KR101658310B1 - System and method for synchronizing status information of the internet network of the mobile phone to socket server in real time - Google Patents

System and method for synchronizing status information of the internet network of the mobile phone to socket server in real time Download PDF

Info

Publication number
KR101658310B1
KR101658310B1 KR1020150053910A KR20150053910A KR101658310B1 KR 101658310 B1 KR101658310 B1 KR 101658310B1 KR 1020150053910 A KR1020150053910 A KR 1020150053910A KR 20150053910 A KR20150053910 A KR 20150053910A KR 101658310 B1 KR101658310 B1 KR 101658310B1
Authority
KR
South Korea
Prior art keywords
call
user terminal
network
connection information
connection
Prior art date
Application number
KR1020150053910A
Other languages
Korean (ko)
Inventor
최정우
Original Assignee
(주)브릿지모바일
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 (주)브릿지모바일 filed Critical (주)브릿지모바일
Priority to KR1020150053910A priority Critical patent/KR101658310B1/en
Application granted granted Critical
Publication of KR101658310B1 publication Critical patent/KR101658310B1/en

Links

Images

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
    • H04W4/003
    • H04W76/021
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W8/00Network data management
    • H04W8/26Network addressing or numbering for mobility support

Abstract

A method of providing a call service according to an exemplary embodiment of the present invention includes generating an endpoint socket for receiving connection information of a network of a first user terminal in a socket server, Notifying the IP address and port number of the socket; Storing connection information of the network upon receipt of connection information of the network based on the IP address and the port number from the first user terminal in the socket server; Establishing a call connection between the first user terminal and the second user terminal; Receiving network connection information of a first user terminal from the socket server while a call connection between the first user terminal and the second user terminal is maintained; And determining a call connection corresponding to a call connection or a general call mode corresponding to an internet call mode based on connection information of a network of the first user terminal and providing a call service corresponding to the determined call connection can do.

Figure R1020150053910

Description

BACKGROUND OF THE INVENTION 1. Field of the Invention The present invention relates to a system and method for real-time synchronization of Internet network status information of a mobile phone terminal device with a socket server.

The following description relates to a technique for a communication server to synchronize Internet network connection information of a portable terminal in real time and transmit status information to an originating terminal.

With smartphones, it is possible to make calls using 3G or LTE networks provided by carriers, but with the development of communication technologies, it is now possible to make cheap calls or free calls through 3G, 4G, LTE or WiFi Internet networks. However, Internet calls are not available if there is an unstable network situation, or if you do not have the same free calling application on both the caller and the called party.

Also, each time a call is originated from a smartphone, the status of the called party can be grasped, and it is possible to determine whether to transmit a call by selecting one of a communication network of a communication company, a low-cost network, and a free Internet network, There is a disadvantage that it has to wait until it is done.

Korean Patent Laid-Open No. 10-2003-0008546 discloses a method and system for providing free communication service.

In order to perform a free call from the portable terminal, an application providing free call service must be installed in both the calling terminal and the called terminal, and it should be stably connected to the Internet network. The call service providing system according to an embodiment proposes a method of quickly connecting a free call by quickly receiving caller information from a socket server when the calling terminal attempts to make a call to the called terminal.

According to an embodiment of the present invention, a method of providing a call service includes generating an endpoint socket for receiving connection information of a network of a first user terminal in a socket server, Notifying the IP address and port number of the point socket; Storing connection information of the network upon receipt of connection information of the network based on the IP address and the port number from the first user terminal in the socket server; Establishing a call connection between the first user terminal and the second user terminal; Receiving network connection information of a first user terminal from the socket server while a call connection between the first user terminal and the second user terminal is maintained; And determining a call connection corresponding to a call connection or a general call mode corresponding to an internet call mode based on connection information of a network of the first user terminal and providing a call service corresponding to the determined call connection can do.

According to one aspect, the step of receiving the network connection information of the first user terminal from the socket server while the call connection between the first user terminal and the second user terminal is maintained includes receiving, from the socket server, And receiving the call connection information related to the call connection corresponding to the Internet communication mode or the call connection corresponding to the general communication mode based on the network connection information of the terminal.

