WO2019161801A1 - 来电转移方法、移动终端及系统 - Google Patents

来电转移方法、移动终端及系统 Download PDF

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Publication number
WO2019161801A1
WO2019161801A1 PCT/CN2019/076090 CN2019076090W WO2019161801A1 WO 2019161801 A1 WO2019161801 A1 WO 2019161801A1 CN 2019076090 W CN2019076090 W CN 2019076090W WO 2019161801 A1 WO2019161801 A1 WO 2019161801A1
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WO
WIPO (PCT)
Prior art keywords
beacon
mobile terminal
call
server
fixed landline
Prior art date
Application number
PCT/CN2019/076090
Other languages
English (en)
French (fr)
Inventor
李涛
杜凯
张锐华
熊菲苇
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
Publication of WO2019161801A1 publication Critical patent/WO2019161801A1/zh

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Classifications

    • 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
    • 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
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M3/00Automatic or semi-automatic exchanges
    • H04M3/42Systems providing special services or facilities to subscribers
    • H04M3/58Arrangements for transferring received calls from one subscriber to another; Arrangements affording interim conversations between either the calling or the called party and a third party
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W40/00Communication routing or communication path finding
    • H04W40/24Connectivity information management, e.g. connectivity discovery or connectivity update
    • H04W40/244Connectivity information management, e.g. connectivity discovery or connectivity update using a network of reference devices, e.g. beaconing
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M2203/00Aspects of automatic or semi-automatic exchanges
    • H04M2203/20Aspects of automatic or semi-automatic exchanges related to features of supplementary services
    • H04M2203/205Broadcasting
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M2203/00Aspects of automatic or semi-automatic exchanges
    • H04M2203/20Aspects of automatic or semi-automatic exchanges related to features of supplementary services
    • H04M2203/2094Proximity
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M2207/00Type of exchange or network, i.e. telephonic medium, in which the telephonic communication takes place
    • H04M2207/20Type of exchange or network, i.e. telephonic medium, in which the telephonic communication takes place hybrid systems
    • H04M2207/206Type of exchange or network, i.e. telephonic medium, in which the telephonic communication takes place hybrid systems composed of PSTN and wireless network
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W8/00Network data management
    • H04W8/18Processing of user or subscriber data, e.g. subscribed services, user preferences or user profiles; Transfer of user or subscriber data
    • H04W8/20Transfer of user or subscriber data

Definitions

  • the present invention relates to the field of mobile terminal application technologies, and in particular, to a call transfer method, a mobile terminal, and a system.
  • mobile terminals have many functions, and some mobile terminals can be used to answer and make calls.
  • a mobile phone when a mobile phone receives an incoming call, it usually directly makes a call after answering the call, but the effect of the mobile phone call and the landline call is not Similarly, the signal of the mobile phone depends on the nearby base station signal. The call quality may be better than that of the fixed telephone, and the mobile phone radiation is larger than the landline. In addition, the comfort of the mobile phone is not as good as that of the landline. For example, the mobile phone is prone to heat when making a call, especially In the summer, a lot of user feedback will appear when you answer the ear to the face because it is too hot and sweaty.
  • An embodiment of the present invention provides a call forwarding method, a mobile terminal, and a system, which are configured to collect a broadcast message of a surrounding Beacon beacon through a mobile terminal, and upload the collected broadcast message to the server according to the Beacon beacon and the fixed telephone recorded on the server.
  • the mapping relationship can obtain the fixed telephone number corresponding to the Beacon beacon, and then transfer the incoming call to the fixed telephone according to the SIP protocol, so as to achieve the purpose of quickly transferring the incoming call and facilitating the user.
  • the embodiment of the invention provides a call transfer method, which includes:
  • the message of the Beacon beacon within the preset range is obtained and uploaded to the server;
  • the server arranges according to the strength of the transmission power of the Beacon beacon from high to low, obtains the first Beacon beacon matching the fixed landline number, and sends the fixed landline number to the mobile terminal;
  • the mobile terminal sends a SIP transfer message carrying the fixed landline number to the dial-out terminal, controls the mobile terminal to disconnect the call with the dial-out terminal, and establishes a call connection between the fixed landline and the dial-out terminal.
  • the message of the Beacon beacon in the preset range is obtained and uploaded to the server, and further includes:
  • the Beacon beacon is set in advance on the fixed base unit.
  • the server marks the mapping relationship between the Beacon beacon and the fixed base unit.
  • the message of the Beacon beacon in the preset range is obtained and uploaded to the server, including:
  • the mobile terminal When the mobile terminal detects that the incoming call or the incoming call is already in the state of being answered, the mobile terminal starts the function of searching for the Beacon beacon;
  • the mobile terminal acquires a message of a Beacon beacon within a preset range, and uploads the message of the Beacon beacon to a server.
  • the preset range is 1-3 meters.
  • the server performs the order according to the strength of the transmission power of the Beacon beacon from high to low, obtains the first Beacon beacon matching the fixed landline number, and sends the fixed landline number.
  • the mobile terminal including:
  • the server After receiving the message of the Beacon beacon sent by the mobile terminal, the server performs the order according to the strength of the transmission power of the Beacon beacon from high to low;
  • the server obtains the first Beacon beacon matching the fixed landline number according to the mapping relationship between the Beacon beacon and the fixed landline;
  • the server matches the fixed landline with the strongest transmission power, the fixed landline number is acquired and sent to the mobile terminal.
  • the mobile terminal sends a SIP transfer message carrying a fixed landline number to a dial-out terminal, and controls the mobile terminal to disconnect the call with the dial-out terminal, and establishes a fixed landline and a telephone.
  • Dial-out call connection including:
  • the mobile terminal After the mobile terminal receives the fixed landline number sent by the server, the mobile terminal sends a SIP transfer message carrying the fixed landline number to the dialing terminal;
  • the mobile terminal disconnects the call with the telephone dialing end, and the telephone dialing end establishes a call connection with the fixed landline according to the SIP transfer message.
  • the controlling the mobile terminal disconnects the call with the dial-out terminal, and the call connection between the fixed landline and the dial-out terminal is completed based on the SIP protocol.
  • An embodiment of the present invention further provides a mobile terminal, including: a processor, a memory, and a communication bus;
  • Storing on the memory is a computer readable program executable by the processor
  • the communication bus implements connection communication between the processor and the memory
  • the processor implements the following steps when executing the computer readable program:
  • the message of the Beacon beacon within the preset range is obtained and uploaded to the server;
  • the server arranges according to the strength of the transmission power of the Beacon beacon from high to low, obtains the first Beacon beacon matching the fixed landline number, and sends the fixed landline number to the mobile terminal;
  • the mobile terminal sends a SIP transfer message carrying the fixed landline number to the dial-out terminal, controls the mobile terminal to disconnect the call with the dial-out terminal, and establishes a call connection between the fixed landline and the dial-out terminal.
  • the processor when the mobile terminal receives the incoming call or the received call, obtains the message of the Beacon beacon in the preset range and uploads the message to the server, and further includes:
  • the Beacon beacon is set in advance on the fixed base unit.
  • the server marks the mapping relationship between the Beacon beacon and the fixed base unit.
  • the processor performs the step of acquiring a message of a Beacon beacon within a preset range and uploading the message to the server when the mobile terminal receives an incoming call or has received an incoming call, including:
  • the mobile terminal When the mobile terminal detects that the incoming call or the incoming call is already in the state of being answered, the mobile terminal starts the function of searching for the Beacon beacon;
  • the mobile terminal acquires a message of a Beacon beacon within a preset range, and uploads the message of the Beacon beacon to a server.
  • the preset range is 1-3 meters.
  • the processor performs, according to the strength of the sending power of the Beacon beacon, the server is arranged in order from the highest to the lowest, and obtains the first Beacon beacon matching the fixed landline number, and
  • the steps of sending a fixed landline number to the mobile terminal include:
  • the server After receiving the message of the Beacon beacon sent by the mobile terminal, the server performs the order according to the strength of the transmission power of the Beacon beacon from high to low;
  • the server obtains the first Beacon beacon matching the fixed landline number according to the mapping relationship between the Beacon beacon and the fixed landline;
  • the server matches the fixed landline with the strongest transmission power, the fixed landline number is acquired and sent to the mobile terminal.
