元,配置为接收由所述充电设备发送的承载了呼叫转移号码的传输信号;
所述解码单元,配置为对所述接收单元接收到的传输信号进行解码,获取所述传输信号所承载的呼叫转移号码;
所述发送单元,配置为向网络侧发送呼叫转移设置信令,所述呼叫转移设置信令用于将向所述无线终端发起的呼叫转移到所述呼叫转移号码。
上述方案中,所述第一检测单元,还配置为检测所述无线终端充电结束,并在检测到所述无线终端充电结束后,触发所述发送单元;
所述发送单元,还配置为向所述网络侧发送呼叫转移停止信令,所述呼叫转移停止信令用于取消设置成功的呼叫转移。
上述方案中,所述承载了呼叫转移号码的传输信号,包括:
充电的电流强度与号码数值之间具有对应关系的充电电信号;
或者,充电电压与号码数值之间具有对应关系的充电电信号;
或者,声波特性与号码数值之间具有对应关系的声波信号。
上述方案中,所述接收单元,还配置为接收所述网络侧返回的呼叫转移设置成功信令;
所述无线终端还包括设置单元,配置为将自身的工作模式设置为飞行模式。
所述第一检测单元、所述接收单元、所述解码单元、所述发送单元、所述设置单元在执行处理时,可以采用中央处理器(CPU,Central Processing  Unit)、数字信号处理器(DSP,Digital Singnal Processor)或可编程逻辑阵列(FPGA,Field-Programmable Gate Array)实现。
第四方面,本发明实施例提供了一种充电设备,所述充电设备,包括第二检测单元、承载单元和发送单元,其中,
所述第二检测单元,配置为检测到无线终端***后,触发所述承载单元;
所述承载单元,配置为将呼叫转移号码承载于传输信号中;
所述发送单元,配置为向所述无线终端发送所述传输信号,所述传输信号用于所述无线终端解码获取所述呼叫转移号码。
上述方案中,所述传输信号,包括:
电流强度与号码数值之间具有对应关系的充电电信号;
或者,电压与号码数值之间具有对应关系的充电电信号;
或者,声波特性与号码数值之间具有对应关系的声波信号。
所述第二检测单元、所述承载单元、所述发送单元在执行处理时,可以采用中央处理器(CPU,Central Processing Unit)、数字信号处理器(DSP,Digital Singnal Processor)或可编程逻辑阵列(FPGA,Field-Programmable Gate Array)实现。
第五方面,本发明实施例提供了一种呼叫转移的***,所述***包括:无线终端和充电设备,其中
所述无线终端,配置为在检测到***所述充电设备之后,接收由所述充电设备发送的承载了呼叫转移号码的传输信号;
以及,对接收到的传输信号进行解码,获取所述传输信号所承载的呼叫转移号码;
以及,向网络侧发送呼叫转移设置信令,所述呼叫转移设置信令用于将向所述无线终端发起的呼叫转移到所述呼叫转移号码;
所述充电设备,配置为在检测到所述无线终端***后,将呼叫转移号码承载于传输信号中;以及,
向所述无线终端发送所述传输信号,所述传输信号用于所述无线终端解码获取所述呼叫转移号码。
本发明实施例提供了一种呼叫转移的方法、装置和***;无线终端进行充电时,接收由充电器以预定的电信号为载体所传输的预设的呼叫转移号码,随后根据接收到的呼叫转移号码进行呼叫转移设置。从而不仅能够简单地实现无线终端充电时的呼叫转移功能,而且还避免了呼叫转移的设置错误。
附图说明
图1为本发明实施例提供的一种呼叫转移的应用场景示意图;
图2为本发明实施例提供的一种呼叫转移的方法流程示意图;
图3为本发明实施例提供的另一种呼叫转移的方法流程示意图;
图4为本发明实施例提供的一种呼叫转移的具体过程示意图;
图5为本发明实施例提供的一种无线终端的结构示意图;
图6为本发明实施例提供的另一种无线终端的结构示意图;
图7为本发明实施例提供的一种充电设备的结构示意图;
图8为本发明实施例提供的一种呼叫转移的***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。