According to another aspect of the present invention, a call connection corresponding to the Internet call mode or a general call mode is determined based on connection information of the network of the first user terminal, and a call service corresponding to the determined call connection is determined The step of providing includes the step of attempting to connect a call corresponding to the normal call mode to the first user terminal when the connection information of the network of the first user terminal is in a state in which the call connection corresponding to the internet call mode is impossible .

According to another aspect of the present invention, a call connection corresponding to the Internet call mode or a general call mode is determined based on connection information of the network of the first user terminal, and a call service corresponding to the determined call connection is determined Wherein the step of providing comprises the steps of determining status information of the application including whether or not the application is installed and using the application and then transmitting the call connection corresponding to the internet call mode on the basis of the connection information of the network of the first user terminal And a step of attempting.

According to another aspect of the present invention, the step of storing the connection information of the network upon receiving connection information of the network based on the IP address and the port number from the first user terminal in the socket server comprises: And updating connection information of the network upon receiving the IP address of the first user terminal and the port number.

According to an embodiment of the present invention, a system for providing a call service may be configured to generate an endpoint socket for receiving connection information of a network of a first user terminal in a socket server, An endpoint socket generating unit for notifying an IP address and a port number of the point socket; A storage unit for storing connection information of the network upon receipt of connection information of the network based on the IP address and the port number from the first user terminal in the socket server; A call connection unit establishing a call connection between the first user terminal and the second user terminal; A receiving unit for receiving network connection information of a first user terminal from the socket server while a call connection between the first user terminal and the second user terminal is maintained; And a providing unit for determining a call connection corresponding to a call connection or a general call mode corresponding to an internet call mode based on connection information of a network of the first user terminal and providing a call service corresponding to the determined call connection can do.

According to one aspect of the present invention, the receiving unit may receive call connection information related to a call connection corresponding to an internet call mode or a call connection corresponding to a general call mode, based on network connection information of the first user terminal, from the socket server have.

According to another aspect of the present invention, when the connection information of the network of the first user terminal is in a state in which the call connection corresponding to the Internet communication mode is impossible, the providing unit may attempt to make a call connection corresponding to the normal communication mode to the first user terminal can do.

According to another aspect of the present invention, the providing unit determines status information of the application including whether the application is installed and uses the application, and then transmits the status information of the application to the Internet communication mode based on the connection information of the network of the first user terminal A corresponding call connection can be attempted.

According to another aspect of the present invention, the storage unit may update the connection information of the network upon receiving the IP address and the port number of the first user terminal in real time from the socket server.

According to one embodiment, there is provided a socket server for providing a call service, comprising: at least one program loaded memory; And at least one processor, wherein the at least one processor generates an endpoint socket for receiving connection information of a network of the first user terminal according to the control of the program; Notifying the first user terminal of an IP address and a port number of the generated endpoint socket; Storing connection information of the network upon receiving connection information of the network based on the IP address and the port number from the first user terminal; And providing the call connection information associated with the call connection corresponding to the Internet call mode or the call connection corresponding to the general call mode to the call server upon receiving the network connection information of the first user terminal.

The call service providing system according to an embodiment may store the network connection information of the called terminal at all times in the socket server and transmit the connection information of the network promptly as the calling terminal requests it. The socket server stores the connection information of the network of the called terminal in real time on the socket server so that the calling terminal that attempts to make a free call on the Internet can immediately determine whether the called terminal can make free calls. Accordingly, the call service providing system can provide the call service through the free call mode more quickly.

1 is a diagram for explaining an operation of a call service providing system according to an embodiment.
2 is a block diagram illustrating an internal configuration of a call service providing system according to an embodiment.
3 is a diagram for explaining an operation of performing a call connection corresponding to a general call mode of a call service providing system according to an embodiment.
4 is a diagram for explaining an operation of performing a call connection corresponding to an Internet communication mode of a call service providing system according to an embodiment.
5 is a diagram for explaining an example in which a call is connected in a call service providing system according to an embodiment.
6 is a flowchart illustrating a method of providing a call service in a call service providing system according to an embodiment.
7 is a block diagram illustrating an example of the internal configuration of a computer system according to an embodiment.