  • the processor executes the mobile terminal to send a SIP transfer message carrying a fixed landline number to a dial-out terminal, and controls the mobile terminal to disconnect the call with the dial-out terminal, and establishes a call at the same time.
  • the steps of the call connection between the fixed landline and the telephone dialing terminal include:
  • the mobile terminal After the mobile terminal receives the fixed landline number sent by the server, the mobile terminal sends a SIP transfer message carrying the fixed landline number to the dialing terminal;
  • the mobile terminal disconnects the call with the telephone dialing end, and the telephone dialing end establishes a call connection with the fixed landline according to the SIP transfer message.
  • the controlling the mobile terminal disconnects the call with the dial-out terminal, and the call connection between the fixed landline and the dial-out terminal is completed based on the SIP protocol.
  • the embodiment of the present invention further provides an incoming call transfer system, configured to implement a call transfer method, including a server, a dial-out terminal, and a fixed landline, wherein the call transfer system further includes a mobile terminal;
  • the message of the Beacon beacon in the preset range is obtained and uploaded to the server; the server arranges according to the strength of the Beacon beacon transmission power from high to low, and obtains the first matching fixed landline.
  • the Beacon beacon of the number, and the fixed landline number is sent to the mobile terminal; the mobile terminal sends a SIP transfer message carrying the fixed landline number to the dialing end of the phone, controls the mobile terminal to disconnect the call with the dialing end, and establishes a fixed landline The call connection to the outgoing call.
  • the message of the Beacon beacon in the preset range is obtained and uploaded to the server, and further includes:
  • the Beacon beacon is set in advance on the fixed base unit.
  • the server marks the mapping relationship between the Beacon beacon and the fixed base unit.
  • the message of the Beacon beacon in the preset range is obtained and uploaded to the server, including:
  • the mobile terminal When the mobile terminal detects that the incoming call or the incoming call is already in the state of being answered, the mobile terminal starts the function of searching for the Beacon beacon;
  • the mobile terminal acquires a message of a Beacon beacon within a preset range, and uploads the message of the Beacon beacon to a server.
  • the server performs the order according to the strength of the transmission power of the Beacon beacon from high to low, obtains the first Beacon beacon matching the fixed landline number, and sends the fixed landline number.
  • the mobile terminal including:
  • the server After receiving the message of the Beacon beacon sent by the mobile terminal, the server performs the order according to the strength of the transmission power of the Beacon beacon from high to low;
  • the server obtains the first Beacon beacon matching the fixed landline number according to the mapping relationship between the Beacon beacon and the fixed landline;
  • the server matches the fixed landline with the strongest transmission power, the fixed landline number is acquired and sent to the mobile terminal.
  • the mobile terminal sends a SIP transfer message carrying a fixed landline number to a dial-out terminal, and controls the mobile terminal to disconnect the call with the dial-out terminal, and establishes a fixed landline and a telephone.
  • Dial-out call connection including:
  • the mobile terminal After the mobile terminal receives the fixed landline number sent by the server, the mobile terminal sends a SIP transfer message carrying the fixed landline number to the dialing terminal;
  • the mobile terminal disconnects the call with the telephone dialing end, and the telephone dialing end establishes a call connection with the fixed landline according to the SIP transfer message.
  • the controlling the mobile terminal disconnects the call with the dial-out terminal, and simultaneously establishing the call connection between the fixed landline and the dial-out terminal is completed based on the SIP protocol.
  • the invention provides an incoming call transfer method, a mobile terminal and a system, the method comprising: when a mobile terminal receives an incoming call or has received an incoming call, acquires a message of a Beacon beacon within a preset range and uploads the message to the server; the server according to the Beacon letter The intensity of the target transmission power is sequentially arranged from high to low, obtaining the first Beacon beacon matching the fixed landline number, and transmitting the fixed landline number to the mobile terminal; the mobile terminal transmitting the SIP transfer message carrying the fixed landline number to the phone
  • the dial-out terminal controls the mobile terminal to disconnect the call with the dial-out terminal, and establishes a call connection between the fixed landline and the dial-out terminal.
  • the invention enables the user to quickly transfer the incoming call to the fixed landline according to the needs of the user after receiving the incoming call, so that the user can answer the incoming call.
  • step S10 is a flow chart of step S10 in a preferred embodiment of the call transfer method of the present invention
  • step S20 is a flow chart of step S20 in a preferred embodiment of the call transfer method of the present invention.
  • step S30 is a flow chart of step S30 in a preferred embodiment of the call transfer method of the present invention.
  • FIG. 5 is a schematic diagram of an operating environment of a preferred embodiment of an incoming call transfer procedure of the present invention.
  • FIG. 6 is a functional block diagram of a preferred embodiment of the call transfer system of the present invention.
  • the call forwarding method according to the preferred embodiment of the present invention is an incoming call transfer method, wherein the call transfer method includes the following steps:
  • Step S10 When the mobile terminal receives the incoming call or receives the incoming call, the message of the Beacon beacon within the preset range is obtained and uploaded to the server.
  • the method further includes: setting a Beacon beacon on the fixed landline in advance, and after the setting is completed, the server labels the mapping relationship between the Beacon beacon and the fixed landline.
  • Beacon technology which uses the signal strength of Beacon beacons to determine the location of the terminal. Take Apple's iBeacon and Google's Eddystone as examples. These two technologies are relatively close, and are all Beacon beacon broadcast messages. Contains company ID, UUID (Universally Unique Identifier, General (usually referred to as building), Minor (location information in the building), Tx Power (transmission power), the location of the Beacon beacon can be obtained by company ID, UUID, Major, Minor The distance from the terminal to the Beacon beacon can be judged by Tx Power, and the Tx Power of the Beacon beacon closest to the terminal should be the largest.
  • UUID Universalally Unique Identifier
  • Minor location information in the building
  • Tx Power transmission power
  • FIG. 2 is a flowchart of step S10 in the call forwarding method provided by the present invention.
  • the step S10 includes:
  • the mobile terminal When the mobile terminal detects that the incoming call is in progress or the incoming call is already in the received state, the mobile terminal starts the function of searching for the Beacon beacon;
  • the mobile terminal acquires a message of a Beacon beacon within a preset range, and uploads the message of the Beacon beacon to a server.
  • the preset range is 1-3 meters.
  • Step S20 The server sequentially arranges the strength of the transmission power of the Beacon beacon from high to low, acquires the first Beacon beacon matching the fixed landline number, and sends the fixed landline number to the mobile terminal.
  • the Beacon beacon is installed in the attachment as much as possible, and the mapping relationship between the Beacon beacon and the fixed landline is marked on the server.
  • the server ranks from the highest to the lowest according to its Tx Power strength, finds the first Beacon beacon with the matching fixed telephone number, and sends the fixed telephone number to the server.
  • Mobile terminal such as a mobile phone).
  • FIG. 3 is a flowchart of step S20 in the call forwarding method provided by the present invention.
  • the step S20 includes:
  • the server After receiving the message of the Beacon beacon sent by the mobile terminal, the server performs the arrangement according to the strength of the transmission power of the Beacon beacon from high to low.
  • the server acquires, according to a mapping relationship between the Beacon beacon and the fixed landline, a first Beacon beacon that matches the fixed landline number;
  • Step S30 The mobile terminal sends a SIP transfer message carrying the fixed landline number to the dialing end of the phone, and controls the mobile terminal to disconnect the call with the dialing end of the phone, and establish a call connection between the fixed landline and the dialing end of the phone.
  • the mobile terminal transfers to the discovered fixed landline number, and the call transfer here has two main types for the user, one is that the user transfers when the incoming call rings, and the other is the call transfer after the incoming call is connected, in the SIP.
