WO2017067232A1 - 一种基于移动终端的自动呼叫转移方法、系统及移动终端 - Google Patents

一种基于移动终端的自动呼叫转移方法、系统及移动终端 Download PDF

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Publication number
WO2017067232A1
WO2017067232A1 PCT/CN2016/088818 CN2016088818W WO2017067232A1 WO 2017067232 A1 WO2017067232 A1 WO 2017067232A1 CN 2016088818 W CN2016088818 W CN 2016088818W WO 2017067232 A1 WO2017067232 A1 WO 2017067232A1
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WO
WIPO (PCT)
Prior art keywords
mobile terminal
terminal device
call
current
call request
Prior art date
Application number
PCT/CN2016/088818
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English (en)
French (fr)
Inventor
廖玲
Original Assignee
惠州Tcl移动通信有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 惠州Tcl移动通信有限公司 filed Critical 惠州Tcl移动通信有限公司
Priority to US15/519,119 priority Critical patent/US10038791B2/en
Publication of WO2017067232A1 publication Critical patent/WO2017067232A1/zh

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Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M3/00Automatic or semi-automatic exchanges
    • H04M3/42Systems providing special services or facilities to subscribers
    • H04M3/54Arrangements for diverting calls for one subscriber to another predetermined subscriber
    • H04M3/543Call deflection
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/72Mobile telephones; Cordless telephones, i.e. devices for establishing wireless links to base stations without route selection
    • H04M1/724User interfaces specially adapted for cordless or mobile telephones
    • H04M1/72448User interfaces specially adapted for cordless or mobile telephones with means for adapting the functionality of the device according to specific conditions
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/72Mobile telephones; Cordless telephones, i.e. devices for establishing wireless links to base stations without route selection
    • H04M1/724User interfaces specially adapted for cordless or mobile telephones
    • H04M1/72448User interfaces specially adapted for cordless or mobile telephones with means for adapting the functionality of the device according to specific conditions
    • H04M1/72454User interfaces specially adapted for cordless or mobile telephones with means for adapting the functionality of the device according to specific conditions according to context-related or environment-related conditions
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/72Mobile telephones; Cordless telephones, i.e. devices for establishing wireless links to base stations without route selection
    • H04M1/724User interfaces specially adapted for cordless or mobile telephones
    • H04M1/72448User interfaces specially adapted for cordless or mobile telephones with means for adapting the functionality of the device according to specific conditions
    • H04M1/72457User interfaces specially adapted for cordless or mobile telephones with means for adapting the functionality of the device according to specific conditions according to geographic location
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/72Mobile telephones; Cordless telephones, i.e. devices for establishing wireless links to base stations without route selection
    • H04M1/725Cordless telephones
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W4/00Services specially adapted for wireless communication networks; Facilities therefor
    • H04W4/02Services making use of location information
    • H04W4/023Services making use of location information using mutual or relative location information between multiple location based services [LBS] targets or of distance thresholds
    • 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
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M2207/00Type of exchange or network, i.e. telephonic medium, in which the telephonic communication takes place
    • H04M2207/18Type of exchange or network, i.e. telephonic medium, in which the telephonic communication takes place wireless networks
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M3/00Automatic or semi-automatic exchanges
    • H04M3/42Systems providing special services or facilities to subscribers
    • H04M3/42365Presence services providing information on the willingness to communicate or the ability to communicate in terms of media capability or network connectivity

Definitions

  • the present invention relates to the field of mobile terminal technologies, and in particular, to an automatic call transfer method and system based on a mobile terminal, and a mobile terminal.
  • mobile communication devices With the increasing popularity and popularity of mobile communication devices, various communication links between people are becoming easier, convenient, and real-time. Users can use their mobile phones to communicate with family, friends, colleagues, customers, etc., anytime, anywhere.
  • the types of mobile communication devices are also increasingly diversified, such as mobile phones, tablets and various smart wearable devices (such as smart watches, smart bracelets, smart glasses, etc.).
  • mobile communication devices there are more and more types of mobile communication devices, and they are increasingly enriching and satisfying people's various communication and usage requirements. And with the improvement of people's living standards and the diversification of usage demands, many people have more than one at the same time.
  • Mobile communication device Mobile communication device.
  • the user does not always receive the call request from the other party in time. For example, users often forget to move their mobile communication devices at home or at work and do not carry them at all times. When there is a call request at this time, the user cannot respond immediately. As a result, the user may miss a lot of important or urgent information, affecting the user's life and work, and causing inconvenience to the user.
  • the technical problem to be solved by the present invention is to provide an automatic call forwarding method, system and mobile terminal based on a mobile terminal, aiming at automatically transferring a call request to an associated another by the present invention.
  • the mobile communication device that is carried around can realize the instant response call request, and prevent the user from missing a lot of important or urgent information, thereby facilitating the work life of the user.
  • An automatic call forwarding method based on a mobile terminal comprising the steps of:
  • the mobile terminal device A performs a corresponding call request response according to the current call mode and the current signal mode, where:
  • the mobile terminal device A directly responds to the call request;
  • the mobile terminal device A responds to the call request by using a vowifi call mode
  • the mobile terminal device A If the mobile terminal device A does not have a call communication function, or does not currently have a signal mode, the mobile terminal device A responds to the call request by means of a notification message.
  • the step S10 specifically includes:
  • S101 Set, and store, in the mobile terminal, a time interval threshold and a distance threshold in advance;
  • An automatic call forwarding method based on a mobile terminal comprising the steps of:
  • the mobile terminal device A performs a corresponding call request response according to the current call mode and the current signal mode.
  • the step S40 specifically includes:
  • S401 Set, and store, in the mobile terminal, a time interval threshold and a distance threshold in advance;
  • the step S50 further includes the following steps:
  • the mobile terminal device B directly responds to the call request.
  • the step S60 specifically includes the following steps:
  • the mobile terminal device A If the current call mode of the mobile terminal device A is a 2G/3G/4G mobile network, and the current signal mode is a 2G/3G/4G mobile signal, the mobile terminal device A directly responds to the call request.
  • the mobile terminal device A responds to the call request by using a vowifi call mode.
  • the mobile terminal device A If the mobile terminal device A does not have a call communication function, or does not currently have a signal mode, the mobile terminal device A responds to the call request by using a notification message.
  • the time interval threshold is set to 1 minute, and the distance threshold is 5 meters.
  • An automatic call forwarding system based on a mobile terminal comprising:
  • a call requesting module configured to detect that the associated mobile terminal device A and the mobile terminal device B are both in an open state, and if the mobile terminal device B receives the call request, read the pre-stored current call forwarding control flag value;
  • Call request automatic transfer module if the pre-stored current call transfer control flag value is true, automatically initiate call transfer and transfer the mobile terminal device B call request to the mobile terminal device A;
  • the call request response module is configured to: the mobile terminal device A performs a corresponding call request response according to the current call mode and the current signal mode.
  • the call request module specifically includes:
  • a preset unit configured to preset and store a time interval threshold and a distance threshold in the mobile terminal
  • a position coordinate acquiring unit configured to acquire position coordinates of the mobile terminal device A and the mobile terminal device B respectively if it is detected that the associated mobile terminal device A and the mobile terminal device B are both in an open state
  • a distance value calculation unit configured to calculate a current distance value of the mobile terminal device A and the mobile terminal device B according to the position coordinate, and use the time interval threshold value to detect the current distance value and a preset location The distance threshold is compared;
  • a first comparing unit configured to: if the current distance value is less than the distance threshold, set and store a current call forwarding control flag value as false;
  • a second comparing unit configured to: if the current distance value is greater than the distance threshold, set and store the current call forwarding control flag value as true;
  • the call request automatic transfer module further includes:
  • the call request direct response unit is configured to directly respond to the call request if the pre-stored current call transfer control flag value is false.