Socket is a way to exchange information among different programs through UNIX file descriptors, and is used for the purpose of exchanging information between other systems capable of communicating over the Internet network. The Socket Server can transmit and receive the connection information of the network of the terminal in real time through the Internet network communication. Hereinafter, embodiments will be described in detail with reference to the accompanying drawings.

1 is a diagram for explaining an operation of a call service providing system according to an embodiment.

The call service providing system 120 and the second user terminal 110 and the call service providing system 120 and the first user terminal 140 can transmit and receive data through the network 130, May include more or fewer components, connections, and interactions than those shown in FIG.

Network 130 may be a medium used to provide communication links between data processing systems, computers, servers, and various devices. The network 130 may include a Transmission Control Protocol Internet Protocol (TCP / IP) suite of protocols (TCP / IP) to communicate with the call service providing system 100, the second user terminal 110, and the first user terminal 140 Wide collection of networks and gateways using < RTI ID = 0.0 > a < / RTI > In some instances, the network 130 may include or be part of an intranet, a local area network (LAN), or a wide area network (WAN). In some instances, the network 130 may be part of the Internet.

The second user terminal 110 and the first user terminal 140 may be a PC, a notebook, a smart phone, a tablet, a wearable computer, May refer to all terminals capable of accessing a web / mobile site or installing and executing a service-dedicated application. At this time, the second user terminal 110 and the first user terminal 140 can perform service-wide operations such as service screen configuration, data input, data transmission / reception, and data storage under control of a web / mobile site or a dedicated application .

The call service providing system 120 may be implemented on a call platform for providing a call service and may include a second user terminal 110 and a first user terminal 140 that are clients using a call service, It is possible to provide a call service environment on the platform.

The call service providing system 120 may be implemented in a form of being included in a platform of a call server (not shown) for providing a call service, but is not limited thereto and may be constructed as a separate system from the call server, It is also possible to manage the call service environment through the Internet. The call service providing system 120 may be implemented in an application form in which at least some components are installed on the second user terminal 110 and the first user terminal 140 or may be provided in a client- It is also possible to be implemented in a form that is included in the platform to be used.

2 is a block diagram illustrating an internal configuration of a call service providing system according to an embodiment.

The call service providing system 200 may include a processor 210, a bus 220, a network interface 230, a memory 240 and a database 250. The memory 240 may include an operating system 241 and a service providing routine 242. The processor 210 may include an endpoint socket generating unit 211, a storage unit 212, a call connection unit 213, a receiving unit 214, In other embodiments, the call service provision system 200 may include more components than the components of FIG. However, there is no need to clearly illustrate most prior art components. For example, the call service provision system 200 may include other components such as a display or a transceiver.

The memory 240 may be a computer-readable recording medium and may include a permanent mass storage device such as a random access memory (RAM), a read only memory (ROM), and a disk drive. Also, the memory 240 may store program codes for the operating system 241 and the service providing routine 242. [ These software components may be loaded from a computer readable recording medium separate from the memory 240 using a drive mechanism (not shown). Such a computer-readable recording medium may include a computer-readable recording medium (not shown) such as a floppy drive, a disk, a tape, a DVD / CD-ROM drive, or a memory card. In other embodiments, the software components may be loaded into the memory 240 via the network interface 230 rather than from a computer readable recording medium.

The bus 220 may enable communication and data transfer between the components of the call service provision system 200. The bus 220 may be configured using a high-speed serial bus, a parallel bus, a Storage Area Network (SAN), and / or other suitable communication technology.

Network interface 230 may be a computer hardware component for connecting call service provisioning system 200 to a computer network. The network interface 230 may be a network interface card such as an Ethernet card, an optical transceiver, a radio frequency transceiver, or any other type of device capable of transmitting and receiving information. Other examples of such network interfaces may be mobile computing devices and wireless devices including Bluetooth, 3G and WiFi within USB. In some instances, the computing device may use the network interface 230 to wirelessly communicate with an external device, such as a server, mobile phone, or other networked computing device. The network interface 230 may connect the call service providing system 200 to the computer network via a wireless or wired connection.