  • Protocol can be implemented by SIP extension method Refer, SIP (Session Initiation Protocol, Session Initiation Protocol is a text-based network transport protocol similar to HTTP.
  • the Session Initiation Protocol is a protocol stack that aggregates registration, calling, answering, and hangup protocols. It is used to initialize, manage, and terminate the network.
  • the voice and video sessions are specifically used to generate, modify, and terminate sessions between one or more participants.
  • SIP's business model is a peer-to-peer protocol, which has two elements - SIP user agent and SIP network server.
  • the user agent is the terminal system element of the call, and the SIP server is the network device that handles signaling associated with multiple calls.
  • the user agent itself has a client element (user agent client UAC) and a server element (user agent server UAS). The client element initiates the call and the server element answers the call. This allows point-to-point calls to be done through a client-server protocol.
  • SIP Session Initiation Protocol
  • PSTN Public Switched Telephone Network
  • SIP also implements more advanced call processing functions in many signaling systems 7 (SS7). Although these two protocols are far apart, SS7 is a highly centralized protocol. It is characterized by a highly complex central network structure and a smart dumb terminal (traditional telephone).
  • SIP is a point-to-point protocol, so it only requires a relatively simple (and therefore highly scalable) core network, and the processing work is delegated to smart endpoints (terminals with hardware or software) attached to the edge of the network.
  • Many of the features of SIP are implemented in endpoints.
  • the other features of the protocol are that it is a text protocol, so it is easy to debug and flexible in structure; and it is a neutral underlying transport protocol, available TCP or UDP (recommended UDP); simultaneous call and media information transmission: media The transfer of information is transmitted by the SDP.
  • the SIP protocol is increasingly favored by the industry for its simplicity, ease of expansion, and ease of implementation. It is gradually becoming an important protocol in the NGN (Next Generation Network) and 3G Multimedia Subsystem domains, and is increasingly appearing on the market. A large number of SIP-enabled client software and intelligent multimedia terminals, as well as servers and softswitch devices implemented using the SIP protocol.
  • SIP calling is a very successful VoIP application with the following advantages: 1. SIP calls are based on the current Internet system. The access is convenient and the coverage is wide. The required equipment is also very simple. Other similar technologies basically do not have the above conditions; 2. The traditional telephone charges a high amount when making domestic and international long-distance calls, and SIP calls can be used to make international or domestic long-distance calls only by paying local calls and corresponding service fees; since VoIP requires less investment, less space resources are occupied.
  • IP telecom industry can provide a variety of communication services, such as: phone to phone, computer to phone, fax to fax, fax to fax mailbox, fax mailbox to fax machine, fax mailbox to web pages, PC files (Excel, Word, E-mail) or image to fax machine, multi-point video conferencing system, web phone, etc.;
  • SIP is an IP telecom service, so its application is very flexible and very rich in functions;
  • VoIP call quality is better, the traditional telephone line due to technical defects, can not avoid distortion, and the distortion is relatively serious; VoIP uses the Internet for digital transmission, to ensure that IP phones have a good call quality.
  • FIG. 4 is a flowchart of step S30 in the call forwarding method provided by the present invention.
  • the step S30 includes:
  • the mobile terminal After the mobile terminal receives the fixed landline number sent by the server, the mobile terminal sends a SIP transfer message carrying a fixed landline number to the dialing end of the phone;
  • the mobile terminal disconnects the call with the dialing terminal, and the call dialing end establishes a call connection with the fixed landline according to the SIP transfer message.
  • control mobile terminal disconnects the call with the dial-out terminal, and the call connection for establishing the fixed landline and the dial-out terminal is completed based on the SIP protocol.
  • Transferor Actively initiates the role of Call Transfer
  • Transferee Passively accept the role of Call Transfer
  • Transfer Target fixed landline, the target of Call Transfer
  • Transferee calls Transferor, and Transferor decides to let Transfer The call between the Target and the Transferee, the Transferor sends a SIP Refer message to the Transferee, and the message carries the Transfer Target's Contact information, so that the subsequent Transferee will try to call Transfer. Target, and disconnect from the Transferor.
  • the invention realizes that the process of manually inquiring (or consulting) the number of the fixed telephone nearby, the process of querying and informing the other party is very poor, and the user operation experience is very poor, and the invention avoids the process of the user querying the landline number. It is convenient for users to transfer calls.
  • the present invention further provides a mobile terminal based on the above call forwarding method; the mobile terminal includes a processor 10, a memory 20, and a display 30.
  • Figure 5 shows only some of the components of the mobile terminal, but it should be understood that not all illustrated components may be implemented, and more or fewer components may be implemented instead.
  • the memory 20 may be an internal storage unit of the mobile terminal, such as a hard disk or memory of the mobile terminal, in some embodiments.
  • the memory 20 may also be an external storage device of the mobile terminal in other embodiments, such as a plug-in hard disk equipped on the mobile terminal, and a smart memory card (Smart Media) Card, SMC), Secure Digital (SD) card, Flash Card, etc. Further, the memory 20 may also include both an internal storage unit of the mobile terminal and an external storage device.
  • the memory 20 is configured to store application software and various types of data installed on the mobile terminal, such as the program code for installing the mobile terminal.
  • the memory 20 can also be used to temporarily store data that has been output or is about to be output.
  • the memory transfer program 40 is stored on the memory 20, and the call transfer program 40 can be executed by the processor 10 to implement the call transfer method of the present application.
  • the processor 10 may be a central processor (Central) in some embodiments A processing unit (CPU), a microprocessor or other data processing chip for running program code or processing data stored in the memory 20, such as performing the call transfer method or the like.
  • Central central processor
  • CPU central processing unit
  • microprocessor microprocessor or other data processing chip for running program code or processing data stored in the memory 20, such as performing the call transfer method or the like.
  • the display 30 may be an LED display, a liquid crystal display, a touch liquid crystal display, and an OLED (Organic) in some embodiments. Light-Emitting Diode, organic light-emitting diodes, etc.
  • the display 30 is used to display information on the mobile terminal and a user interface for displaying visualizations.
  • the components 10-30 of the mobile terminal communicate with one another via a system bus.
  • the message of the Beacon beacon within the preset range is obtained and uploaded to the server;
  • the server arranges according to the strength of the transmission power of the Beacon beacon from high to low, obtains the first Beacon beacon matching the fixed landline number, and sends the fixed landline number to the mobile terminal;
  • the mobile terminal sends a SIP transfer message carrying the fixed landline number to the dial-out terminal, controls the mobile terminal to disconnect the call with the dial-out terminal, and establishes a call connection between the fixed landline and the dial-out terminal.
  • the processor 10 when the mobile terminal receives the incoming call or has answered the incoming call, before acquiring the message of the Beacon beacon in the preset range and uploading the message to the server, further includes:
  • the Beacon beacon is set in advance on the fixed base unit.
  • the server marks the mapping relationship between the Beacon beacon and the fixed base unit.
  • the processor 10 performs the steps of acquiring a Beacon beacon message within a preset range and uploading the message to the server when the mobile terminal receives an incoming call or has received an incoming call, including:
  • the mobile terminal When the mobile terminal detects that the incoming call or the incoming call is already in the state of being answered, the mobile terminal starts the function of searching for the Beacon beacon;
  • the mobile terminal acquires a message of a Beacon beacon within a preset range, and uploads the message of the Beacon beacon to a server.
  • the predetermined range is 1-3 meters.
  • the processor 10 executes the server to sequentially arrange the strength of the transmission power of the Beacon beacon from high to low, acquires the first Beacon beacon matching the fixed landline number, and sends the fixed landline number to the mobile.
  • the steps of the terminal include:
  • the server After receiving the message of the Beacon beacon sent by the mobile terminal, the server performs the order according to the strength of the transmission power of the Beacon beacon from high to low;
  • the server obtains the first Beacon beacon matching the fixed landline number according to the mapping relationship between the Beacon beacon and the fixed landline;
  • the server matches the fixed landline with the strongest transmission power, the fixed landline number is acquired and sent to the mobile terminal.