参见图1,其示出了本发明实施例提供的一种呼叫转移的应用场景,在图中,包括了充电设备1和无线终端2,本发明实施例的基本思想是:当充电设备1检测到无线终端2进行连接时,充电设备1将呼叫转移的号码信 息承载于向无线终端2传输的电信号中,从而无线终端2通过检测电信号获取到呼叫转移的号码,并根据呼叫转移的号码进行呼叫转移设置。
以图1所示的应用场景为例,参见图2,其示出了本发明实施例提供的一种呼叫转移的方法,该方法可以应用于无线终端,该无线终端可以是智能手机、笔记本电脑、平板电脑,掌上电脑(PDA,Personal Digital Assistant)等可以用于进行呼叫的电子设备,该方法可以包括:
S201:无线终端在检测到***充电设备之后,接收由充电设备发送的承载了呼叫转移号码的传输信号;
需要说明的是,在本实施例中,充电设备可以是车载电话***、充电器等能够向无线终端进行充电的设备及装置。
示例性地,充电设备所发送的承载了呼叫转移号码的传输信号,至少可以包括:
充电的电流强度与号码数值之间具有对应关系的充电电信号;
或者,充电电压与号码数值之间具有对应关系的充电电信号;
或者,声波特性与号码数值之间具有对应关系的声波信号。
具体的,在本实施例中,当承载了呼叫转移号码的传输信号是充电的电流强度与号码数值之间具有对应关系的充电电信号时,电流强度与号码数值之间的对应关系可以是:0.1安培A代表1、0.2A代表2、0.3A代表3、0.4A代表4、0.5A代表5、0.6A代表6、0.7A代表7、0.8A代表8、0.9A代表9、1.0A代表0;每个电流强度维持1秒的时间,那么以呼叫转移号码为13912345为例,传输信号就为:0.1A、0.3A、0.9A、0.1A、0.2A、0.3A、0.4A、0.5A。可以理解地,当承载了呼叫转移号码的传输信号是充电电压与号码数值之间具有对应关系的充电电信号或者是声波特性与号码数值之间具有对应关系的声波信号时,充电电压与号码数值之间的对应关系或者声波特性与号码数值之间的对应关系可以与上述的电流强度与号码数值之 间的对应关系类似,本实施例在此不作具体赘述。
S202:无线终端对接收到的传输信号进行解码,获取该传输信号所承载的呼叫转移号码;
可以理解地,当无线终端接收到传输信号之后,可以对传输信号进行解码,从而获取得到传输信号中所承载的呼叫转移号码,以步骤S201中无线终端所具体接收到的传输信号为例,无线终端可以按照上述的电流强度与号码数值之间的对应关系将作为传输信号的充电电信号进行解码,从而得到呼叫转移号码为13912345。
S203:无线终端向网络侧发送呼叫转移设置信令,所述呼叫转移设置信令用于将向该无线终端发起的呼叫转移到所述呼叫转移号码;
具体地,无线终端在获取到呼叫转移号码后,通过空口以协议规定的格式如“**21*呼叫转移号码#”向网络侧的服务器发送呼叫转移设置信令,从而使得后续当出现向无线终端发起的呼叫事件时,网络侧能够将呼叫事件转移到呼叫转移号码上。
优选地,在经过步骤S201至S203之后,当无线终端接收到网络侧返回的呼叫转移设置成功信令之后,无线终端可以将自身的工作模式设置为飞行模式,可以理解的,当无线终端处于飞行模式时,无线终端关闭了很多待机时的功能模块,减少了无线终端在充电时的耗电量,因此,飞行模式下对无线终端进行充电可以加快充电速度。
通过上述过程,实现了无线终端在充电时进行呼叫转移的设置过程,整个设置过程无需人工操作干预,实现方式简单,还避免了呼叫转移的设置错误。
示例性地,当无线终端充电结束时,所述方法还可以包括:
无线终端向网络侧发送呼叫转移停止信令,所述呼叫转移停止信令用于取消通过步骤S201至S203设置成功的呼叫转移。
具体地,当无线终端充满电或无线终端从充电设备拔出后,表示无线终端充电结束,此时,无线终端向网络侧发送呼叫转移停止信令,具体格式可以为“##21#”,当无线终端接收网络侧确认后,则表示成功取消通过步骤S201至S203设置成功的呼叫转移,这样可以避免由于人工操作所带来的忘记取消呼叫转移设置的情况。