The database 250 may store and maintain all information necessary for providing a call service, such as a call connection corresponding to a general call mode or a call connection corresponding to an internet call mode. Although FIG. 2 shows that the database 250 is built and included in the call service providing system 200, the present invention is not limited thereto and may be omitted depending on the system implementation method or environment, It is also possible to exist as an external database built on a separate, separate system.

The processor 210 may be configured to process instructions of a computer program by performing basic arithmetic, logic, and input / output operations of the call service system 200. The instructions may be provided by the memory 240 or the network interface 230 and to the processor 210 via the bus 220. The processor 210 may be configured to execute program codes for the endpoint socket generator 211, the storage 212, the call connection 213, the receiver 214, Such program code may be stored in a recording device such as memory 240. [

The endpoint socket generating unit 211 generates an endpoint socket for receiving the connection information of the network of the first user terminal in the socket server and notifies the first user terminal of the IP address and port number of the generated endpoint socket can do.

The storage unit 212 may store the connection information of the network upon receiving the connection information of the network based on the IP address and the port number from the first user terminal in the socket server. The storage unit 212 can update the connection information of the network by receiving the IP address and the port number of the first user terminal in real time from the socket server.

The call connection unit 213 may establish a call connection between the first user terminal and the second user terminal.

The receiving unit 214 may receive the network connection information of the first user terminal from the socket server while the call connection between the first user terminal and the second user terminal is maintained. The receiving unit 214 may receive the call connection information corresponding to the Internet communication mode or the call connection information related to the call connection corresponding to the general communication mode based on the network connection information of the first user terminal from the socket server.

The providing unit 215 may determine a call connection corresponding to a call connection or a general call mode corresponding to an internet call mode based on the network connection information of the first user terminal and may provide a call service corresponding to the determined call connection have. The providing unit 215 may attempt to establish a call connection to the first user terminal in the normal call mode if the connection information of the network of the first user terminal is in a state in which the call connection corresponding to the Internet communication mode is impossible. The providing unit 215 may determine the status information of the application including whether or not the application is installed and the application is used and then try to make a call connection corresponding to the Internet communication mode based on the connection information of the network of the first user terminal have.

FIG. 3 is a view for explaining an operation of performing a call connection corresponding to a general call mode of the call service providing system according to an embodiment, FIG. 4 is a flowchart illustrating an operation of performing call connection corresponding to the Internet call mode FIG.

As the second user terminal 310 410 attempts to establish a call connection with the first user terminal 320 420, the call service providing system may be connected between the second user terminal 310 410 and the first user terminal 320) < / RTI > 3 and 4, the call connection between the second user terminal 310 (410) and the first user terminal 320 (420) is maintained while the second user terminal 310 (410) The calling terminal and the first user terminal 320 (420) are referred to as a called terminal. For example, the calling terminal may attempt to make a call by selecting a called terminal to which the call is to be connected through an application providing the call service. At this time, the application providing the call service can also store the contact list stored in the calling terminal and the call record list communicated in the calling terminal, and provide the called terminal list to connect the call to the user.

If the calling terminal attempts to establish a call connection to the called terminal, the socket server of the call service providing system creates an endpoint socket for receiving the network connection information of the first user terminal 320 (420) 320) 420 to the IP address and port number of the endpoint socket.

The call service providing system can receive the connection information of the network based on the IP address and the port number from the first user terminal in the socket server and can store the connection information of the received network. At this time, the network connection information is information for determining whether or not each user terminal is stably connected to the Internet network. The connection information of the network is always stored in the socket server, and the calling terminal stores the network connection information of the called terminal When requested, the network connection information of the called terminal can be received from the socket server. If the socket server stores the network connection information of the called terminal in real time, the call service providing system can immediately determine the possible call service status of the Internet call mode or the general call mode.

For example, the network connection information can be stored in the database of the socket server, and the connection information of the network can be classified into network instability, network stability, and the like. Lt; / RTI > At this time, the connection information of the network can be stored and updated in real time in the socket server.

The call service provision system may establish a call connection between the first user terminal 320 (420) and the second user terminal 410 (420). The call service providing system may provide a call service from the socket server to the network of the first user terminal 320 (420) 420 while the call connection between the first user terminal 320 (420) and the second user terminal 410 Lt; / RTI > The call service providing system determines the call connection corresponding to the Internet call mode or the general call mode based on the connection information of the network of the first user terminals 320 and 420, A call service can be provided.