  • the processor 10 executes the mobile terminal to send a SIP transfer message carrying a fixed landline number to the dial-out terminal, and controls the mobile terminal to disconnect the call with the dial-out terminal, and establishes a fixed landline and dial-out.
  • the steps of the end call connection include:
  • the mobile terminal After the mobile terminal receives the fixed landline number sent by the server, the mobile terminal sends a SIP transfer message carrying the fixed landline number to the dialing terminal;
  • the mobile terminal disconnects the call with the telephone dialing end, and the telephone dialing end establishes a call connection with the fixed landline according to the SIP transfer message.
  • the controlling the mobile terminal disconnects the call with the dial-out terminal, and the call connection establishing the fixed landline and the dial-out terminal is completed based on the SIP protocol.
  • the present invention also provides a computer readable storage medium, wherein the computer readable storage medium stores one or more programs, the one or more programs being executable by one or more processors to implement the above The steps of the call transfer method described.
  • the present invention further provides an incoming call transfer system.
  • the server includes a server 101, a telephone dialing terminal 102, a fixed landline 104, and a mobile terminal 103.
  • the mobile terminal 103 When the mobile terminal 103 receives an incoming call or a received call from the dialing terminal 102, the message of the Beacon beacon in the preset range is acquired and uploaded to the server 101; the strength of the sending power of the server 101 according to the Beacon beacon is from high to low. Arranging sequentially, obtaining the first Beacon beacon matching the fixed landline number, and transmitting the fixed landline number to the mobile terminal 103; the mobile terminal 103 transmitting a SIP transfer message carrying the fixed landline number to the dialing terminal 102 to control the movement The terminal 103 disconnects the call with the dial-out terminal 102 while establishing a call connection between the fixed landline 104 and the dial-out terminal 102.
  • the method when the mobile terminal receives the incoming call or has answered the incoming call, before acquiring the message of the Beacon beacon within the preset range and uploading the message to the server, the method further includes:
  • the Beacon beacon is set in advance on the fixed base unit.
  • the server marks the mapping relationship between the Beacon beacon and the fixed base unit.
  • the message of the Beacon beacon within the preset range is acquired and uploaded to the server, including:
  • the mobile terminal When the mobile terminal detects that the incoming call or the incoming call is already in the state of being answered, the mobile terminal starts the function of searching for the Beacon beacon;
  • the mobile terminal acquires a message of a Beacon beacon within a preset range, and uploads the message of the Beacon beacon to a server.
  • the server performs the order of the Beacon beacons according to the strength of the transmission power of the Beacon beacons, and obtains the first Beacon beacon matching the fixed landline number, and sends the fixed landline number to the mobile terminal, including:
  • the server After receiving the message of the Beacon beacon sent by the mobile terminal, the server performs the order according to the strength of the transmission power of the Beacon beacon from high to low;
  • the server obtains the first Beacon beacon matching the fixed landline number according to the mapping relationship between the Beacon beacon and the fixed landline;
  • the server matches the fixed landline with the strongest transmission power, the fixed landline number is acquired and sent to the mobile terminal.
  • the mobile terminal sends a SIP transfer message carrying a fixed landline number to the dial-out terminal, controls the mobile terminal to disconnect the call with the dial-out terminal, and establishes a call connection between the fixed landline and the dial-out terminal.
