WO2019039621A1 - Contrôle de qualité de réseau d'accès pour voip - Google Patents
Contrôle de qualité de réseau d'accès pour voip Download PDFInfo
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- WO2019039621A1 WO2019039621A1 PCT/KR2017/009118 KR2017009118W WO2019039621A1 WO 2019039621 A1 WO2019039621 A1 WO 2019039621A1 KR 2017009118 W KR2017009118 W KR 2017009118W WO 2019039621 A1 WO2019039621 A1 WO 2019039621A1
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- network
- quality information
- electronic device
- access network
- network quality
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04M—TELEPHONIC COMMUNICATION
- H04M7/00—Arrangements for interconnection between switching centres
- H04M7/006—Networks other than PSTN/ISDN providing telephone service, e.g. Voice over Internet Protocol (VoIP), including next generation networks with a packet-switched transport layer
- H04M7/0081—Network operation, administration, maintenance, or provisioning
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04M—TELEPHONIC COMMUNICATION
- H04M3/00—Automatic or semi-automatic exchanges
- H04M3/22—Arrangements for supervision, monitoring or testing
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04M—TELEPHONIC COMMUNICATION
- H04M3/00—Automatic or semi-automatic exchanges
- H04M3/22—Arrangements for supervision, monitoring or testing
- H04M3/2227—Quality of service monitoring
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04M—TELEPHONIC COMMUNICATION
- H04M7/00—Arrangements for interconnection between switching centres
Definitions
- VoIP Voice over Internet Protocol
- VoIP Voice over Internet Protocol
- VoIP includes a network quality verification method and system capable of providing a user with information on the quality of an access network at a current location for VoIP,
- VoIP Voice over Internet Protocol
- a computer program stored on a computer readable recording medium for causing a computer to execute a network quality verification method and a recording medium therefor.
- VoIP Voice over Internet Protocol
- VoIP Voice over Internet Protocol
- Korean Patent Laid-Open No. 10-2010-0052626 is directed to an apparatus and method for guaranteeing VoIP call quality, which measures a delay value of packets for a first IP network to which a VoIP terminal is connected, And the VoIP terminal is connected to the second IP network when the reference value is exceeded.
- the quality of the access network related to the VoIP service is provided to the users before the VoIP service is attempted so as to induce the users to select the VoIP service according to the network quality information, And a computer program stored in a computer-readable recording medium for causing a computer to execute a network quality verification method in combination with a computer-readable recording medium, and a recording medium therefor.
- VoIP Voice over Internet Protocol
- the method comprising the steps of: collecting quality information measured in connection with an access network capable of providing a Voice over Internet Protocol (VoIP) service in a plurality of electronic devices; Generating network quality information for each access network using the collected quality information; Storing and managing the generated network quality information in a database; Receiving a request for network quality information of a first access network from a first electronic device; And retrieving and transmitting to the first electronic device, first network quality information corresponding to the request, the request including a user interface associated with a call using the first electronic device, Wherein said first network quality information is generated in said first electronic device in response to being provided by said device and before said start input for said call is made in said first electronic device via said user interface, And the network quality information of the first access network is displayed on the screen of the electronic device.
- VoIP Voice over Internet Protocol
- a computer program stored in a computer-readable recording medium for causing a computer to execute the network quality verification method in combination with a computer.
- At least one processor coupled to the electronic device for providing a voice over (VoIP) connection in response to providing a user interface associated with the call using the electronic device, wherein the at least one processor is configured to execute computer readable instructions, The network quality information indicating the quality of an access network capable of providing an Internet Protocol (IP) service, and transmitting the obtained network quality information to the mobile station before the start input for the call is generated through the user interface. And displaying the result on a screen of the device.
- VoIP voice over
- At least one processor configured to execute instructions readable by the computer, wherein the at least one processor is operable to perform at least one of: a quality measure in connection with an access network capable of providing Voice over Internet Protocol (VoIP) Information about the network quality information of the first access network is collected from the first electronic device, and the network quality information for each access network is generated using the collected quality information, and the generated network quality information is stored and managed in the database, Requesting a first network quality information corresponding to the request from the database and transmitting the first network quality information to the first electronic device, the request being such that a user interface associated with a call using the first electronic device Wherein the first electronic device is generated in response to being provided by the device, Characterized in that network quality information of the first access network is displayed on the screen of the first electronic device using the first network quality information before a start input for the call is generated in the first electronic device To provide a computer device.
- VoIP Voice over Internet Protocol
- the quality of the access network related to the VoIP service is provided to the users before the VoIP service is attempted so as to induce the users to select the VoIP service according to the network quality information, Can be improved.