For example, when the connection information of the network of the first user terminal 320 (420) is in a state in which the call connection corresponding to the Internet communication mode is impossible, the first user terminal 320 (420) It is possible to try to make a call connection.

Referring to FIG. 3, the call service providing system can provide a call service corresponding to the general call mode. In the call service providing system, the call connection corresponding to the normal call mode is performed through the communication company base station 330 in connecting the calling terminal and the called terminal.

After determining the status information of the application including, for example, whether the application is installed in the first user terminal 320 (420) and the application is used, the connection of the network of the first user terminal 320 (420) It is possible to attempt a call connection corresponding to the Internet communication mode based on the information.

Referring to FIG. 4, the call service providing system may provide a call service corresponding to the Internet call mode. The call service providing system performs call connection corresponding to the Internet communication mode through the call server 430 in connecting the calling terminal and the called terminal.

5 is a diagram for explaining an example in which a call is connected in a call service providing system according to an embodiment.

The call service providing system may provide a call service corresponding to the Internet communication mode or a call service corresponding to the general communication mode to the user terminal. For example, referring to FIG. 5, a called terminal may perform a call service to a call connection 510 corresponding to a general call mode or a call connection 520 corresponding to an internet call mode.

As the call connection 510 corresponding to the general call mode is performed, the calling terminal can output the telephone number of the calling terminal, the name storing the calling terminal, and the like, and the phrase 'call connection corresponding to the general calling mode' Can be output together. Likewise, as the call connection 520 corresponding to the Internet call connection mode is established, the calling terminal can output the telephone number of the calling terminal and the name storing the calling terminal, and the like, and the 'calling connection corresponding to the Internet calling mode' Can be output together.

6 is a flowchart illustrating a method of providing a call service in a call service providing system according to an embodiment.

The call service providing system establishes a call connection to the first user terminal 610 and the second user terminal 640 through the call server 630 and transmits a call connection corresponding to the Internet communication mode or a call connection Can be provided. At this time, the first user terminal and the second user terminal may be provided with an application for providing a call service.

The socket server 620 may generate an endpoint socket 651 to receive connection information of the network of the first user terminal 610. The socket server may notify the first user terminal 610 of the IP address and port number of the socket of the generated endpoint (652). The socket server 620 receives network connection information from the first user terminal 610 based on the IP address and the port number (step 653), and stores connection information of the network (step 654).

The call server 630 may establish 655 a call connection between the first user terminal 610 and the second user terminal 620. The call server 630 may receive the network connection information of the first user terminal 610 from the socket server 620 (656). The call server 630 determines the call connection corresponding to the Internet call mode or the general call mode based on the connection information of the network of the first user terminal 610 and transmits the call service corresponding to the determined call connection (657).

7 is a block diagram illustrating an example of the internal configuration of a computer system according to an embodiment.

7, the computer system 700 includes at least one processor 710, a memory 720, a peripheral interface 730, an input / output subsystem (not shown) An I / O subsystem 740, a power circuit 750, and a communication circuit 760. At this time, the computer system 700 may correspond to a user terminal.

The memory 720 may include, for example, a high-speed random access memory, a magnetic disk, a SRAM, a DRAM, a ROM, a flash memory, or a non-volatile memory. have. The memory 720 may include software modules, a set of instructions, or various other data required for operation of the computer system 700. At this point, accessing memory 720 from other components, such as processor 710 or peripheral device interface 730, may be controlled by processor 710.

Peripheral device interface 730 may couple the input and / or output peripheral devices of computer system 700 to processor 710 and memory 720. The processor 710 may execute a variety of functions and process data for the computer system 700 by executing a software module or set of instructions stored in the memory 720.

The input / output subsystem 740 may couple various input / output peripheral devices to the peripheral interface 730. For example, input / output subsystem 740 may include a controller for coupling a peripheral device such as a monitor, keyboard, mouse, printer, or a touch screen or sensor, as needed, to peripheral interface 730. According to another aspect, the input / output peripheral devices may be coupled to the peripheral device interface 730 without going through the input / output subsystem 740.