  • the mobile terminal After the mobile terminal receives the fixed landline number sent by the server, the mobile terminal sends a SIP transfer message carrying the fixed landline number to the dialing terminal;
  • the mobile terminal disconnects the call with the telephone dialing end, and the telephone dialing end establishes a call connection with the fixed landline according to the SIP transfer message.
  • the controlling the mobile terminal disconnects the call with the dial-out terminal, and the call connection establishing the fixed landline and the dial-out terminal is completed based on the SIP protocol.
  • the present invention acquires a message of a Beacon beacon within a preset range and uploads it to a server when the mobile terminal receives an incoming call or has received an incoming call; the server sequentially arranges the strength of the transmission power of the Beacon beacon from high to low.
  • the server sequentially arranges the strength of the transmission power of the Beacon beacon from high to low.
  • the mobile terminal sends a SIP transfer message carrying the fixed landline number to the dialing terminal, controlling the mobile terminal to disconnect and dial out
  • the end of the call at the same time establish a call connection between the fixed landline and the telephone dial-out.
  • the invention enables the user to quickly transfer the incoming call to the fixed landline according to the needs of the user after receiving the incoming call, so that the user can answer the incoming call.
  • a computer program to instruct related hardware (such as a processor, a controller, etc.), and the program can be stored in one.
  • the program when executed, may include the processes of the various method embodiments as described above.
  • the storage medium described therein may be a memory, a magnetic disk, an optical disk, or the like.

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Abstract

公开一种来电转移方法、移动终端及系统,该方法包括:当移动终端接到来电或者已接听来电时,获取预设范围内Beacon信标的消息并上传服务器;服务器根据Beacon信标的发送功率从高到低的强度,获取第一个匹配固定座机号码的Beacon信标并发送到移动终端;移动终端发送携带有固定座机号码的SIP 转移消息到电话拨出端,将来电转移到固定座机上。

Description

来电转移方法、移动终端及系统
本申请要求于2018年02月26日提交中国专利局、申请号为201810163095.7、发明名称为“一种来电转移方法、移动终端、系统及存储介质”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应用技术领域,尤其涉及一种来电转移方法、移动终端及系统。
背景技术
目前移动终端的功能繁多,部分移动终端都可以用来接听和拨打电话,以手机为例,手机在收到来电的时候,一般是通过接听后直接进行通话,但是手机通话和座机通话的效果不一样,手机的信号取决于附近的基站信号,可能会出现通话质量不如固定电话好,并且手机辐射比座机大,另外手机使用的舒适度不如座机,比如手机在打电话的时候容易发热,尤其是在夏季,很多用户反馈在接听的时候会出现接听的耳朵到面部因为太热而出现汗渍的情况。
那么,一般遇到这种情况,如果我们看到周边有座机,就希望对方呼叫到该座机,或者能将来电转移到座机上进行接听,但现有技术中还未能实现。
因此,现有技术还有待于改进和发展。
技术问题
本发明实施例提供一种来电转移方法、移动终端及系统,旨在通过移动终端收集周边Beacon信标的广播消息,把收集到的广播消息上传服务器,根据服务器上记录的Beacon信标和固定电话的映射关系,可获取Beacon信标对应的固定电话号码,然后把来电根据SIP协议转移到固定电话上,以达到快速转移来电,方便用户使用的目的。
技术解决方案
本发明实施例提供一种来电转移方法,其包括:
当移动终端接到来电或者已接听来电时,获取预设范围内Beacon信标的消息并上传到服务器;
服务器根据Beacon信标的发送功率的强度从高到低依次进行排列,获取第一个匹配固定座机号码的Beacon信标,并将固定座机号码发送到移动终端;
移动终端发送携带有固定座机号码的SIP 转移消息到电话拨出端,控制移动终端断开与电话拨出端的通话,同时建立固定座机和电话拨出端的通话连接。
本发明实施例所述的来电转移方法中,所述当移动终端接到来电或者已接听来电时,获取预设范围内Beacon信标的消息并上传到服务器之前,还包括:
预先在固定座机上设置Beacon信标,当设置完成后,服务器将Beacon信标与固定座机的映射关系进行标注。
本发明实施例所述的来电转移方法中,所述当移动终端接到来电或者已接听来电时,获取预设范围内Beacon信标的消息并上传到服务器,包括:
当移动终端检测到正在来电或者来电已经处于被接听的状态时,所述移动终端开启搜索Beacon信标的功能;
所述移动终端获取预设范围内的Beacon信标的消息,并将所述Beacon信标的消息上传到服务器。
本发明实施例所述的来电转移方法中,所述预设范围为1-3米。
本发明实施例所述的来电转移方法中,所述服务器根据Beacon信标的发送功率的强度从高到低依次进行排列,获取第一个匹配固定座机号码的Beacon信标,并将固定座机号码发送到移动终端,包括:
所述服务器接收所述移动终端发送的Beacon信标的消息后,根据Beacon信标的发送功率的强度从高到低依次进行排列;
所述服务器根据Beacon信标与固定座机的映射关系,获取第一个匹配固定座机号码的Beacon信标;
当所述服务器匹配到发送功率最强的固定座机后,获取固定座机号码并发送到所述移动终端。
本发明实施例所述的来电转移方法中,所述移动终端发送携带有固定座机号码的SIP 转移消息到电话拨出端,控制移动终端断开与电话拨出端的通话,同时建立固定座机和电话拨出端的通话连接,包括:
当所述移动终端接收到所述服务器发送的固定座机号码后,所述移动终端将携带有固定座机号码的SIP转移消息发送到电话拨出端;
当所述SIP转移消息发送完成后,所述移动终端断开与电话拨出端的通话,所述电话拨出端根据所述SIP转移消息建立与固定座机的通话连接。
本发明实施例所述的来电转移方法中,所述控制移动终端断开与电话拨出端的通话,同时建立固定座机和电话拨出端的通话连接基于SIP协议完成。
本发明实施例还提供一种移动终端,其包括:处理器、存储器和通信总线;
所述存储器上存储有可被所述处理器执行的计算机可读程序;
所述通信总线实现处理器和存储器之间的连接通信;
所述处理器执行所述计算机可读程序时实现如下步骤:
当移动终端接到来电或者已接听来电时,获取预设范围内Beacon信标的消息并上传到服务器;
服务器根据Beacon信标的发送功率的强度从高到低依次进行排列,获取第一个匹配固定座机号码的Beacon信标,并将固定座机号码发送到移动终端;
移动终端发送携带有固定座机号码的SIP 转移消息到电话拨出端,控制移动终端断开与电话拨出端的通话,同时建立固定座机和电话拨出端的通话连接。
本发明实施例所述的移动终端中,所述处理器执行所述当移动终端接到来电或者已接听来电时,获取预设范围内Beacon信标的消息并上传到服务器的步骤之前,还包括:
预先在固定座机上设置Beacon信标,当设置完成后,服务器将Beacon信标与固定座机的映射关系进行标注。