进一步地,若无线终端在充电过程中处于飞行模式,那么当无线终端充电结束时,无线终端可以将自身的模式由飞行模式转换为正常的工作模式或者转换为充电之前的工作模式。
本发明实施例提供了一种呼叫转移的方法,无线终端进行充电时,接收由充电器以预定的电信号为载体所传输的预设的呼叫转移号码,随后根据接收到的呼叫转移号码进行呼叫转移设置。从而不仅能够简单地实现无线终端充电时的呼叫转移功能,而且还避免了呼叫转移的设置错误。
参见图3,其示出了本发明实施例提供的另一种呼叫转移的方法,该方法可以应用于充电设备这一侧,可以理解地,充电设备可以是车载电话***、充电器等能够向无线终端进行充电的设备及装置,该方法可以包括:
S301:充电设备在检测到无线终端***后,将呼叫转移号码承载于传输信号中;
示例性地,所述传输信号,可以包括:
电流强度与号码数值之间具有对应关系的充电电信号;
或者,电压与号码数值之间具有对应关系的充电电信号;
或者,声波特性与号码数值之间具有对应关系的声波信号。
需要说明的是,当充电设备检测到充电线路上存在电流回路时,可以确定无线终端***到了充电设备。当充电设备检测到无线终端***后,可以按照上述的对应关系将呼叫转移号码承载于传输信号中。
具体的承载过程可以按照前述实施例中的描述方式实现,在此不再赘 述。
S302:充电设备向无线终端发送传输信号;
可以理解地,传输信号可以用于无线终端解码获取呼叫转移号码,无线终端在接收到传输信号后,可以将呼叫转移号码从传输信号中解码出来,从而使得无线终端能够根据该呼叫转移号码进行呼叫转移设置。
本发明实施例提供了一种呼叫转移的方法,无线终端进行充电时,接收由充电器以预定的电信号为载体所传输的预设的呼叫转移号码,随后根据接收到的呼叫转移号码进行呼叫转移设置。从而不仅能够简单地实现无线终端充电时的呼叫转移功能,而且还避免了呼叫转移的设置错误。
基于前述实施例相同的技术构思,参见图4,其示出了本发明实施例提供的一种呼叫转移的具体过程,在本实施例中,无线终端可以为智能手机,充电设备可以为车载***,本实施例中的具体过程可以包括:
S401:当车载***检测到智能手机***后,将预设的呼叫转移号码承载于传输信号中;
具体地,本实施例中,车载***既是一个向智能手机进行充电的充电设备,又是一个智能手机的呼叫转移的目的终端;当车载***检测到自身的充电线路上存在回路时,则可以认为车载***检测到了智能手机的***,此时,车载***的处理器可以接收到一个硬件中断信号。
当车载***的处理器接收到该硬件中断信号之后,可以将预先存储在车载***的存储器中的呼叫转移号码承载于传输信号中;例如,可以按照电流强度与号码数值之间的对应关系将呼叫转移号码编码至充电电信号,也可以按照电压与号码数值之间的对应关系将呼叫转移号码编码至充电电信号,还可以按照声波特性与号码数值之间的对应关系将呼叫转移号码编码至声波信号等等,在本实施例中,以按照电流强度与号码数值之间的对应关系将呼叫转移号码编码至充电电信号为例进行说明。可以理解的,由 于车载***自身也是一个智能手机的呼叫转移的目的终端,因此,呼叫转移号码可以是车载***自身的电话号码。
进一步地,当承载了呼叫转移号码的传输信号是充电的电流强度与号码数值之间具有对应关系的充电电信号时,电流强度与号码数值之间的对应关系可以是:0.1安培A代表1、0.2A代表2、0.3A代表3、0.4A代表4、0.5A代表5、0.6A代表6、0.7A代表7、0.8A代表8、0.9A代表9、1.0A代表0;每个电流强度维持1秒的时间,那么以呼叫转移号码为13912345为例,传输信号就为:0.1A、0.3A、0.9A、0.1A、0.2A、0.3A、0.4A、0.5A。可以理解地,当传输信号为其他类型的信号时,可以与上述的电流强度与号码数值之间的对应关系类似,本实施例在此不作具体赘述。
S402:车载***向智能手机发送传输信号;
具体地,当传输信号是电流强度与号码数值之间具有对应关系的充电电信号时,车载***的处理器指示电压转换器将该充电电信号进行输出,然后通过车载***的充电线路将该充电电信号向智能手机发送。