  • the call request response module specifically includes:
  • a first call request response unit configured to: if the current call mode of the mobile terminal device A is a 2G/3G/4G mobile network, and the current signal mode is a 2G/3G/4G mobile signal, the mobile terminal device A directly Responding to the call request;
  • a second call request response unit configured to: if the current call mode of the mobile terminal device A is a wifi wireless network, and the current signal mode is a wifi wireless signal, the mobile terminal device A responds to the call request by using a vowifi call mode ;
  • the third call request response unit is configured to: if the mobile terminal device A does not have a call communication function, or does not currently have a signal mode, the mobile terminal device A responds to the call request by using a notification message.
  • the time interval threshold is set to 1 minute, and the distance threshold is 5 meters.
  • a mobile terminal includes:
  • a call requesting module configured to detect that the associated mobile terminal device A and the mobile terminal device B are both in an open state, and if the mobile terminal device B receives the call request, read the pre-stored current call forwarding control flag value;
  • Call request automatic transfer module if the pre-stored current call transfer control flag value is true, automatically initiate call transfer and transfer the mobile terminal device B call request to the mobile terminal device A;
  • the call request response module is configured to: the mobile terminal device A performs a corresponding call request response according to the current call mode and the current signal mode.
  • the call request module specifically includes:
  • a preset unit configured to preset and store a time interval threshold and a distance threshold in the mobile terminal
  • a position coordinate acquiring unit configured to acquire position coordinates of the mobile terminal device A and the mobile terminal device B respectively if it is detected that the associated mobile terminal device A and the mobile terminal device B are both in an open state
  • a distance value calculation unit configured to calculate a current distance value of the mobile terminal device A and the mobile terminal device B according to the position coordinate, and use the time interval threshold value to detect the current distance value and a preset location The distance threshold is compared;
  • a first comparing unit configured to: if the current distance value is less than the distance threshold, set and store a current call forwarding control flag value as false;
  • a second comparing unit configured to: if the current distance value is greater than the distance threshold, set and store the current call forwarding control flag value as true;
  • the call request automatic transfer module further includes:
  • the call request direct response unit is configured to directly respond to the call request if the pre-stored current call transfer control flag value is false.
  • the call request response module specifically includes:
  • a first call request response unit configured to: if the current call mode of the mobile terminal device A is a 2G/3G/4G mobile network, and the current signal mode is a 2G/3G/4G mobile signal, the mobile terminal device A directly Responding to the call request;
  • a second call request response unit configured to: if the current call mode of the mobile terminal device A is a wifi wireless network, and the current signal mode is a wifi wireless signal, the mobile terminal device A responds to the call request by using a vowifi call mode ;
  • the third call request response unit is configured to: if the mobile terminal device A does not have a call communication function, or does not currently have a signal mode, the mobile terminal device A responds to the call request by using a notification message.
  • the present invention provides an automatic call forwarding method and system based on a mobile terminal, and a mobile terminal.
  • the method specifically includes: detecting that both the associated mobile terminal device A and the mobile terminal device B are in an open state, if the mobile terminal device B receives the call request, and reads the pre-stored current call forwarding control flag value; if the pre-stored current call forwarding control flag value is true, the call forwarding is automatically initiated and the mobile terminal device B's call request is received. Transfer to the mobile terminal device A; the mobile terminal device A performs a corresponding call request response according to the current call mode and the current signal mode.
  • the present invention realizes instant response to the call request by automatically transferring the call request to another portable mobile communication device (ie, mobile terminal device A) of the requested object, thereby avoiding the called mobile communication device (ie, the mobile terminal) Device B) has the technical defect that it is unable to respond to the call request immediately when it is not carried, and improves the call response efficiency of the mobile terminal, which brings great convenience to the user's work and life.
  • another portable mobile communication device ie, mobile terminal device A
  • the called mobile communication device ie, the mobile terminal
  • Device B has the technical defect that it is unable to respond to the call request immediately when it is not carried, and improves the call response efficiency of the mobile terminal, which brings great convenience to the user's work and life.
  • FIG. 1 is a flow chart of a preferred embodiment of an automatic call forwarding method based on a mobile terminal of the present invention
  • FIG. 2 is a flow chart 1 of an application embodiment of an automatic call forwarding method based on a mobile terminal according to the present invention
  • FIG. 3 is a flow chart 2 of an application embodiment of an automatic call forwarding method based on a mobile terminal according to the present invention
  • FIG. 4 is a functional block diagram of a preferred embodiment of an automatic call forwarding system based on a mobile terminal of the present invention.
  • the present invention discloses a method, system and mobile terminal for automatic call transfer based on a mobile terminal.
  • the present invention will be further described in detail below with reference to the accompanying drawings and embodiments. It is understood that the specific embodiments described herein are merely illustrative of the invention and are not intended to limit the invention.
  • FIG. 1 is a flowchart of a preferred embodiment of an automatic call forwarding method based on a mobile terminal according to the present invention.
  • the mobile terminal-based automatic call transfer method shown in FIG. 1 includes:
  • Step S101 It is detected that the associated mobile terminal device A and the mobile terminal device B are both in an open state, and if the mobile terminal device B receives the call request, the pre-stored current call forwarding control flag value is read.
  • the step S101 specifically includes:
  • device A is a mobile communication device carried by the current user, and does not limit whether the call answering function is provided
  • device B is a mobile communication device that the current user does not carry with him. Has a call answering function.
  • Device A and device B are associated, and can be transferred to device A when device B is unable to make a call response.
  • device B receives the call request, and the mobile terminal determines whether to perform call forwarding according to the pre-stored current call forwarding control flag value.
  • the call forwarding control flag value is based on device A and device B
  • the current distance value is set, and the setting rules are as follows: (1) setting and storing a time interval threshold and a distance threshold in the mobile terminal in advance; (2) acquiring and recording the actual distance value between the device A and the device B.
  • step (2) to step (3) are cyclically executed according to the time interval threshold.
  • the time interval threshold is set to 1 minute, and the distance threshold is 5 meters.
  • the distance threshold can be reduced according to a preset situation.
  • the call involved in the embodiment of the present invention is not limited to a traditional call mode based on a 2G/3G/4G mobile network, and may be any other call mode based on VOWIFI or a social application (such as Skype).
  • the mobile terminal device involved in the embodiment of the present invention may be any form of mobile communication device, including but not limited to the following devices: mobile phones, tablets, and various smart wearable devices (such as smart watches, smart bracelets, Smart glasses) and so on.
  • Step S102 If the pre-stored current call transfer control flag value is true, the call transfer is automatically initiated and the call request of the mobile terminal device B is transferred to the mobile terminal device A.
  • Step S103 The mobile terminal device A performs a corresponding call request response according to the current call mode and the current signal mode.
  • the step S103 specifically includes the following steps:
  • the mobile terminal device A directly responds to the call request.
  • the mobile terminal device A responds to the call request by using a vowifi call mode.
  • the mobile terminal device A If the mobile terminal device A does not have a call communication function, or does not currently have a signal mode, the mobile terminal device A responds to the call request by using a notification message.
  • Call forwarding features here include, but are not limited to, traditional 2G/3G/4G Call forwarding of SIM cards, or the transfer of any form of call functionality based on data traffic (including but not limited to: IP calls, voice or video calls based on various social applications).
  • the device A After receiving the call request transferred from the device B, the device A performs a corresponding call request response according to the current call mode and the current signal mode. This includes, but is not limited to, the methods listed below.
  • Device A has a 2G/3G/4G mode and can carry SIM card services for call response.
  • the call request can be directly responded to. If there is no 2G/3G/4G signal, the following way c is used to receive the notification message reminder.