The power circuitry 750 may provide power to all or a portion of the components of the terminal. For example, the power circuitry 750 may include one or more power sources, such as a power management system, a battery or alternating current (AC), a charging system, a power failure detection circuit, a power converter or inverter, And may include any other components for creation, management, distribution.

The communication circuitry 760 may enable communication with other computer systems using at least one external port. Or as described above, the communication circuitry 760 may also communicate with other computer systems by sending and receiving RF signals, also known as electromagnetic signals, including RF circuits.

7 is merely an example of a computer system 700, and the computer system 700 may have additional components that are omitted from FIG. 7, or that are not shown in FIG. 7, Lt; RTI ID = 0.0 > components. ≪ / RTI > For example, in addition to the components shown in FIG. 7, a computer system for a mobile communication terminal may further include a touch screen, a sensor, etc., and may be connected to various communication methods (WiFi, 3G, LTE , Bluetooth, NFC, Zigbee, etc.). The components that may be included in computer system 700 may be implemented in hardware, software, or a combination of both hardware and software, including one or more signal processing or application specific integrated circuits.

The methods according to embodiments of the present invention may be implemented in the form of a program instruction that can be executed through various computer systems and recorded in a computer-readable medium. In particular, the program according to the present embodiment can be configured as a PC-based program or an application dedicated to a mobile terminal. The messenger application to which the present invention is applied may be implemented as an independent program or may be implemented in an in-app form of a specific application so as to be able to operate on the specific application. Such an application can be installed as a user terminal through a file provided by a file distribution system. For example, the file distribution system may include a file transfer unit (not shown) for transferring the file according to a request from the user terminal.

The apparatus described above may be implemented as a hardware component, a software component, and / or a combination of hardware components and software components. For example, the apparatus and components described in the embodiments may be implemented within a computer system, such as, for example, a processor, a controller, an arithmetic logic unit (ALU), a digital signal processor, a microcomputer, a field programmable gate array (FPGA) , A programmable logic unit (PLU), a microprocessor, or any other device capable of executing and responding to instructions. The processing device may execute an operating system (OS) and one or more software applications running on the operating system. The processing device may also access, store, manipulate, process, and generate data in response to execution of the software. For ease of understanding, the processing apparatus may be described as being used singly, but those skilled in the art will recognize that the processing apparatus may have a plurality of processing elements and / As shown in FIG. For example, the processing unit may comprise a plurality of processors or one processor and one controller. Other processing configurations are also possible, such as a parallel processor.

The software may include a computer program, code, instructions, or a combination of one or more of the foregoing, and may be configured to configure the processing device to operate as desired or to process it collectively or collectively Device can be commanded. The software and / or data may be in the form of any type of machine, component, physical device, virtual equipment, computer storage media, or device , Or may be permanently or temporarily embodied in a transmitted signal wave. The software may be distributed over a networked computer system and stored or executed in a distributed manner. The software and data may be stored on one or more computer readable recording media.

The method according to an embodiment may be implemented in the form of a program command that can be executed through various computer means and recorded in a computer-readable medium. The computer-readable medium may include program instructions, data files, data structures, and the like, alone or in combination. The program instructions to be recorded on the medium may be those specially designed and configured for the embodiments or may be available to those skilled in the art of computer software. Examples of computer-readable media include magnetic media such as hard disks, floppy disks and magnetic tape; optical media such as CD-ROMs and DVDs; magnetic media such as floppy disks; Magneto-optical media, and hardware devices specifically configured to store and execute program instructions such as ROM, RAM, flash memory, and the like. Examples of program instructions include machine language code such as those produced by a compiler, as well as high-level language code that can be executed by a computer using an interpreter or the like. The hardware devices described above may be configured to operate as one or more software modules to perform the operations of the embodiments, and vice versa.

While the present invention has been particularly shown and described with reference to exemplary embodiments thereof, it is to be understood that the invention is not limited to the disclosed exemplary embodiments. For example, it is to be understood that the techniques described may be performed in a different order than the described methods, and / or that components of the described systems, structures, devices, circuits, Lt; / RTI > or equivalents, even if it is replaced or replaced.