S403:智能手机对接收到的传输信号进行解码,获取该传输信号所承载的呼叫转移号码;
具体地,智能手机上的电流跳变捕捉电路检测到智能手机的充电电路上有电信号变化时,向智能手机处理器输出中断信号;智能手机的处理器接收到中断信号之后,通过电流检测电路读取智能手机的充电电路的电流值,随后,根据电流强度与号码数值之间的对应关系,将充电电信号的电流值进行解码,从而获得呼叫转移号码为13912345。
S404:智能手机向网络侧发送呼叫转移设置信令;
其中,所述呼叫转移设置信令用于将向该智能手机发起的呼叫转移到所述呼叫转移号码;具体地,智能手机在获取到呼叫转移号码后,通过空口以协议规定的格式如“**21*呼叫转移号码#”向网络侧的服务器发送呼 叫转移设置信令,从而使得后续当出现向智能手机发起的呼叫事件时,网络侧能够将呼叫事件转移到呼叫转移号码上。
S405:智能手机接收到网络侧返回的呼叫转移设置成功信令之后,将自身的工作模式设置为飞行模式;
需要说明的是,当网络侧服务器对智能终端的呼叫转移设置完毕之后,可以向智能手机反馈呼叫转移设置成功信令,此时,由于飞行模式下对智能手机进行充电可以加快充电速度,因此,智能手机可以将自身当前的工作模式设置为飞行模式。
通过上述过程,实现了智能手机在充电时进行呼叫转移的设置过程,整个设置过程无需人工操作干预,实现方式简单,还避免了呼叫转移的设置错误。还需要说明的是,当智能手机充电结束之后,还需要将呼叫转移进行取消,具体的过程为:
S406:当智能手机充电结束时,智能手机向网络侧发送呼叫转移停止信令;
其中,呼叫转移停止信令用于取消设置成功的呼叫转移。具体地,当智能手机充满电或无线终端从充电设备拔出后,智能手机的充电结束,此时,智能手机向网络侧发送呼叫转移停止信令,具体格式可以为“##21#”;
S407:智能手机接收网络侧返回的确认信令后,将自身的模式由飞行模式转换为正常的工作模式或者转换为充电之前的工作模式。
可以理解的,智能手机接收到网络侧返回的确认信令则表示成功取消通过步骤S401至S405设置成功的呼叫转移,这样可以避免由于人工操作所带来的忘记取消呼叫转移设置的情况。
本发明实施例提供了一种呼叫转移的具体实现过程,无线终端进行充电时,接收由充电器以预定的电信号为载体所传输的预设的呼叫转移号码,随后根据接收到的呼叫转移号码进行呼叫转移设置。从而不仅能够简单地 实现无线终端充电时的呼叫转移功能,而且还避免了呼叫转移的设置错误。
基于前述实施例相同的技术构思,参见图5,其示出了本发明实施例提供的一种无线终端50的结构,无线终端50可以包括:第一检测单元501,接收单元502,解码单元503和发送单元504,其中,
第一检测单元501,配置为检测到***到充电设备之后,触发接收单元502;
接收单元502,配置为接收由充电设备发送的承载了呼叫转移号码的传输信号;
解码单元503,配置为对接收单元502接收到的传输信号进行解码,获取传输信号所承载的呼叫转移号码;
发送单元504,配置为向网络侧发送呼叫转移设置信令,呼叫转移设置信令用于将向无线终端50发起的呼叫转移到呼叫转移号码。
示例性地,第一检测单元501,还配置为检测无线终端50充电结束,并在检测到无线终端50充电结束后,触发发送单元504;
发送单元504,还配置为向网络侧发送呼叫转移停止信令,呼叫转移停止信令用于取消设置成功的呼叫转移。
示例性地,承载了呼叫转移号码的传输信号,包括:
充电的电流强度与号码数值之间具有对应关系的充电电信号;
或者,充电电压与号码数值之间具有对应关系的充电电信号;
或者,声波特性与号码数值之间具有对应关系的声波信号。
示例性地,接收单元502,还配置为接收网络侧返回的呼叫转移设置成功信令;
参见图6,无线终端50还包括设置单元505,配置为将自身的工作模式设置为飞行模式。
本发明实施例提供了一种无线终端50,在第一检测单元501检测到进 行充电时,接收单元502接收由充电器以预定的电信号为载体所传输的预设的呼叫转移号码,随后无线终端50根据接收到的呼叫转移号码进行呼叫转移设置。从而不仅能够简单地实现无线终端50充电时的呼叫转移功能,而且还避免了呼叫转移的设置错误。