  • Device A has a WIFI mode and can carry data call services for call response.
  • WIFI When receiving a call request from device B, and there is WIFI
  • VOWIFI or any other data service based call mode can be used to directly respond to the call request. If there is no WIFI signal, the following way c is used to receive the notification message reminder.
  • Device A does not have any call communication function.
  • device A When receiving a call transfer request from device B, device A will notify the recipient in the manner of a call request notification message.
  • the notification message may be a presentation form of a voice, a text, a picture, an indicator light, etc., and may be combined with one or more presentation forms to remind the recipient to have a call request.
  • This application embodiment includes three steps: distance interval determination, call forwarding control, and call request response.
  • FIG. 2 including the steps:
  • step S203 the actual distance value is compared with the preset distance threshold, if it is detected that the actual distance value is greater than the preset distance threshold, then proceeds to step S204, otherwise, proceeds to step S205;
  • step S204 Define and store the call forwarding control flag bit to be true (that is, enable the call forwarding function), and return to step S202 according to the preset time interval threshold to compare the actual distance value with the preset distance threshold in real time;
  • step S205 Define and store the call forwarding control flag bit to be false (ie, disable the call forwarding function), and return to step S202 according to the preset time interval threshold to compare the actual distance value with the preset distance threshold in real time.
  • the application embodiment needs to determine the actual distance value between the associated device A and the device B, and set the call forwarding control flag value according to the actual distance value.
  • the setting rules are as follows: (1) setting and storing a time interval threshold and a distance threshold in the mobile terminal in advance; (2) acquiring and recording the actual distance value between the device A and the device B, and then the actual distance value and The preset distance threshold is compared; (3) if less than the preset distance threshold, the call forwarding control flag is defined and set to false (ie, the call forwarding function is disabled); otherwise, the call forwarding control flag is defined and set to True (ie, turning on the call forwarding function); (4) performing steps (2) through (3) cyclically according to the time interval threshold.
  • time interval threshold is used as a loop to repeatedly locate the positions of the device A and the device B to calculate the timing of the actual distance between the two devices.
  • the time interval threshold may be a value preset by the device or set by the user, and the invention is not limited herein. Preferably, the time interval threshold is set to 1 minute.
  • the actual distance value between the two communication devices is obtained.
  • the positioning data of the two devices must be separately acquired and recorded, and then converted into the same position coordinate plane based on the two data, and two calculated.
  • the specific location between the devices is poor and stored and recorded.
  • the positioning technologies for determining the location of two devices including but not limited to the following several mature technologies, such as: indoor positioning technology based on Bluetooth technology, positioning technology based on WIFI signals, GNSS or GNSS positioning with assisted positioning, cell positioning, RF ID positioning, ultrasonic positioning, infrared positioning, etc., and various techniques and methods that can be used for positioning derived and combined by these technologies.
  • the positioning information obtained by the present invention using these techniques is an input parameter, and implementation details of such techniques are not defined and defined.
  • the preset distance threshold may be any value preset by the device or the user.
  • the recommended default is 5 meters or more.
  • the preset distance threshold may be reduced according to a preset situation.
  • FIG. 3 including the steps:
  • the mobile terminal reads the value of the stored call transfer control flag, if the call transfer control flag is false (ie, close the call transfer function), then proceeds to step S305, otherwise, proceeds to step S303;
  • the device A initiates a call request response according to the current call mode and the current signal mode.
  • the device B directly responds to the call request.
  • Call forwarding features here include, but are not limited to, traditional 2G/3G/4G Call forwarding of SIM cards, or the transfer of any form of call functionality based on data traffic (including but not limited to: IP calls, voice or video calls based on various social applications).
  • Device A receives the call request transferred from device B.
  • Device A can respond to the call request in any manner. Several ways are listed here, but the invention is not limited to the manner enumerated below.
  • Device A has a 2G/3G/4G mode and can carry SIM card services for call response.
  • the call request can be directly responded to. If there is no 2G/3G/4G signal, the following c mode is used to receive the notification message reminder.
  • Device A has WIFI Mode, which can carry data call service for call response.
  • WIFI Mode can carry data call service for call response.
  • VOWIFI or any other data service based call mode can be used to directly respond to the call request. If there is no WIFI signal, the following c mode is used to receive the notification message reminder.
  • Device A does not have any call communication function.
  • device A When receiving a call transfer request from device B, device A will notify the recipient in the manner of a call request notification message.
  • the notification message may be a presentation form of sound, text, picture, indicator light, etc., and may be combined with one or more presentation forms to remind the recipient to have a call request.
  • the present invention realizes an instant response to the call request by automatically transferring the call request to another portable mobile communication device (ie, mobile terminal device A) of the requested object, specifically by acquiring two communication devices.
  • the actual distance value triggers the activation of the call automatic transfer procedure, thereby realizing instant response to the call request anytime and anywhere, thus avoiding the instant call when the called mobile communication device (ie, mobile terminal device B) is not carried around.
  • This technical defect should be called to improve the call response efficiency of the mobile terminal, which brings great convenience to the user's work and life.
  • the present invention further provides an automatic call forwarding system based on a mobile terminal, as shown in FIG. 4, including:
  • the call requesting module 100 is configured to detect that the associated mobile terminal device A and the mobile terminal device B are both in an open state, and if the mobile terminal device B receives the call request, read the pre-stored current call forwarding control flag value. Specifically as described above.
  • the call request automatic transfer module 200 is configured to automatically initiate a call transfer and transfer the call request of the mobile terminal device B to the mobile terminal device A if the pre-stored current call transfer control flag value is true; As mentioned above.
  • the call request response module 300 is configured to: the mobile terminal device A performs a corresponding call request response according to the current call mode and the current signal mode; specifically, as described above.
  • call request module 100 specifically includes:
  • a pre-setting unit for setting and storing a time interval threshold and a distance threshold in the mobile terminal in advance; as described above.
  • the location coordinate acquiring unit is configured to acquire the location coordinates of the mobile terminal device A and the mobile terminal device B respectively when detecting that the associated mobile terminal device A and the mobile terminal device B are both in an open state; as described above.
  • a distance value calculation unit configured to calculate a current distance value of the mobile terminal device A and the mobile terminal device B according to the position coordinate, and use the time interval threshold value to detect the current distance value and a preset location The distance threshold is compared; as described above.
  • the first comparing unit is configured to: if the current distance value is less than the distance threshold, set and store the current call forwarding control flag value as false; as described above.
  • the second comparing unit is configured to: if the current distance value is greater than the distance threshold, set and store the current call forwarding control flag value as true; as described above.
  • call request automatic transfer module 200 further includes:
  • the call request direct response unit is configured to directly respond to the call request if the pre-stored current call transfer control flag value is false, as described above.
  • call request response module 300 specifically includes:
  • a first call request response unit configured to: if the current call mode of the mobile terminal device A is a 2G/3G/4G mobile network, and the current signal mode is a 2G/3G/4G mobile signal, the mobile terminal device A directly Responding to the call request; as described above.
  • a second call request response unit configured to: if the current call mode of the mobile terminal device A is a wifi wireless network, and the current signal mode is a wifi wireless signal, the mobile terminal device A responds to the call request by using a vowifi call mode Specifically as described above.
  • a third call request response unit configured to: if the mobile terminal device A does not have a call communication function, or does not currently have a signal mode, the mobile terminal device A responds to the call request by using a notification message; as described above.
  • the present invention sets the time interval threshold to 1 minute, and the distance threshold is 5 meters.
  • the present invention further provides a mobile terminal, comprising the mobile terminal-based automatic call transfer system according to any of the above.