本发明实施例所述的移动终端中,所述处理器执行所述当移动终端接到来电或者已接听来电时,获取预设范围内Beacon信标的消息并上传到服务器的步骤,包括:
当移动终端检测到正在来电或者来电已经处于被接听的状态时,所述移动终端开启搜索Beacon信标的功能;
所述移动终端获取预设范围内的Beacon信标的消息,并将所述Beacon信标的消息上传到服务器。
本发明实施例所述的移动终端中,所述预设范围为1-3米。
本发明实施例所述的移动终端中,所述处理器执行所述服务器根据Beacon信标的发送功率的强度从高到低依次进行排列,获取第一个匹配固定座机号码的Beacon信标,并将固定座机号码发送到移动终端的步骤,包括:
所述服务器接收所述移动终端发送的Beacon信标的消息后,根据Beacon信标的发送功率的强度从高到低依次进行排列;
所述服务器根据Beacon信标与固定座机的映射关系,获取第一个匹配固定座机号码的Beacon信标;
当所述服务器匹配到发送功率最强的固定座机后,获取固定座机号码并发送到所述移动终端。
本发明实施例所述的移动终端中,所述处理器执行所述移动终端发送携带有固定座机号码的SIP 转移消息到电话拨出端,控制移动终端断开与电话拨出端的通话,同时建立固定座机和电话拨出端的通话连接的步骤,包括:
当所述移动终端接收到所述服务器发送的固定座机号码后,所述移动终端将携带有固定座机号码的SIP转移消息发送到电话拨出端;
当所述SIP转移消息发送完成后,所述移动终端断开与电话拨出端的通话,所述电话拨出端根据所述SIP转移消息建立与固定座机的通话连接。
本发明实施例所述的移动终端中,所述控制移动终端断开与电话拨出端的通话,同时建立固定座机和电话拨出端的通话连接基于SIP协议完成。
本发明实施例还提供一种来电转移系统,用于实现来电转移方法,包括服务器、电话拨出端以及固定座机,其中,所述来电转移系统还包括移动终端;
当移动终端接到来电或者已接听来电时,获取预设范围内Beacon信标的消息并上传到服务器;服务器根据Beacon信标的发送功率的强度从高到低依次进行排列,获取第一个匹配固定座机号码的Beacon信标,并将固定座机号码发送到移动终端;移动终端发送携带有固定座机号码的SIP 转移消息到电话拨出端,控制移动终端断开与电话拨出端的通话,同时建立固定座机和电话拨出端的通话连接。
本发明实施例所述的来电转移系统中,所述当移动终端接到来电或者已接听来电时,获取预设范围内Beacon信标的消息并上传到服务器之前,还包括:
预先在固定座机上设置Beacon信标,当设置完成后,服务器将Beacon信标与固定座机的映射关系进行标注。
本发明实施例所述的来电转移系统中,所述当移动终端接到来电或者已接听来电时,获取预设范围内Beacon信标的消息并上传到服务器,包括:
当移动终端检测到正在来电或者来电已经处于被接听的状态时,所述移动终端开启搜索Beacon信标的功能;
所述移动终端获取预设范围内的Beacon信标的消息,并将所述Beacon信标的消息上传到服务器。
本发明实施例所述的来电转移系统中,所述服务器根据Beacon信标的发送功率的强度从高到低依次进行排列,获取第一个匹配固定座机号码的Beacon信标,并将固定座机号码发送到移动终端,包括:
所述服务器接收所述移动终端发送的Beacon信标的消息后,根据Beacon信标的发送功率的强度从高到低依次进行排列;
所述服务器根据Beacon信标与固定座机的映射关系,获取第一个匹配固定座机号码的Beacon信标;
当所述服务器匹配到发送功率最强的固定座机后,获取固定座机号码并发送到所述移动终端。
本发明实施例所述的来电转移系统中,所述移动终端发送携带有固定座机号码的SIP 转移消息到电话拨出端,控制移动终端断开与电话拨出端的通话,同时建立固定座机和电话拨出端的通话连接,包括:
当所述移动终端接收到所述服务器发送的固定座机号码后,所述移动终端将携带有固定座机号码的SIP转移消息发送到电话拨出端;
当所述SIP转移消息发送完成后,所述移动终端断开与电话拨出端的通话,所述电话拨出端根据所述SIP转移消息建立与固定座机的通话连接。
本发明实施例所述的来电转移系统中,所述控制移动终端断开与电话拨出端的通话,同时建立固定座机和电话拨出端的通话连接基于SIP协议完成。
有益效果
本发明提供的一种来电转移方法、移动终端及系统,所述方法包括:当移动终端接到来电或者已接听来电时,获取预设范围内Beacon信标的消息并上传到服务器;服务器根据Beacon信标的发送功率的强度从高到低依次进行排列,获取第一个匹配固定座机号码的Beacon信标,并将固定座机号码发送到移动终端;移动终端发送携带有固定座机号码的SIP 转移消息到电话拨出端,控制移动终端断开与电话拨出端的通话,同时建立固定座机和电话拨出端的通话连接。本发明通过来电转移的方式使得用户在接收到来电后,可以根据自身需求将来电快速转移到固定座机上,方便用户接听来电。
附图说明
图1是本发明来电转移方法的较佳实施例的流程图;
图2是本发明来电转移方法的较佳实施例中步骤S10的流程图;
图3是本发明来电转移方法的较佳实施例中步骤S20的流程图;
图4是本发明来电转移方法的较佳实施例中步骤S30的流程图;
图5为本发明来电转移程序的较佳实施例的运行环境示意图;
图6为本发明来电转移系统的较佳实施例的功能原理框图。
本发明的实施方式
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。
本发明较佳实施例所述的来电转移方法,如图1所示,一种来电转移方法,其中,所述来电转移方法包括以下步骤:
步骤S10、当移动终端接到来电或者已接听来电时,获取预设范围内Beacon信标的消息并上传到服务器。
具体地,所述步骤S10之前还包括:预先在固定座机上设置Beacon信标,当设置完成后,服务器将Beacon信标与固定座机的映射关系进行标注。
目前室内定位的主要技术为Beacon技术,该技术利用Beacon信标的信号强度来确定终端的位置,以苹果的iBeacon和Google的Eddystone为例,这两种技术比较接近,都是Beacon信标广播消息里包含公司ID、UUID(Universally Unique Identifier,通用唯一识别码)、Major(通常指建筑物)、Minor(建筑物里的位置信息)、Tx Power(发送功率),通过公司ID、UUID、Major、Minor可以获取到Beacon信标的位置、通过Tx Power可以判断出终端到该Beacon信标的距离,距离该终端最近的Beacon信标的Tx Power应该是最大的。
具体过程请参阅图2,其为本发明提供的来电转移方法中步骤S10的流程图。
如图2所示,所述步骤S10包括:
S11、当移动终端检测到正在来电或者来电已经处于被接听的状态时,所述移动终端开启搜索Beacon信标的功能;
S12、所述移动终端获取预设范围内的Beacon信标的消息,并将所述Beacon信标的消息上传到服务器。
本实施例中,所述预设范围为1-3米。
步骤S20、服务器根据Beacon信标的发送功率的强度从高到低依次进行排列,获取第一个匹配固定座机号码的Beacon信标,并将固定座机号码发送到移动终端。
具体地,在Beacon布局的时候,在有固定座机的位置,尽量在其附件有安装Beacon信标,并把该Beacon信标和固定座机的映射关系在服务器上标注起来,这个时候,当用户在通话时,上传其目前获取到的Beacon信标的消息给服务器,服务器根据其Tx Power强度从高到低排列,找到第一个有匹配固定电话号码的Beacon信标,并把该固定电话号码发送给移动终端(如手机)。
具体过程请参阅图3,其为本发明提供的来电转移方法中步骤S20的流程图。
如图3所示,所述步骤S20包括:
S21、所述服务器接收所述移动终端发送的Beacon信标的消息后,根据Beacon信标的发送功率的强度从高到低依次进行排列;
S22、所述服务器根据Beacon信标与固定座机的映射关系,获取第一个匹配固定座机号码的Beacon信标;
S23、当所述服务器匹配到发送功率最强的固定座机后,获取固定座机号码并发送到所述移动终端。
步骤S30、移动终端发送携带有固定座机号码的SIP 转移消息到电话拨出端,控制移动终端断开与电话拨出端的通话,同时建立固定座机和电话拨出端的通话连接。
具体地,移动终端转移到发现的固定座机号码,这里的来电转移,对用户来说主要有两种,一种是来电振铃时用户转移,一种是来电接通后的通话转移,在SIP协议上,可以通过SIP扩展方法Refer来实现,SIP(Session Initiation Protocol,会话初始协议)是一项类似于HTTP的基于文本的网络传输协议,会话初始协议是一个协议栈,集合了注册、呼叫、接听、挂断等相关协议;用于初始、管理和终止网络中的语音和视频会话,具体地说就是用来生成、修改和终结一个或多个参与者之间的会话。SIP的业务模式是一个点对点协议,其中有两个要素——SIP用户代理和SIP网络服务器。用户代理是呼叫的终端系统元素,而SIP服务器是处理与多个呼叫相关联信令的网络设备。用户代理本身具有一客户机元素(用户代理客户机UAC)和一服务器元素(用户代理服务器UAS)。客户机元素初始呼叫,而服务器元素应答呼叫。这种允许点到点的呼叫通过客户机-服务器协议来完成。
SIP通话的核心特点集中在SIP的设计目标之一是提供类似公用交换电话网(PSTN)中呼叫处理功能的扩展集,在这个扩展集中,实现类似日常电话的操作:拨号,振铃,回铃音或者忙音,只是实现方式和术语有所不同,SIP也实现了许多信令系统7(SS7)中更高级的呼叫处理功能,尽管这两个协议相差很远,SS7是一个高度集中处理的协议,其特点表现为高复杂度的中心网络结构和无智能的哑终端(传统的电话机)。SIP则是一个点对点协议,所以它只需要一个相对简单的(因此也高度可扩展的)核心网络,而将处理工作下放给连接在网络边缘的智能端点(装有硬件或软件的终端设备)。SIP的许多功能在端点中实现。而协议的其他特点还有它是一个文本协议,所以易于调测,结构灵活;而且它是一个中性的底层传输协议,可用TCP或UDP(推荐UDP);同时呼叫和媒体信息同时传送:媒体信息的传送由SDP传送。