基于前述实施例相同的技术构思,参见图7,其示出了本发明实施例提供的一种充电设备70,该充电设备70可以包括:第二检测单元701、承载单元702和发送单元703,其中,
第二检测单元701,配置为检测到无线终端***后,触发承载单元702;
承载单元702,配置为将呼叫转移号码承载于传输信号中;
发送单元703,配置为向无线终端发送传输信号,传输信号用于无线终端解码获取呼叫转移号码。
示例性的,上述的传输信号,可以包括:
电流强度与号码数值之间具有对应关系的充电电信号;
或者,电压与号码数值之间具有对应关系的充电电信号;
或者,声波特性与号码数值之间具有对应关系的声波信号。
基于前述实施例相同的技术构思,参见图8,其示出了本发明实施例提供的一种呼叫转移的***80,该***80包括:无线终端50和充电设备70,其中
无线终端50,配置为在检测到***充电设备70之后,接收由充电设备70发送的承载了呼叫转移号码的传输信号;
以及,对接收到的传输信号进行解码,获取传输信号所承载的呼叫转移号码;
以及,向网络侧发送呼叫转移设置信令,呼叫转移设置信令用于将向无线终端50发起的呼叫转移到呼叫转移号码;
充电设备70,配置为在检测到无线终端50***后,将呼叫转移号码承 载于传输信号中;以及,
向无线终端50发送传输信号,传输信号用于无线终端50解码获取呼叫转移号码。
本领域内的技术人员应明白,本发明的实施例可提供为方法、***、或计算机程序产品。因此,本发明可采用硬件实施例、软件实施例、或结合软件和硬件方面的实施例的形式。而且,本发明可采用在一个或多个其中包含有计算机可用程序代码的计算机可用存储介质(包括但不限于磁盘存储器和光学存储器等)上实施的计算机程序产品的形式。
本发明是参照根据本发明实施例的方法、设备(***)、和计算机程序产品的流程图和/或方框图来描述的。应理解可由计算机程序指令实现流程图和/或方框图中的每一流程和/或方框、以及流程图和/或方框图中的流程和/或方框的结合。可提供这些计算机程序指令到通用计算机、专用计算机、嵌入式处理机或其他可编程数据处理设备的处理器以产生一个机器,使得通过计算机或其他可编程数据处理设备的处理器执行的指令产生用于实现在流程图一个流程或多个流程和/或方框图一个方框或多个方框中指定的功能的装置。
这些计算机程序指令也可存储在能引导计算机或其他可编程数据处理设备以特定方式工作的计算机可读存储器中,使得存储在该计算机可读存储器中的指令产生包括指令装置的制造品,该指令装置实现在流程图一个流程或多个流程和/或方框图一个方框或多个方框中指定的功能。
这些计算机程序指令也可装载到计算机或其他可编程数据处理设备上,使得在计算机或其他可编程设备上执行一系列操作步骤以产生计算机实现的处理,从而在计算机或其他可编程设备上执行的指令提供用于实现在流程图一个流程或多个流程和/或方框图一个方框或多个方框中指定的功能的步骤。
以上,仅为本发明的较佳实施例而已,并非用于限定本发明的保护范围。
工业实用性
本发明实施例是在无线终端进行充电时,接收由充电器以预定的电信号为载体所传输的预设的呼叫转移号码,随后根据接收到的呼叫转移号码进行呼叫转移设置。采用本发明实施例,从而不仅能够简单地实现无线终端充电时的呼叫转移功能,而且还避免了呼叫转移的设置错误。

Claims (13)

  1. 一种呼叫转移的方法,所述方法应用于无线终端,所述方法包括:
    所述无线终端在检测到***充电设备之后,接收由所述充电设备发送的承载了呼叫转移号码的传输信号;
    所述无线终端对接收到的传输信号进行解码,获取所述传输信号所承载的呼叫转移号码;
    所述无线终端向网络侧发送呼叫转移设置信令,所述呼叫转移设置信令用于将向所述无线终端发起的呼叫转移到所述呼叫转移号码。
  2. 根据权利要求1所述的方法,其中,所述方法还包括:
    当所述无线终端充电结束时,所述无线终端向所述网络侧发送呼叫转移停止信令,所述呼叫转移停止信令用于取消设置成功的呼叫转移。