  • the present invention provides a mobile terminal-based automatic call forwarding method, system, and mobile terminal, and the method specifically includes: detecting that both the associated mobile terminal device A and the mobile terminal device B are in an open state. If the mobile terminal device B receives the call request, reading the pre-stored current call transfer control flag value; if the pre-stored current call transfer control flag value is true, the call transfer is automatically initiated and the The call request of the mobile terminal device B is transferred to the mobile terminal device A; the mobile terminal device A performs a corresponding call request response according to the current call mode and the current signal mode.
  • the present invention realizes instant response to the call request by automatically transferring the call request to another portable mobile communication device (ie, mobile terminal device A) of the requested object, thereby avoiding the called mobile communication device (ie, the mobile terminal) Device B) has the technical defect that it is unable to respond to the call request immediately when it is not carried, and improves the call response efficiency of the mobile terminal, which brings great convenience to the user's work and life.
  • another portable mobile communication device ie, mobile terminal device A
  • the called mobile communication device ie, the mobile terminal
  • Device B has the technical defect that it is unable to respond to the call request immediately when it is not carried, and improves the call response efficiency of the mobile terminal, which brings great convenience to the user's work and life.

Abstract

一种基于移动终端的自动呼叫转移方法、系统及移动终端,包括:若移动终端设备B接收到呼叫请求,则读取预存储的当前呼叫转移控制标志值;若所述控制标志值为true,则将所述移动终端设备B的呼叫请求转移至所述移动终端设备A;所述移动终端设备A根据当前呼叫模式以及当前信号模式进行相应的呼叫请求响应。

Description

一种基于移动终端的自动呼叫转移方法、系统及移动终端
本申请要求于2015年10月23日提交中国专利局、申请号为201510692463.3、发明名称为“一种基于移动终端的自动呼叫转移方法、系统及移动终端”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。
技术领域
本发明涉及移动终端技术领域,尤其涉及一种基于移动终端的自动呼叫转移方法、系统及移动终端。
背景技术
随着移动通讯设备的日益流行和普及,人与人之间的各种沟通联系越来越容易、方便、实时。用户可以利用手机随时随地与家人、朋友、同事、客户等进行远距离沟通交流。移动通讯设备的种类也日趋呈现多样化,比如手机、平板以及各种智能穿戴设备(比如智能手表,智能手环,智能眼镜等)等。总之,移动通讯设备的种类越来越多,同时也日益丰富和满足人们的各种通信和使用需求;并且随着人们生活水平的提高和使用诉求的多元化,不少人都同时拥有一个以上的移动通讯设备。
但是在现实生活中,用户并不是总能及时收到另一方的呼叫请求。例如,用户经常会有将移动通讯设备遗忘在家里或办公地点而没有时刻随身携带,而当这个时候刚好又有呼叫请求过来时,用户就没法即时响应了。这样一来,导致用户可能会漏掉很多很重要或者紧急的信息,影响用户的生活和工作,为用户带来不便。
由此可知,现有技术还有待于改进和发展。
技术问题
本发明要解决的技术问题在于,针对现有技术的上述缺陷,提供一种基于移动终端的自动呼叫转移方法、系统及移动终端,旨在通过本发明将呼叫请求自动转移到相关联的另一随身携带的移动通信设备,从而实现即时响应呼叫请求,避免用户漏掉很多很重要或者紧急的信息,为用户的工作生活带来便利。
技术解决方案
本发明解决技术问题所采用的技术方案如下:
一种基于移动终端的自动呼叫转移方法,包括步骤:
S10、检测到相关联的移动终端设备A和移动终端设备B均处于开启状态,若所述移动终端设备B接收到呼叫请求,则读取预存储的当前呼叫转移控制标志值;
S20、若所述预存储的当前呼叫转移控制标志值为true,则自动启动呼叫转移并将所述移动终端设备B的呼叫请求转移至所述移动终端设备A;若所述预存储的当前呼叫转移控制标志值为false,则所述移动终端设备B直接响应所述呼叫请求;
S30、所述移动终端设备A根据当前呼叫模式以及当前信号模式进行相应的呼叫请求响应,其中:
若所述移动终端设备A的当前呼叫模式为2G/3G/4G移动网络,且当前信号模式为2G/3G/4G移动信号,则所述移动终端设备A直接响应所述呼叫请求;
若所述移动终端设备A的当前呼叫模式为wifi无线网络,且当前信号模式为wifi无线信号,则所述移动终端设备A采用vowifi通话方式响应所述呼叫请求;
若所述移动终端设备A没有通话通信功能,或者当前没有信号模式,则所述移动终端设备A采用通知消息的方式响应所述呼叫请求。
其中,所述步骤S10具体包括:
S101、预先在移动终端中设定并存储一时间间隔阈值以及一距离阈值;
S102、若检测到相关联的移动终端设备A和移动终端设备B均处于开启状态,则分别获取所述移动终端设备A和移动终端设备B的位置坐标;
S103、根据所述位置坐标计算所述移动终端设备A和移动终端设备B的当前距离值,并以所述时间间隔阈值为检测周期将所述当前距离值与预设的所述距离阈值进行比较;