Therefore, other implementations, other embodiments, and equivalents to the claims are also within the scope of the following claims.

Claims (11)

A method for providing a call service,
The socket server creates an endpoint socket for receiving connection information of the network of the first user terminal and informs the first user terminal of the IP address and the port number of the generated endpoint socket step;
Storing connection information of the network upon receipt of connection information of the network based on the IP address and the port number from the first user terminal in the socket server;
Establishing a call connection between the first user terminal and the second user terminal;
Receiving network connection information of a first user terminal from the socket server while a call connection between the first user terminal and the second user terminal is maintained; And
Determining a call connection corresponding to a call connection or a general call mode corresponding to an internet call mode based on connection information of a network of the first user terminal and providing a call service corresponding to the determined call connection;
The method comprising the steps of:
The method according to claim 1,
Wherein the receiving of the network connection information of the first user terminal from the socket server while the call connection between the first user terminal and the second user terminal is maintained comprises:
Receiving call connection information related to a call connection corresponding to an internet call mode or a call connection corresponding to a general call mode based on network connection information of the first user terminal from the socket server
The method comprising the steps of:
The method according to claim 1,
Determining a call connection corresponding to a call connection or a general call mode corresponding to an internet call mode based on connection information of a network of the first user terminal and providing a call service corresponding to the determined call connection,
If the connection information of the network of the first user terminal is in a state that the call connection corresponding to the Internet communication mode is impossible, attempting to connect a call corresponding to the normal communication mode to the first user terminal
The method comprising the steps of:
The method of claim 3,
Determining a call connection corresponding to a call connection or a general call mode corresponding to an internet call mode based on connection information of a network of the first user terminal and providing a call service corresponding to the determined call connection,
The method comprising: determining status information of the application including whether the application is installed and using the application, and attempting to establish a call connection corresponding to the Internet communication mode based on connection information of the network of the first user terminal
The method comprising the steps of:
The method according to claim 1,
The connection information of the network is stored in the socket server upon receiving connection information of the network based on the IP address and the port number from the first user terminal,
Receiving connection information of the network based on the IP address and the port number from the first user terminal in real time in the socket server and updating the connection information of the network
The method comprising the steps of:
A system for providing call services,
The socket server creates an endpoint socket for receiving connection information of the network of the first user terminal and informs the first user terminal of the IP address and the port number of the generated endpoint socket An end point socket generating unit;
A storage unit for storing connection information of the network upon receipt of connection information of the network based on the IP address and the port number from the first user terminal in the socket server;
A call connection unit establishing a call connection between the first user terminal and the second user terminal;
A receiving unit for receiving network connection information of a first user terminal from the socket server while a call connection between the first user terminal and the second user terminal is maintained; And
Determining a call connection corresponding to a call connection or a general call mode corresponding to an internet call mode based on connection information of a network of the first user terminal and providing a call service corresponding to the determined call connection;
The system comprising:
The method according to claim 6,
The receiver may further comprise:
Receiving call connection information related to a call connection corresponding to an internet call mode or a call connection corresponding to a general call mode based on network connection information of the first user terminal from the socket server
The call service providing system comprising:
The method according to claim 6,
Wherein the providing unit comprises:
When the connection information of the network of the first user terminal is in a state that the call connection corresponding to the Internet communication mode is impossible, the first user terminal is attempted to establish a call connection corresponding to the normal communication mode
The call service providing system comprising:
9. The method of claim 8,
Wherein the providing unit comprises:
After determining the status information of the application including whether or not the application is installed and the application is used, attempts to make a call connection corresponding to the internet call mode based on the connection information of the network of the first user terminal
The call service providing system comprising:
The method according to claim 6,
Wherein,
The socket server receives connection information of the network based on the IP address and the port number from the first user terminal in real time and updates the connection information of the network
The call service providing system comprising:
1. A socket server for providing a call service,
At least one program loaded memory; And
At least one processor
Lt; / RTI >
Wherein the at least one processor, under control of the program,
Generating an endpoint socket for receiving connection information of a network of the first user terminal;
Notifying the first user terminal of an IP address and a port number of the generated endpoint socket;
Storing connection information of the network upon receiving connection information of the network based on the IP address and the port number from the first user terminal; And
Providing the call connection information related to the call connection corresponding to the Internet call mode or the call connection corresponding to the general call mode to the call server upon receiving the network connection information of the first user terminal
The socket server that handles the.
KR1020150053910A 2015-04-16 2015-04-16 System and method for synchronizing status information of the internet network of the mobile phone to socket server in real time KR101658310B1 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
KR1020150053910A KR101658310B1 (en) 2015-04-16 2015-04-16 System and method for synchronizing status information of the internet network of the mobile phone to socket server in real time