SIP协议凭借其简单、易于扩展、便于实现等诸多优点越来越得到业界的青睐,它正逐步成为NGN(下一代网络)和3G多媒体子系统域中的重要协议,并且市场上出现越来越多的支持SIP的客户端软件和智能多媒体终端,以及用SIP协议实现的服务器和软交换设备。
SIP通话是一种非常成功的VoIP应用,它的优势如下:      1、SIP通话基于现在的因特网系统,接入方便、覆盖面广,需要的设备也非常简单,其它类似技术基本上都不具备以上条件;      2、传统电话在拨打国内国际长途电话时收费高,而使用SIP通话只需支付市内电话以及相应的服务费就可拨打国际或国内长途;由于VoIP需要的投资少,对线路资源占用的少,所以电信部门对VoIP长途业务的收费是非常低廉的,用户在使用后会感到巨大的经济实惠;      3、IP电信业能够提供多样化的通信服务,如:电话到电话、电脑到电话、传真到传真、传真到传真信箱、传真信箱到传真机、传真信箱到网页、PC文件(Excel、Word、E-mail)或图像到传真机、多点视频会议系统、网页电话等等;SIP正是一种IP电信业务,所以它的应用方式非常灵活,功能十分丰富;
4、VoIP的通话质量比较好,传统电话线路由于技术方面的先天缺陷,无法避免失真现象,而且失真相对严重;VoIP利用互联网进行数字式传输,保证IP电话有比较良好的通话质量。
具体过程请参阅图4,其为本发明提供的来电转移方法中步骤S30的流程图。
如图4所示,所述步骤S30包括:
S31、当所述移动终端接收到所述服务器发送的固定座机号码后,所述移动终端将携带有固定座机号码的SIP转移消息发送到电话拨出端;
S32、当所述SIP转移消息发送完成后,所述移动终端断开与电话拨出端的通话,所述电话拨出端根据所述SIP转移消息建立与固定座机的通话连接。
也就是说,所述控制移动终端断开与电话拨出端的通话,同时建立固定座机和电话拨出端的通话连接基于SIP协议完成。
举例如下:
Transferor:主动发起Call Transfer(通话转移)的角色;
Transferee:被动接受Call Transfer的角色;
Transfer Target:固定座机,Call Transfer的目标;
实现过程为:Transferee打电话给Transferor,Transferor接听后决定让Transfer Target和Transferee之间通话,Transferor发送SIP Refer消息到Transferee,并且该消息携带Transfer Target的Contact信息,这样后续Transferee会尝试呼叫Transfer Target,并且断开与Transferor的通话。
例如,当用户在室内通过手机接听来电时,如果遇到手机信号不好、通话音质差、以及其他不舒适的原因时,希望把该通电话在身边的固定座机上继续进行时,可通过本发明来实现,通过本发明来实现也避免了手动查询(或者去咨询)身边固定电话的号码的过程、查询和告知对方这个过程用户操作体验会非常差,本发明避免了用户查询座机号码的过程,方便用户转移来电。
如图5所示,基于上述来电转移方法,本发明还相应提供了一种移动终端;所述移动终端包括处理器10、存储器20及显示器30。图5仅示出了移动终端的部分组件,但是应理解的是,并不要求实施所有示出的组件,可以替代的实施更多或者更少的组件。
所述存储器20在一些实施例中可以是所述移动终端的内部存储单元,例如移动终端的硬盘或内存。所述存储器20在另一些实施例中也可以是所述移动终端的外部存储设备,例如所述移动终端上配备的插接式硬盘,智能存储卡(Smart Media Card, SMC),安全数字(Secure Digital, SD)卡,闪存卡(Flash Card)等。进一步地,所述存储器20还可以既包括所移动终端的内部存储单元也包括外部存储设备。所述存储器20用于存储安装于所述移动终端的应用软件及各类数据,例如所述安装移动终端的程序代码等。所述存储器20还可以用于暂时地存储已经输出或者将要输出的数据。在一实施例中,存储器20上存储有来电转移程序40,该来电转移程序40可被处理器10所执行,从而实现本申请中来电转移方法。
所述处理器10在一些实施例中可以是一中央处理器(Central Processing Unit, CPU),微处理器或其他数据处理芯片,用于运行所述存储器20中存储的程序代码或处理数据,例如执行所述来电转移方法等。
所述显示器30在一些实施例中可以是LED显示器、液晶显示器、触控式液晶显示器以及OLED(Organic Light-Emitting Diode,有机发光二极管)触摸器等。所述显示器30用于显示在所述移动终端的信息以及用于显示可视化的用户界面。所述移动终端的部件10-30通过系统总线相互通信。
在一实施例中,当处理器10执行所述存储器20中来电转移程序40时实现以下步骤:
当移动终端接到来电或者已接听来电时,获取预设范围内Beacon信标的消息并上传到服务器;
服务器根据Beacon信标的发送功率的强度从高到低依次进行排列,获取第一个匹配固定座机号码的Beacon信标,并将固定座机号码发送到移动终端;
移动终端发送携带有固定座机号码的SIP 转移消息到电话拨出端,控制移动终端断开与电话拨出端的通话,同时建立固定座机和电话拨出端的通话连接。
在一些实施例中,处理器10执行所述当移动终端接到来电或者已接听来电时,获取预设范围内Beacon信标的消息并上传到服务器的步骤之前,还包括:
预先在固定座机上设置Beacon信标,当设置完成后,服务器将Beacon信标与固定座机的映射关系进行标注。
在一些实施例中,处理器10执行所述当移动终端接到来电或者已接听来电时,获取预设范围内Beacon信标的消息并上传到服务器的步骤,包括:
当移动终端检测到正在来电或者来电已经处于被接听的状态时,所述移动终端开启搜索Beacon信标的功能;
所述移动终端获取预设范围内的Beacon信标的消息,并将所述Beacon信标的消息上传到服务器。
在一些实施例中,所述预设范围为1-3米。
在一些实施例中,处理器10执行所述服务器根据Beacon信标的发送功率的强度从高到低依次进行排列,获取第一个匹配固定座机号码的Beacon信标,并将固定座机号码发送到移动终端的步骤,包括:
所述服务器接收所述移动终端发送的Beacon信标的消息后,根据Beacon信标的发送功率的强度从高到低依次进行排列;
所述服务器根据Beacon信标与固定座机的映射关系,获取第一个匹配固定座机号码的Beacon信标;
当所述服务器匹配到发送功率最强的固定座机后,获取固定座机号码并发送到所述移动终端。
在一些实施例中,处理器10执行所述移动终端发送携带有固定座机号码的SIP 转移消息到电话拨出端,控制移动终端断开与电话拨出端的通话,同时建立固定座机和电话拨出端的通话连接的步骤,包括:
当所述移动终端接收到所述服务器发送的固定座机号码后,所述移动终端将携带有固定座机号码的SIP转移消息发送到电话拨出端;
当所述SIP转移消息发送完成后,所述移动终端断开与电话拨出端的通话,所述电话拨出端根据所述SIP转移消息建立与固定座机的通话连接。
在一些实施例中,所述控制移动终端断开与电话拨出端的通话,同时建立固定座机和电话拨出端的通话连接基于SIP协议完成。
本发明还提供一种计算机可读存储介质,其中,所述计算机可读存储介质存储有一个或者多个程序,所述一个或者多个程序可被一个或者多个处理器执行,以实现如上所述的来电转移方法的步骤。
基于上述来电转移方法和移动终端,本发明还相应提供一种来电转移系统,请参阅图6,其包括:服务器101、电话拨出端102、固定座机104以及移动终端103。
其中,当移动终端103接到电话拨出端102的来电或者已接听来电时,获取预设范围内Beacon信标的消息并上传到服务器101;服务器101根据Beacon信标的发送功率的强度从高到低依次进行排列,获取第一个匹配固定座机号码的Beacon信标,并将固定座机号码发送到移动终端103;移动终端103发送携带有固定座机号码的SIP 转移消息到电话拨出端102,控制移动终端103断开与电话拨出端102的通话,同时建立固定座机104和电话拨出端102的通话连接。
在一些实施例中,所述当移动终端接到来电或者已接听来电时,获取预设范围内Beacon信标的消息并上传到服务器之前,还包括:
预先在固定座机上设置Beacon信标,当设置完成后,服务器将Beacon信标与固定座机的映射关系进行标注。
在一些实施例中,所述当移动终端接到来电或者已接听来电时,获取预设范围内Beacon信标的消息并上传到服务器,包括:
当移动终端检测到正在来电或者来电已经处于被接听的状态时,所述移动终端开启搜索Beacon信标的功能;
所述移动终端获取预设范围内的Beacon信标的消息,并将所述Beacon信标的消息上传到服务器。
在一些实施例中,所述服务器根据Beacon信标的发送功率的强度从高到低依次进行排列,获取第一个匹配固定座机号码的Beacon信标,并将固定座机号码发送到移动终端,包括:
所述服务器接收所述移动终端发送的Beacon信标的消息后,根据Beacon信标的发送功率的强度从高到低依次进行排列;
所述服务器根据Beacon信标与固定座机的映射关系,获取第一个匹配固定座机号码的Beacon信标;
当所述服务器匹配到发送功率最强的固定座机后,获取固定座机号码并发送到所述移动终端。
在一些实施例中,所述移动终端发送携带有固定座机号码的SIP 转移消息到电话拨出端,控制移动终端断开与电话拨出端的通话,同时建立固定座机和电话拨出端的通话连接,包括:
当所述移动终端接收到所述服务器发送的固定座机号码后,所述移动终端将携带有固定座机号码的SIP转移消息发送到电话拨出端;
当所述SIP转移消息发送完成后,所述移动终端断开与电话拨出端的通话,所述电话拨出端根据所述SIP转移消息建立与固定座机的通话连接。
在一些实施例中,所述控制移动终端断开与电话拨出端的通话,同时建立固定座机和电话拨出端的通话连接基于SIP协议完成。
综上所述,本发明当移动终端接到来电或者已接听来电时,获取预设范围内Beacon信标的消息并上传到服务器;服务器根据Beacon信标的发送功率的强度从高到低依次进行排列,获取第一个匹配固定座机号码的Beacon信标,并将固定座机号码发送到移动终端;移动终端发送携带有固定座机号码的SIP 转移消息到电话拨出端,控制移动终端断开与电话拨出端的通话,同时建立固定座机和电话拨出端的通话连接。本发明通过来电转移的方式使得用户在接收到来电后,可以根据自身需求将来电快速转移到固定座机上,方便用户接听来电。
当然,本领域普通技术人员可以理解实现上述实施例方法中的全部或部分流程,是可以通过计算机程序来指令相关硬件(如处理器,控制器等)来完成,所述的程序可存储于一计算机可读取的存储介质中,该程序在执行时可包括如上述各方法实施例的流程。其中所述的存储介质可为存储器、磁碟、光盘等。
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 (20)

  1. 一种来电转移方法,其包括:
    当移动终端接到来电或者已接听来电时,获取预设范围内Beacon信标的消息并上传到服务器;
    服务器根据Beacon信标的发送功率的强度从高到低依次进行排列,获取第一个匹配固定座机号码的Beacon信标,并将固定座机号码发送到移动终端;
    移动终端发送携带有固定座机号码的SIP 转移消息到电话拨出端,控制移动终端断开与电话拨出端的通话,同时建立固定座机和电话拨出端的通话连接。
  2. 根据权利要求1所述的来电转移方法,其中,所述当移动终端接到来电或者已接听来电时,获取预设范围内Beacon信标的消息并上传到服务器之前,还包括:
    预先在固定座机上设置Beacon信标,当设置完成后,服务器将Beacon信标与固定座机的映射关系进行标注。
  3. 根据权利要求1所述的来电转移方法,其中,所述当移动终端接到来电或者已接听来电时,获取预设范围内Beacon信标的消息并上传到服务器,包括:
    当移动终端检测到正在来电或者来电已经处于被接听的状态时,所述移动终端开启搜索Beacon信标的功能;
    所述移动终端获取预设范围内的Beacon信标的消息,并将所述Beacon信标的消息上传到服务器。
  4. 根据权利要求3所述的来电转移方法,其中,所述预设范围为1-3米。
  5. 根据权利要求2所述的来电转移方法,其中,所述服务器根据Beacon信标的发送功率的强度从高到低依次进行排列,获取第一个匹配固定座机号码的Beacon信标,并将固定座机号码发送到移动终端,包括:
    所述服务器接收所述移动终端发送的Beacon信标的消息后,根据Beacon信标的发送功率的强度从高到低依次进行排列;
    所述服务器根据Beacon信标与固定座机的映射关系,获取第一个匹配固定座机号码的Beacon信标;
    当所述服务器匹配到发送功率最强的固定座机后,获取固定座机号码并发送到所述移动终端。
  6. 根据权利要求1所述的来电转移方法,其中,所述移动终端发送携带有固定座机号码的SIP 转移消息到电话拨出端,控制移动终端断开与电话拨出端的通话,同时建立固定座机和电话拨出端的通话连接,包括:
    当所述移动终端接收到所述服务器发送的固定座机号码后,所述移动终端将携带有固定座机号码的SIP转移消息发送到电话拨出端;
    当所述SIP转移消息发送完成后,所述移动终端断开与电话拨出端的通话,所述电话拨出端根据所述SIP转移消息建立与固定座机的通话连接。
  7. 根据权利要求1所述的来电转移方法,其中,所述控制移动终端断开与电话拨出端的通话,同时建立固定座机和电话拨出端的通话连接基于SIP协议完成。
  8. 一种移动终端,其包括:处理器、存储器和通信总线;
    所述存储器上存储有可被所述处理器执行的计算机可读程序;
    所述通信总线实现处理器和存储器之间的连接通信;
    所述处理器执行所述计算机可读程序时实现如下步骤:
    当移动终端接到来电或者已接听来电时,获取预设范围内Beacon信标的消息并上传到服务器;
    服务器根据Beacon信标的发送功率的强度从高到低依次进行排列,获取第一个匹配固定座机号码的Beacon信标,并将固定座机号码发送到移动终端;
    移动终端发送携带有固定座机号码的SIP 转移消息到电话拨出端,控制移动终端断开与电话拨出端的通话,同时建立固定座机和电话拨出端的通话连接。
  9. 根据权利要求8所述的移动终端,其中,所述处理器执行所述当移动终端接到来电或者已接听来电时,获取预设范围内Beacon信标的消息并上传到服务器的步骤之前,还包括:
    预先在固定座机上设置Beacon信标,当设置完成后,服务器将Beacon信标与固定座机的映射关系进行标注。
  10. 根据权利要求8所述的移动终端,其中,所述处理器执行所述当移动终端接到来电或者已接听来电时,获取预设范围内Beacon信标的消息并上传到服务器的步骤,包括:
    当移动终端检测到正在来电或者来电已经处于被接听的状态时,所述移动终端开启搜索Beacon信标的功能;
    所述移动终端获取预设范围内的Beacon信标的消息,并将所述Beacon信标的消息上传到服务器。
  11. 根据权利要求10所述的移动终端,其中,所述预设范围为1-3米。
  12. 根据权利要求9所述的移动终端,其中,所述处理器执行所述服务器根据Beacon信标的发送功率的强度从高到低依次进行排列,获取第一个匹配固定座机号码的Beacon信标,并将固定座机号码发送到移动终端的步骤,包括:
    所述服务器接收所述移动终端发送的Beacon信标的消息后,根据Beacon信标的发送功率的强度从高到低依次进行排列;
    所述服务器根据Beacon信标与固定座机的映射关系,获取第一个匹配固定座机号码的Beacon信标;
    当所述服务器匹配到发送功率最强的固定座机后,获取固定座机号码并发送到所述移动终端。
  13. 根据权利要求8所述的移动终端,其中,所述处理器执行所述移动终端发送携带有固定座机号码的SIP 转移消息到电话拨出端,控制移动终端断开与电话拨出端的通话,同时建立固定座机和电话拨出端的通话连接的步骤,包括:
    当所述移动终端接收到所述服务器发送的固定座机号码后,所述移动终端将携带有固定座机号码的SIP转移消息发送到电话拨出端;
    当所述SIP转移消息发送完成后,所述移动终端断开与电话拨出端的通话,所述电话拨出端根据所述SIP转移消息建立与固定座机的通话连接。
  14. 根据权利要求8所述的移动终端,其中,所述控制移动终端断开与电话拨出端的通话,同时建立固定座机和电话拨出端的通话连接基于SIP协议完成。
  15. 一种来电转移系统,包括服务器、电话拨出端以及固定座机,其中,所述来电转移系统还包括移动终端;
    当移动终端接到来电或者已接听来电时,获取预设范围内Beacon信标的消息并上传到服务器;服务器根据Beacon信标的发送功率的强度从高到低依次进行排列,获取第一个匹配固定座机号码的Beacon信标,并将固定座机号码发送到移动终端;移动终端发送携带有固定座机号码的SIP 转移消息到电话拨出端,控制移动终端断开与电话拨出端的通话,同时建立固定座机和电话拨出端的通话连接。
  16. 根据权利要求15所述的来电转移系统,其中,所述当移动终端接到来电或者已接听来电时,获取预设范围内Beacon信标的消息并上传到服务器之前,还包括:
    预先在固定座机上设置Beacon信标,当设置完成后,服务器将Beacon信标与固定座机的映射关系进行标注。
  17. 根据权利要求15所述的来电转移系统,其中,所述当移动终端接到来电或者已接听来电时,获取预设范围内Beacon信标的消息并上传到服务器,包括:
    当移动终端检测到正在来电或者来电已经处于被接听的状态时,所述移动终端开启搜索Beacon信标的功能;
    所述移动终端获取预设范围内的Beacon信标的消息,并将所述Beacon信标的消息上传到服务器。
  18. 根据权利要求16所述的来电转移系统,其中,所述服务器根据Beacon信标的发送功率的强度从高到低依次进行排列,获取第一个匹配固定座机号码的Beacon信标,并将固定座机号码发送到移动终端,包括:
    所述服务器接收所述移动终端发送的Beacon信标的消息后,根据Beacon信标的发送功率的强度从高到低依次进行排列;
    所述服务器根据Beacon信标与固定座机的映射关系,获取第一个匹配固定座机号码的Beacon信标;
    当所述服务器匹配到发送功率最强的固定座机后,获取固定座机号码并发送到所述移动终端。
  19. 根据权利要求15所述的来电转移系统,其中,所述移动终端发送携带有固定座机号码的SIP 转移消息到电话拨出端,控制移动终端断开与电话拨出端的通话,同时建立固定座机和电话拨出端的通话连接,包括:
    当所述移动终端接收到所述服务器发送的固定座机号码后,所述移动终端将携带有固定座机号码的SIP转移消息发送到电话拨出端;
    当所述SIP转移消息发送完成后,所述移动终端断开与电话拨出端的通话,所述电话拨出端根据所述SIP转移消息建立与固定座机的通话连接。
  20. 根据权利要求15所述的来电转移系统,其中,所述控制移动终端断开与电话拨出端的通话,同时建立固定座机和电话拨出端的通话连接基于SIP协议完成。
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