S104、若所述当前距离值小于所述距离阈值,则设置并存储当前呼叫转移控制标志值为false;
S105、若所述当前距离值大于所述距离阈值,则设置并存储当前呼叫转移控制标志值为true。
一种基于移动终端的自动呼叫转移方法,包括步骤:
S40、检测到相关联的移动终端设备A和移动终端设备B均处于开启状态,若所述移动终端设备B接收到呼叫请求,则读取预存储的当前呼叫转移控制标志值;
S50、若所述预存储的当前呼叫转移控制标志值为true,则自动启动呼叫转移并将所述移动终端设备B的呼叫请求转移至所述移动终端设备A;
S60、所述移动终端设备A根据当前呼叫模式以及当前信号模式进行相应的呼叫请求响应。
其中,所述步骤S40具体包括:
S401、预先在移动终端中设定并存储一时间间隔阈值以及一距离阈值;
S402、若检测到相关联的移动终端设备A和移动终端设备B均处于开启状态,则分别获取所述移动终端设备A和移动终端设备B的位置坐标;
S403、根据所述位置坐标计算所述移动终端设备A和移动终端设备B的当前距离值,并以所述时间间隔阈值为检测周期将所述当前距离值与预设的所述距离阈值进行比较;
S404、若所述当前距离值小于所述距离阈值,则设置并存储当前呼叫转移控制标志值为false;
S405、若所述当前距离值大于所述距离阈值,则设置并存储当前呼叫转移控制标志值为true。
其中,所述步骤S50之后还包括步骤:
若检测到所述预存储的当前呼叫转移控制标志值为false,则所述移动终端设备B直接响应所述呼叫请求。
其中,所述步骤S60具体包括步骤:
S601、若所述移动终端设备A的当前呼叫模式为2G/3G/4G移动网络,且当前信号模式为2G/3G/4G移动信号,则所述移动终端设备A直接响应所述呼叫请求;
S602、若所述移动终端设备A的当前呼叫模式为wifi无线网络,且当前信号模式为wifi无线信号,则所述移动终端设备A采用vowifi通话方式响应所述呼叫请求;
S603、若所述移动终端设备A没有通话通信功能,或者当前没有信号模式,则所述移动终端设备A采用通知消息的方式响应所述呼叫请求。
其中,设定所述时间间隔阈值为1分钟,所述距离阈值为5米。
一种基于移动终端的自动呼叫转移系统,包括:
呼叫请求模块,用于检测到相关联的移动终端设备A和移动终端设备B均处于开启状态,若所述移动终端设备B接收到呼叫请求,则读取预存储的当前呼叫转移控制标志值;
呼叫请求自动转移模块,用于若所述预存储的当前呼叫转移控制标志值为true,则自动启动呼叫转移并将所述移动终端设备B的呼叫请求转移至所述移动终端设备A;
呼叫请求响应模块,用于所述移动终端设备A根据当前呼叫模式以及当前信号模式进行相应的呼叫请求响应。
其中,所述呼叫请求模块具体包括:
预先设置单元,用于预先在移动终端中设定并存储一时间间隔阈值以及一距离阈值;
位置坐标获取单元,用于若检测到相关联的移动终端设备A和移动终端设备B均处于开启状态,则分别获取所述移动终端设备A和移动终端设备B的位置坐标;
距离值计算单元,用于根据所述位置坐标计算所述移动终端设备A和移动终端设备B的当前距离值,并以所述时间间隔阈值为检测周期将所述当前距离值与预设的所述距离阈值进行比较;
第一比较单元,用于若所述当前距离值小于所述距离阈值,则设置并存储当前呼叫转移控制标志值为false;
第二比较单元,用于若所述当前距离值大于所述距离阈值,则设置并存储当前呼叫转移控制标志值为true;
所述呼叫请求自动转移模块还包括:
呼叫请求直接响应单元,用于若检测到所述预存储的当前呼叫转移控制标志值为false,则所述移动终端设备B直接响应所述呼叫请求。
其中,所述呼叫请求响应模块具体包括:
第一呼叫请求响应单元,用于若所述移动终端设备A的当前呼叫模式为2G/3G/4G移动网络,且当前信号模式为2G/3G/4G移动信号,则所述移动终端设备A直接响应所述呼叫请求;
第二呼叫请求响应单元,用于若所述移动终端设备A的当前呼叫模式为wifi无线网络,且当前信号模式为wifi无线信号,则所述移动终端设备A采用vowifi通话方式响应所述呼叫请求;
第三呼叫请求响应单元,用于若所述移动终端设备A没有通话通信功能,或者当前没有信号模式,则所述移动终端设备A采用通知消息的方式响应所述呼叫请求。
其中,设定所述时间间隔阈值为1分钟,所述距离阈值为5米。
一种移动终端,包括:
呼叫请求模块,用于检测到相关联的移动终端设备A和移动终端设备B均处于开启状态,若所述移动终端设备B接收到呼叫请求,则读取预存储的当前呼叫转移控制标志值;
呼叫请求自动转移模块,用于若所述预存储的当前呼叫转移控制标志值为true,则自动启动呼叫转移并将所述移动终端设备B的呼叫请求转移至所述移动终端设备A;
呼叫请求响应模块,用于所述移动终端设备A根据当前呼叫模式以及当前信号模式进行相应的呼叫请求响应。
其中,所述呼叫请求模块具体包括:
预先设置单元,用于预先在移动终端中设定并存储一时间间隔阈值以及一距离阈值;
位置坐标获取单元,用于若检测到相关联的移动终端设备A和移动终端设备B均处于开启状态,则分别获取所述移动终端设备A和移动终端设备B的位置坐标;
距离值计算单元,用于根据所述位置坐标计算所述移动终端设备A和移动终端设备B的当前距离值,并以所述时间间隔阈值为检测周期将所述当前距离值与预设的所述距离阈值进行比较;
第一比较单元,用于若所述当前距离值小于所述距离阈值,则设置并存储当前呼叫转移控制标志值为false;
第二比较单元,用于若所述当前距离值大于所述距离阈值,则设置并存储当前呼叫转移控制标志值为true;
所述呼叫请求自动转移模块还包括:
呼叫请求直接响应单元,用于若检测到所述预存储的当前呼叫转移控制标志值为false,则所述移动终端设备B直接响应所述呼叫请求。
其中,所述呼叫请求响应模块具体包括:
第一呼叫请求响应单元,用于若所述移动终端设备A的当前呼叫模式为2G/3G/4G移动网络,且当前信号模式为2G/3G/4G移动信号,则所述移动终端设备A直接响应所述呼叫请求;
第二呼叫请求响应单元,用于若所述移动终端设备A的当前呼叫模式为wifi无线网络,且当前信号模式为wifi无线信号,则所述移动终端设备A采用vowifi通话方式响应所述呼叫请求;
第三呼叫请求响应单元,用于若所述移动终端设备A没有通话通信功能,或者当前没有信号模式,则所述移动终端设备A采用通知消息的方式响应所述呼叫请求。
其中,设定所述时间间隔阈值为1分钟,所述距离阈值为5米。本发明提供一种基于移动终端的自动呼叫转移方法、系统及移动终端,所述方法具体包括:检测到相关联的移动终端设备A和移动终端设备B均处于开启状态,若所述移动终端设备B接收到呼叫请求,则读取预存储的当前呼叫转移控制标志值;若所述预存储的当前呼叫转移控制标志值为true,则自动启动呼叫转移并将所述移动终端设备B的呼叫请求转移至所述移动终端设备A;所述移动终端设备A根据当前呼叫模式以及当前信号模式进行相应的呼叫请求响应。
有益效果
本发明通过将呼叫请求自动转移到被请求对象的另一随身携带的移动通信设备(即移动终端设备A)来实现即时响应该呼叫请求,从而避免了当被呼叫的移动通信设备(即移动终端设备B)没有随身携带时导致无法即时响应该呼叫请求这一技术缺陷,提高了移动终端的呼叫响应效率,为用户的工作及生活带来了极大的便利。
附图说明
图1是本发明基于移动终端的自动呼叫转移方法的较佳实施例的流程图;
图2是本发明基于移动终端的自动呼叫转移方法的应用实施例流程图一;
图3是本发明基于移动终端的自动呼叫转移方法的应用实施例流程图二;
图4是本发明基于移动终端的自动呼叫转移系统的较佳实施例的功能模块图。
本发明的最佳实施方式
本发明公开了一种基于移动终端的自动呼叫转移方法、系统及移动终端,为使本发明的目的、技术方案及优点更加清楚、明确,以下参照附图并举实施例对本发明进一步详细说明。应当理解,此处所描述的具体实施例仅仅用以解释本发明,并不用于限定本发明。