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
KR1020150053910A KR101658310B1 (en) 2015-04-16 2015-04-16 System and method for synchronizing status information of the internet network of the mobile phone to socket server in real time

Publications (1)

Publication Number Publication Date
KR101658310B1 true KR101658310B1 (en) 2016-09-20

Family

ID=57102227

Family Applications (1)

Application Number Title Priority Date Filing Date
KR1020150053910A KR101658310B1 (en) 2015-04-16 2015-04-16 System and method for synchronizing status information of the internet network of the mobile phone to socket server in real time

Country Status (1)

Country Link
KR (1) KR101658310B1 (en)

Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR20050066287A (en) * 2003-12-26 2005-06-30 오리엔탈데이타시스템즈 주식회사 An wire/wireless combination mobile phone, an wire/wireless combination communication system and a communication method by an ip phone method
JP2005229591A (en) * 2004-01-14 2005-08-25 Hitachi Cable Ltd Voip system and wireless terminal
KR20140034480A (en) * 2012-09-12 2014-03-20 에스케이플래닛 주식회사 Connection control method for network and system using the same

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR20050066287A (en) * 2003-12-26 2005-06-30 오리엔탈데이타시스템즈 주식회사 An wire/wireless combination mobile phone, an wire/wireless combination communication system and a communication method by an ip phone method
JP2005229591A (en) * 2004-01-14 2005-08-25 Hitachi Cable Ltd Voip system and wireless terminal
KR20140034480A (en) * 2012-09-12 2014-03-20 에스케이플래닛 주식회사 Connection control method for network and system using the same

Similar Documents

Publication Publication Date Title
US20210297410A1 (en) Mec platform deployment method and apparatus
EP2957085B1 (en) Service layer resource propagation across domains
CN110311983B (en) Service request processing method, device and system, electronic equipment and storage medium
EP2757738B1 (en) Communication control system, communication system, communication method, and carrier means storing comunication control program
EP3490304B1 (en) Method for identifying access point and hotspot, and related products
US10990449B2 (en) Managing application relationships in machine-to-machine systems
CN106471465A (en) Service enabler function
WO2018170391A1 (en) Distributed transaction management in a network service layer
JP6730511B2 (en) Network policy update trigger method, management entity and core network device
EP3298806A1 (en) Methods and apparatus for analyzing and grouping service layer subscriptions and notifications for enhanced efficiency
KR102500594B1 (en) Service Layer Message Templates in Communication Networks
JP2020198636A (en) System and method for efficient call processing
JP2023500194A (en) Integrity protection of radio resource control messages
US20230421663A1 (en) Efficient resource representation exchange between service layers
WO2022016558A1 (en) Service continuity event notification method and apparatus
EP2871871B1 (en) Remote socket connection
KR101658310B1 (en) System and method for synchronizing status information of the internet network of the mobile phone to socket server in real time
WO2023081202A1 (en) Mec dual edge apr registration on behalf of edge platform in dual edge deployments
CN113763646A (en) Device control method, device, electronic device and computer readable medium
KR20160123631A (en) System and method for synchronizing based on the information of the called party to the calling smartphone
JP2021523635A (en) How to secure wireless connections, devices, and systems
CN113703880B (en) Application program starting method and device, electronic equipment and readable storage medium
US20220191089A1 (en) Electronic device configuration mechanism
TW201505463A (en) Method and system for pushing notification and wireless communication device
WO2023117726A1 (en) Client device-assisted application context transfer

Legal Events

Date Code Title Description
E701 Decision to grant or registration of patent right
GRNT Written decision to grant
FPAY Annual fee payment

Payment date: 20190905

Year of fee payment: 4