  3. 根据权利要求1所述的方法,其中,所述承载了呼叫转移号码的传输信号,包括:
    充电的电流强度与号码数值之间具有对应关系的充电电信号;
    或者,充电电压与号码数值之间具有对应关系的充电电信号;
    或者,声波特性与号码数值之间具有对应关系的声波信号。
  4. 根据权利要求1所述的方法,其中,所述无线终端向网络侧发送呼叫转移设置信令之后,所述方法还包括:
    所述无线终端接收所述网络侧返回的呼叫转移设置成功信令;并将自身的工作模式设置为飞行模式。
  5. 一种呼叫转移的方法,所述方法应用于充电设备,所述方法包括:
    所述充电设备在检测到无线终端***后,将呼叫转移号码承载于传输信号中;
    所述充电设备向所述无线终端发送所述传输信号,所述传输信号用于所述无线终端解码获取所述呼叫转移号码。
  6. 根据权利要求5所述的方法,其中,所述传输信号,包括:
    电流强度与号码数值之间具有对应关系的充电电信号;
    或者,电压与号码数值之间具有对应关系的充电电信号;
    或者,声波特性与号码数值之间具有对应关系的声波信号。
  7. 一种无线终端,所述无线终端,包括:第一检测单元,接收单元,解码单元和发送单元,其中,
    所述第一检测单元,配置为检测到***充电设备之后,触发所述接收单元;
    所述接收单元,配置为接收由所述充电设备发送的承载了呼叫转移号码的传输信号;
    所述解码单元,配置为对所述接收单元接收到的传输信号进行解码,获取所述传输信号所承载的呼叫转移号码;
    所述发送单元,配置为向网络侧发送呼叫转移设置信令,所述呼叫转移设置信令用于将向所述无线终端发起的呼叫转移到所述呼叫转移号码。
  8. 根据权利要求7所述的无线终端,其中,所述第一检测单元,还配置为检测所述无线终端充电结束,并在检测到所述无线终端充电结束后,触发所述发送单元;
    所述发送单元,还配置为向所述网络侧发送呼叫转移停止信令,所述呼叫转移停止信令用于取消设置成功的呼叫转移。
  9. 根据权利要求7所述的无线终端,其中,所述承载了呼叫转移号码的传输信号,包括:
    充电的电流强度与号码数值之间具有对应关系的充电电信号;
    或者,充电电压与号码数值之间具有对应关系的充电电信号;
    或者,声波特性与号码数值之间具有对应关系的声波信号。
  10. 根据权利要求7所述的无线终端,其中,所述接收单元,还配置 为接收所述网络侧返回的呼叫转移设置成功信令;
    所述无线终端还包括设置单元,配置为将自身的工作模式设置为飞行模式。
  11. 一种充电设备,所述充电设备,包括第二检测单元、承载单元和发送单元,其中,
    所述第二检测单元,配置为检测到无线终端***后,触发所述承载单元;
    所述承载单元,配置为将呼叫转移号码承载于传输信号中;
    所述发送单元,配置为向所述无线终端发送所述传输信号,所述传输信号用于所述无线终端解码获取所述呼叫转移号码。
  12. 根据权利要求11所述的充电设备,其中,所述传输信号,包括:
    电流强度与号码数值之间具有对应关系的充电电信号;
    或者,电压与号码数值之间具有对应关系的充电电信号;
    或者,声波特性与号码数值之间具有对应关系的声波信号。
  13. 一种呼叫转移的***,所述***包括:无线终端和充电设备,其中
    所述无线终端,配置为在检测到***所述充电设备之后,接收由所述充电设备发送的承载了呼叫转移号码的传输信号;
    以及,对接收到的传输信号进行解码,获取所述传输信号所承载的呼叫转移号码;
    以及,向网络侧发送呼叫转移设置信令,所述呼叫转移设置信令用于将向所述无线终端发起的呼叫转移到所述呼叫转移号码;
    所述充电设备,配置为在检测到所述无线终端***后,将呼叫转移号码承载于传输信号中;以及,
    向所述无线终端发送所述传输信号,所述传输信号用于所述无线终端 解码获取所述呼叫转移号码。
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