请参见图1,图1是本发明基于移动终端的自动呼叫转移方法的较佳实施例的流程图。图1所示的基于移动终端的自动呼叫转移方法,包括:
步骤S101、检测到相关联的移动终端设备A和移动终端设备B均处于开启状态,若所述移动终端设备B接收到呼叫请求,则读取预存储的当前呼叫转移控制标志值。
本发明实施例中,所述步骤S101具体包括:
S11、预先在移动终端中设定并存储一时间间隔阈值以及一距离阈值;
S12、若检测到相关联的移动终端设备A和移动终端设备B均处于开启状态,则分别获取所述移动终端设备A和移动终端设备B的位置坐标;
S13、根据所述位置坐标计算所述移动终端设备A和移动终端设备B的当前距离值,并以所述时间间隔阈值为检测周期将所述当前距离值与预设的所述距离阈值进行比较;
S14、若所述当前距离值小于所述距离阈值,则设置并存储当前呼叫转移控制标志值为false;
S15、若所述当前距离值大于所述距离阈值,则设置并存储当前呼叫转移控制标志值为true。
实际应用时,假定有两个移动通信设备同时存在,其中,设备A是当前用户随身携带的移动通信设备,不限定是否具备呼叫接听功能,而设备B是当前用户没有随身携带的移动通信设备,具有呼叫接听功能。设备A和设备B具有关联性,当设备B无法进行呼叫响应时可以将呼叫转移至设备A。
当前若设备A和设备B均处于开启状态,此时设备B接收到呼叫请求,移动终端根据预存储的当前呼叫转移控制标志值来判断是否进行呼叫转移。所述呼叫转移控制标志值根据设备A和设备B 的当前距离值进行设定,设定规则如下:(1)预先在移动终端中设定并存储一时间间隔阈值以及一距离阈值;(2)获取和记录设备A和设备B间的实际距离值,然后把该实际距离值和预设距离阈值进行对比;(3)如果小于预设距离阈值,则定义并设置该呼叫转移控制标志位为false(即关闭呼叫转移功能);反之,则定义并设置该呼叫转移控制标志位为true(即开启呼叫转移功能);(4)根据所述的时间间隔阈值循环执行步骤(2)至步骤(3)。
优选地,设定所述时间间隔阈值为1分钟,所述距离阈值为5米。当然,考虑到设备A和设备B间存在障碍物如墙壁、楼梯等情况时,可根据预设的情况减少该距离阈值。
进一步地,本发明实施例中涉及到的呼叫,不限定是基于2G/3G/4G移动网络的传统呼叫方式,也可以是基于VOWIFI或者社交应用(如Skype)等的任何其他呼叫方式。同时,本发明实施例中涉及到的移动终端设备可以是任何形态的移动通讯设备,包括但不限于以下列举的设备:手机、平板、以及各种智能穿戴设备(比如智能手表,智能手环,智能眼镜)等等。
步骤S102、若所述预存储的当前呼叫转移控制标志值为true,则自动启动呼叫转移并将所述移动终端设备B的呼叫请求转移至所述移动终端设备A。
步骤S103、所述移动终端设备A根据当前呼叫模式以及当前信号模式进行相应的呼叫请求响应。
本发明实施例中,所述步骤S103具体包括步骤:
S31、若所述移动终端设备A的当前呼叫模式为2G/3G/4G移动网络,且当前信号模式为2G/3G/4G移动信号,则所述移动终端设备A直接响应所述呼叫请求;
S32、若所述移动终端设备A的当前呼叫模式为wifi无线网络,且当前信号模式为wifi无线信号,则所述移动终端设备A采用vowifi通话方式响应所述呼叫请求;
S33、若所述移动终端设备A没有通话通信功能,或者当前没有信号模式,则所述移动终端设备A采用通知消息的方式响应所述呼叫请求。
即,当设备B接收到呼叫请求时,如果呼叫转移控制标志位的值为false(即关闭呼叫转移功能),就不启动呼叫转移功能,由设备B直接响应该呼叫请求;反之,如果呼叫转移控制标志位的值true(即开启呼叫转移功能),则启动呼叫转移,将设备B上的呼叫请求转移到设备A。此处的呼叫转移功能包括但不限于传统基于2G/3G/4G SIM卡的呼叫转移,或者基于数据业务(包括但不限于:IP呼叫,基于各种社交应用的语音或者视频呼叫)的任何形式的呼叫功能的转移。
进一步地,设备A接收到从设备B转移过来的呼叫请求后,根据当前呼叫模式以及当前信号模式进行相应的呼叫请求响应。包括但不限于以下列举的方式。
a. 设备A具有2G/3G/4G模式,可以承载SIM卡业务进行通话应答。 当收到来自设备B转移过来的呼叫请求时,且有2G/3G/4G信号时,可以直接响应呼叫请求。若无2G/3G/4G信号,采用下面的方式c来接收通知消息提醒。
b. 设备A具有WIFI模式,可以承载数据通话业务进行通话应答。当收到来自设备B转移过来的呼叫请求时,且在有WIFI 信号时,可以采用VOWIFI或者其他任何基于数据业务的通话方式来直接响应该呼叫请求。若无WIFI信号,采用下面的方式c来接收通知消息提醒。
c. 设备A无任何通话通信功能。当收到来自设备B的呼叫转移请求时,设备A会以呼叫请求通知消息的方式知会到被接收者。所述的通知消息可以是声音,文字,图片,指示灯等呈现形式,并可以一种或者多种呈现形式结合的方式提醒接收者有呼叫请求过来。
以下将通过具体的应用实施例对本发明做进一步说明。本应用实施例包括三步骤:距离间隔判断、呼叫转移控制、以及呼叫请求响应。
1、距离间隔判断
具体地,请参照图2,包括步骤:
S201、检测到设备A和设备B均处于开启状态;
S202、定位两个设备的位置并计算两者间的实际距离值;
S203、将实际距离值与预设的距离阀值进行对比,若检测到实际距离值大于预设的距离阀值,则进入步骤S204,否则,进入步骤S205;
S204、定义并存储该呼叫转移控制标志位为true(即开启呼叫转移功能),同时根据预设的时间间隔阈值返回执行步骤S202,从而实时对比实际距离值与预设的距离阀值;
S205、定义并存储该呼叫转移控制标志位为false(即关闭呼叫转移功能),同时根据预设的时间间隔阈值返回执行步骤S202,从而实时对比实际距离值与预设的距离阀值。
作为呼叫转移的触发条件之一,本应用实施例需要判断相关联的设备A和设备B之间的实际距离值,并根据此实际距离值来设定呼叫转移控制标志值。设定规则如下:(1)预先在移动终端中设定并存储一时间间隔阈值以及一距离阈值;(2)获取和记录设备A和设备B间的实际距离值,然后把该实际距离值和预设距离阈值进行对比;(3)如果小于预设距离阈值,则定义并设置该呼叫转移控制标志位为false(即关闭呼叫转移功能);反之,则定义并设置该呼叫转移控制标志位为true(即开启呼叫转移功能);(4)根据所述的时间间隔阈值循环执行步骤(2)至步骤(3)。
进一步地,所述的时间间隔阈值作为循环重复定位设备A和设备B的位置从而计算两个设备间实际距离的计时用。此时间间隔阈值可以是设备出厂前预设的或者用户设置的值,本发明在此不做限制。优选设定该时间间隔阈值为1分钟。
进一步地,本应用实施例中获取两个通信设备间的实际距离值,首先必须分别获取和记录两个设备的定位数据,然后基于两个数据,换算为同一个位置坐标平面内,计算出两个设备间的具体位置差,并存储记录下来。此处所述用于判断两个设备位置的定位技术,包括但不限于如下的几种较为成熟技术,如:基于蓝牙技术的室内定位技术,基于WIFI信号的定位技术, GNSS或有辅助定位的GNSS定位,小区定位, RF ID定位, 超声波定位,红外定位等,以及这些技术衍生和组合出来的各种可以用于定位的技术和方法。 本发明以这些技术获取的定位信息为输入参数,并不定义和限定此类技术的实现细节。
进一步地,所述的预设距离阈值可以是设备或者用户预设的任何一个数值。推荐默认为5米以上。当使用前述部分室内定位技术中,可提供或标识出设备A和设备B间存在障碍物如墙壁、楼梯等情况时,可根据预设的情况减少该预设距离阈值。
2、呼叫转移控制
具体地,请参照图3,包括步骤:
S301、当设备A和设备B同时开启,且此时设备B接收到呼叫请求;
S302、移动终端读取存储的呼叫转移控制标志位的值,若该呼叫转移控制标志位为false(即关闭呼叫转移功能),则进入步骤S305,否则,进入步骤S303;
S303、若该呼叫转移控制标志位为true(即开启呼叫转移功能),则启动呼叫转移功能,并将设备B的呼叫请求转移至设备A中;
S304、设备A根据当前呼叫模式以及当前信号模式启动呼叫请求响应;
S305、设备B直接响应该呼叫请求。
即,当设备B有呼叫请求进来时,系统首先读取呼叫转移控制标志位的值。如果呼叫转移控制标志位的值为关闭,就不启动呼叫转移功能,由设备B直接响应该呼叫请求;反之,则启动呼叫转移功能,将设备B上的呼叫请求转移到设备A。此处的呼叫转移功能包括但不限于传统基于2G/3G/4G SIM卡的呼叫转移,或者基于数据业务(包括但不限于:IP呼叫,基于各种社交应用的语音或者视频呼叫)的任何形式的呼叫功能的转移。
3、呼叫请求响应
设备A接收到从设备B转移过来的呼叫请求。设备A可以以任何方式响应该呼叫请求。此处列举几种方式,但是本发明并不限于下面列举的方式。
a. 设备A具有2G/3G/4G 模式,可以承载SIM卡业务进行通话应答。 当收到来自设备B转移过来的呼叫请求时,且有2G/3G/4G信号时,可以直接响应呼叫请求。若无2G/3G/4G信号,采用下面的c方式来接收通知消息提醒。
b. 设备A具有WIFI 模式,可以承载数据通话业务进行通话应答。当收到来自设备B转移过来的呼叫请求,且在有WIFI 信号时,可以采用VOWIFI或者其他任何基于数据业务的通话方式来直接响应该呼叫请求。若无WIFI信号,采用下面的c方式来接收通知消息提醒。
c. 设备A无任何通话通信功能。当收到来自设备B的呼叫转移请求时,设备A会以呼叫请求通知消息的方式知会到被接收者。通知消息可以是声音,文字,图片,指示灯等呈现形式,并可以一种或者多种呈现形式结合的方式提醒接收者有呼叫请求过来。
由上可见,本发明通过将呼叫请求自动转移到被请求对象的另一随身携带的移动通信设备(即移动终端设备A)来实现即时响应该呼叫请求,具体地是通过获取两个通信设备间的实际距离值来触发呼叫自动转移程序的启动,从而实现随时随地即时响应呼叫请求,这样一来,避免了当被呼叫的移动通信设备(即移动终端设备B)没有随身携带时导致无法即时响应该呼叫请求这一技术缺陷,提高了移动终端的呼叫响应效率,为用户的工作及生活带来了极大的便利。
基于上述实施例,本发明还提供一种基于移动终端的自动呼叫转移系统,如图4所示,包括:
呼叫请求模块100,用于检测到相关联的移动终端设备A和移动终端设备B均处于开启状态,若所述移动终端设备B接收到呼叫请求,则读取预存储的当前呼叫转移控制标志值;具体如上所述。
呼叫请求自动转移模块200,用于若所述预存储的当前呼叫转移控制标志值为true,则自动启动呼叫转移并将所述移动终端设备B的呼叫请求转移至所述移动终端设备A;具体如上所述。
呼叫请求响应模块300,用于所述移动终端设备A根据当前呼叫模式以及当前信号模式进行相应的呼叫请求响应;具体如上所述。
进一步地,所述呼叫请求模块100具体包括:
预先设置单元,用于预先在移动终端中设定并存储一时间间隔阈值以及一距离阈值;具体如上所述。
位置坐标获取单元,用于若检测到相关联的移动终端设备A和移动终端设备B均处于开启状态,则分别获取所述移动终端设备A和移动终端设备B的位置坐标;具体如上所述。
距离值计算单元,用于根据所述位置坐标计算所述移动终端设备A和移动终端设备B的当前距离值,并以所述时间间隔阈值为检测周期将所述当前距离值与预设的所述距离阈值进行比较;具体如上所述。
第一比较单元,用于若所述当前距离值小于所述距离阈值,则设置并存储当前呼叫转移控制标志值为false;具体如上所述。
第二比较单元,用于若所述当前距离值大于所述距离阈值,则设置并存储当前呼叫转移控制标志值为true;具体如上所述。
进一步地,所述呼叫请求自动转移模块200还包括:
呼叫请求直接响应单元,用于若检测到所述预存储的当前呼叫转移控制标志值为false,则所述移动终端设备B直接响应所述呼叫请求;具体如上所述。
进一步地,所述呼叫请求响应模块300具体包括:
第一呼叫请求响应单元,用于若所述移动终端设备A的当前呼叫模式为2G/3G/4G移动网络,且当前信号模式为2G/3G/4G移动信号,则所述移动终端设备A直接响应所述呼叫请求;具体如上所述。
第二呼叫请求响应单元,用于若所述移动终端设备A的当前呼叫模式为wifi无线网络,且当前信号模式为wifi无线信号,则所述移动终端设备A采用vowifi通话方式响应所述呼叫请求;具体如上所述。
第三呼叫请求响应单元,用于若所述移动终端设备A没有通话通信功能,或者当前没有信号模式,则所述移动终端设备A采用通知消息的方式响应所述呼叫请求;具体如上所述。
进一步地,本发明设定所述时间间隔阈值为1分钟,所述距离阈值为5米。
进一步地,本发明还提供一种移动终端,包括以上任一所述的基于移动终端的自动呼叫转移系统。
综上所述,本发明所提供的一种基于移动终端的自动呼叫转移方法、系统及移动终端,所述方法具体包括:检测到相关联的移动终端设备A和移动终端设备B均处于开启状态,若所述移动终端设备B接收到呼叫请求,则读取预存储的当前呼叫转移控制标志值;若所述预存储的当前呼叫转移控制标志值为true,则自动启动呼叫转移并将所述移动终端设备B的呼叫请求转移至所述移动终端设备A;所述移动终端设备A根据当前呼叫模式以及当前信号模式进行相应的呼叫请求响应。本发明通过将呼叫请求自动转移到被请求对象的另一随身携带的移动通信设备(即移动终端设备A)来实现即时响应该呼叫请求,从而避免了当被呼叫的移动通信设备(即移动终端设备B)没有随身携带时导致无法即时响应该呼叫请求这一技术缺陷,提高了移动终端的呼叫响应效率,为用户的工作及生活带来了极大的便利。
应当理解的是,本发明的应用不限于上述的举例,对本领域普通技术人员来说,可以根据上述说明加以改进或变换,所有这些改进和变换都应属于本发明所附权利要求的保护范围。

Claims (15)

  1. 一种基于移动终端的自动呼叫转移方法,包括步骤:
    S10、检测到相关联的移动终端设备A和移动终端设备B均处于开启状态,若所述移动终端设备B接收到呼叫请求,则读取预存储的当前呼叫转移控制标志值;
    S20、若所述预存储的当前呼叫转移控制标志值为true,则自动启动呼叫转移并将所述移动终端设备B的呼叫请求转移至所述移动终端设备A;若所述预存储的当前呼叫转移控制标志值为false,则所述移动终端设备B直接响应所述呼叫请求;
    S30、所述移动终端设备A根据当前呼叫模式以及当前信号模式进行相应的呼叫请求响应,其中:
    若所述移动终端设备A的当前呼叫模式为2G/3G/4G移动网络,且当前信号模式为2G/3G/4G移动信号,则所述移动终端设备A直接响应所述呼叫请求;
    若所述移动终端设备A的当前呼叫模式为wifi无线网络,且当前信号模式为wifi无线信号,则所述移动终端设备A采用vowifi通话方式响应所述呼叫请求;
    若所述移动终端设备A没有通话通信功能,或者当前没有信号模式,则所述移动终端设备A采用通知消息的方式响应所述呼叫请求。
  2. 根据权利要求1所述的基于移动终端的自动呼叫转移方法,其中,所述步骤S10具体包括:
    S101、预先在移动终端中设定并存储一时间间隔阈值以及一距离阈值;
    S102、若检测到相关联的移动终端设备A和移动终端设备B均处于开启状态,则分别获取所述移动终端设备A和移动终端设备B的位置坐标;
    S103、根据所述位置坐标计算所述移动终端设备A和移动终端设备B的当前距离值,并以所述时间间隔阈值为检测周期将所述当前距离值与预设的所述距离阈值进行比较;
    S104、若所述当前距离值小于所述距离阈值,则设置并存储当前呼叫转移控制标志值为false;
    S105、若所述当前距离值大于所述距离阈值,则设置并存储当前呼叫转移控制标志值为true。
  3. 一种基于移动终端的自动呼叫转移方法,包括步骤:
    S40、检测到相关联的移动终端设备A和移动终端设备B均处于开启状态,若所述移动终端设备B接收到呼叫请求,则读取预存储的当前呼叫转移控制标志值;
    S50、若所述预存储的当前呼叫转移控制标志值为true,则自动启动呼叫转移并将所述移动终端设备B的呼叫请求转移至所述移动终端设备A;
    S60、所述移动终端设备A根据当前呼叫模式以及当前信号模式进行相应的呼叫请求响应。
  4. 根据权利要求3所述的基于移动终端的自动呼叫转移方法,其中,所述步骤S40具体包括:
    S401、预先在移动终端中设定并存储一时间间隔阈值以及一距离阈值;
    S402、若检测到相关联的移动终端设备A和移动终端设备B均处于开启状态,则分别获取所述移动终端设备A和移动终端设备B的位置坐标;
    S403、根据所述位置坐标计算所述移动终端设备A和移动终端设备B的当前距离值,并以所述时间间隔阈值为检测周期将所述当前距离值与预设的所述距离阈值进行比较;
    S404、若所述当前距离值小于所述距离阈值,则设置并存储当前呼叫转移控制标志值为false;
    S405、若所述当前距离值大于所述距离阈值,则设置并存储当前呼叫转移控制标志值为true。
  5. 根据权利要求4所述的基于移动终端的自动呼叫转移方法,其中,所述步骤S50之后还包括步骤:
    若检测到所述预存储的当前呼叫转移控制标志值为false,则所述移动终端设备B直接响应所述呼叫请求。
  6. 根据权利要求5所述的基于移动终端的自动呼叫转移方法,其中,所述步骤S60具体包括步骤:
    S601、若所述移动终端设备A的当前呼叫模式为2G/3G/4G移动网络,且当前信号模式为2G/3G/4G移动信号,则所述移动终端设备A直接响应所述呼叫请求;
    S602、若所述移动终端设备A的当前呼叫模式为wifi无线网络,且当前信号模式为wifi无线信号,则所述移动终端设备A采用vowifi通话方式响应所述呼叫请求;
    S603、若所述移动终端设备A没有通话通信功能,或者当前没有信号模式,则所述移动终端设备A采用通知消息的方式响应所述呼叫请求。
  7. 根据权利要求4所述的基于移动终端的自动呼叫转移方法,其中,设定所述时间间隔阈值为1分钟,所述距离阈值为5米。
  8. 一种基于移动终端的自动呼叫转移系统,包括:
    呼叫请求模块,用于检测到相关联的移动终端设备A和移动终端设备B均处于开启状态,若所述移动终端设备B接收到呼叫请求,则读取预存储的当前呼叫转移控制标志值;
    呼叫请求自动转移模块,用于若所述预存储的当前呼叫转移控制标志值为true,则自动启动呼叫转移并将所述移动终端设备B的呼叫请求转移至所述移动终端设备A;
    呼叫请求响应模块,用于所述移动终端设备A根据当前呼叫模式以及当前信号模式进行相应的呼叫请求响应。
  9. 根据权利要求8所述基于移动终端的自动呼叫转移系统,其中,所述呼叫请求模块具体包括:
    预先设置单元,用于预先在移动终端中设定并存储一时间间隔阈值以及一距离阈值;
    位置坐标获取单元,用于若检测到相关联的移动终端设备A和移动终端设备B均处于开启状态,则分别获取所述移动终端设备A和移动终端设备B的位置坐标;
    距离值计算单元,用于根据所述位置坐标计算所述移动终端设备A和移动终端设备B的当前距离值,并以所述时间间隔阈值为检测周期将所述当前距离值与预设的所述距离阈值进行比较;
    第一比较单元,用于若所述当前距离值小于所述距离阈值,则设置并存储当前呼叫转移控制标志值为false;
    第二比较单元,用于若所述当前距离值大于所述距离阈值,则设置并存储当前呼叫转移控制标志值为true;
    所述呼叫请求自动转移模块还包括:
    呼叫请求直接响应单元,用于若检测到所述预存储的当前呼叫转移控制标志值为false,则所述移动终端设备B直接响应所述呼叫请求。
  10. 根据权利要求8所述基于移动终端的自动呼叫转移系统,其中,所述呼叫请求响应模块具体包括:
    第一呼叫请求响应单元,用于若所述移动终端设备A的当前呼叫模式为2G/3G/4G移动网络,且当前信号模式为2G/3G/4G移动信号,则所述移动终端设备A直接响应所述呼叫请求;
    第二呼叫请求响应单元,用于若所述移动终端设备A的当前呼叫模式为wifi无线网络,且当前信号模式为wifi无线信号,则所述移动终端设备A采用vowifi通话方式响应所述呼叫请求;
    第三呼叫请求响应单元,用于若所述移动终端设备A没有通话通信功能,或者当前没有信号模式,则所述移动终端设备A采用通知消息的方式响应所述呼叫请求。
  11. 根据权利要求9所述基于移动终端的自动呼叫转移系统,其中,设定所述时间间隔阈值为1分钟,所述距离阈值为5米。
  12. 一种移动终端,包括:
    呼叫请求模块,用于检测到相关联的移动终端设备A和移动终端设备B均处于开启状态,若所述移动终端设备B接收到呼叫请求,则读取预存储的当前呼叫转移控制标志值;
    呼叫请求自动转移模块,用于若所述预存储的当前呼叫转移控制标志值为true,则自动启动呼叫转移并将所述移动终端设备B的呼叫请求转移至所述移动终端设备A;
    呼叫请求响应模块,用于所述移动终端设备A根据当前呼叫模式以及当前信号模式进行相应的呼叫请求响应。
  13. 根据权利要求12所述的移动终端,其中,所述呼叫请求模块具体包括:
    预先设置单元,用于预先在移动终端中设定并存储一时间间隔阈值以及一距离阈值;
    位置坐标获取单元,用于若检测到相关联的移动终端设备A和移动终端设备B均处于开启状态,则分别获取所述移动终端设备A和移动终端设备B的位置坐标;
    距离值计算单元,用于根据所述位置坐标计算所述移动终端设备A和移动终端设备B的当前距离值,并以所述时间间隔阈值为检测周期将所述当前距离值与预设的所述距离阈值进行比较;
    第一比较单元,用于若所述当前距离值小于所述距离阈值,则设置并存储当前呼叫转移控制标志值为false;
    第二比较单元,用于若所述当前距离值大于所述距离阈值,则设置并存储当前呼叫转移控制标志值为true;
    所述呼叫请求自动转移模块还包括:
    呼叫请求直接响应单元,用于若检测到所述预存储的当前呼叫转移控制标志值为false,则所述移动终端设备B直接响应所述呼叫请求。
  14. 根据权利要求12所述的移动终端,其中,所述呼叫请求响应模块具体包括:
    第一呼叫请求响应单元,用于若所述移动终端设备A的当前呼叫模式为2G/3G/4G移动网络,且当前信号模式为2G/3G/4G移动信号,则所述移动终端设备A直接响应所述呼叫请求;
    第二呼叫请求响应单元,用于若所述移动终端设备A的当前呼叫模式为wifi无线网络,且当前信号模式为wifi无线信号,则所述移动终端设备A采用vowifi通话方式响应所述呼叫请求;
    第三呼叫请求响应单元,用于若所述移动终端设备A没有通话通信功能,或者当前没有信号模式,则所述移动终端设备A采用通知消息的方式响应所述呼叫请求。
  15. 根据权利要求13所述的移动终端,其中,设定所述时间间隔阈值为1分钟,所述距离阈值为5米。
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