- FIG. 1 is a diagram illustrating an example of a network environment according to an embodiment of the present invention.
- FIG. 2 is a block diagram illustrating an internal configuration of an electronic device and a server according to an embodiment of the present invention.
- 3 to 5 are diagrams illustrating examples of providing network quality information in an embodiment of the present invention.
- FIG. 6 is a flowchart illustrating an example of a network quality verification method of an electronic device according to an embodiment of the present invention.
- FIG. 7 is a flowchart illustrating an example of a process of automatically selecting one of a call using a VoIP service and a general call according to the degree of quality set by a user in an embodiment of the present invention.
- FIG. 8 is a diagram illustrating a first example of a process of acquiring network quality information in an embodiment of the present invention.
- FIG. 9 is a diagram illustrating a second example of a process of acquiring network quality information in an embodiment of the present invention.
- FIG. 10 is a flowchart illustrating a network quality verification method of a network validation server according to an embodiment of the present invention.
- the network quality verification method according to embodiments of the present invention can be performed through a computer device such as an electronic device or a server to be described later.
- a computer program according to an embodiment of the present invention may be installed and operated in the computer apparatus, and the computer apparatus can perform the network quality verification method according to an embodiment of the present invention, have.
- the above-described computer program may be stored in a computer-readable recording medium in combination with a computer device to cause the computer to execute the method for verifying the quality of the network.
- the electronic device provides the network quality information to the users, which can predict the quality of the access network related to the Voice over Internet Protocol (VoIP) service before the attempt of the VoIP service , It is possible to induce users to select a VoIP service according to the network quality information, and at the same time to improve satisfaction with the VoIP service.
- VoIP Voice over Internet Protocol
- 1 is a diagram illustrating an example of a network environment according to an embodiment of the present invention. 1 shows an example in which a plurality of electronic devices 110, 120, 130, 140, a plurality of servers 150, 160, and a network 170 are included. 1, the number of electronic devices and the number of servers are not limited to those shown in FIG.
- the plurality of electronic devices 110, 120, 130, 140 may be a fixed terminal implemented as a computer device or a mobile terminal.
- Examples of the plurality of electronic devices 110, 120, 130 and 140 include a smart phone, a mobile phone, a navigation device, a computer, a notebook, a digital broadcast terminal, a PDA (Personal Digital Assistants) ), And tablet PCs.
- FIG. 1 illustrates the shape of a smartphone as an example of the first electronic device 110, but in the embodiments of the present invention, the first electronic device 110 transmits the network 170 using a wireless or wired communication method.
- any of a variety of physical computer devices capable of communicating with other electronic devices 120, 130, 140 and / or servers 150 any of a variety of physical computer devices capable of communicating with other electronic devices 120, 130, 140 and / or servers 150,
- the communication method is not limited, and may include a communication method using a communication network (for example, a mobile communication network, a wired Internet, a wireless Internet, a broadcasting network) that the network 170 may include, as well as a short-range wireless communication between the devices.
- the network 170 may be a personal area network (LAN), a local area network (LAN), a campus area network (CAN), a metropolitan area network (MAN), a wide area network (WAN) , A network such as the Internet, and the like.
- the network 170 may also include any one or more of a network topology including a bus network, a star network, a ring network, a mesh network, a star-bus network, a tree or a hierarchical network, It is not limited.
- Each of the servers 150 and 160 is a computer device or a plurality of computers that communicate with a plurality of electronic devices 110, 120, 130 and 140 through a network 170 to provide commands, codes, files, Lt; / RTI > devices.
- the server 150 may be a system that provides a first service to a plurality of electronic devices 110, 120, 130, 140 connected through a network 170, 170, and 140 to the first and second electronic devices 110, 120, 130, and 140, respectively.
- the server 150 may be a computer program that is installed in a plurality of electronic apparatuses 110, 120, 130, and 140, A service for providing network quality, an information providing service, a messaging service, a mail service, a content transfer service, etc.) as a first service to a plurality of electronic devices 110, 120, 130 and 140.
- the server 160 may provide a service for distributing a file for installing and running the application to the plurality of electronic devices 110, 120, 130, and 140 as a second service.
- 2 is a block diagram illustrating an internal configuration of an electronic device and a server according to an embodiment of the present invention. 2 illustrates an internal configuration of the electronic device 1 (110) and the server 150 as an example of the electronic device. Other electronic devices 120, 130, 140 and server 160 may also have the same or similar internal configuration as electronic device 1 110 or server 150 described above.
- the electronic device 1 110 and the server 150 may include memories 211 and 221, processors 212 and 222, communication modules 213 and 223 and input / output interfaces 214 and 224.
- the memories 211 and 221 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.
- the non-decaying mass storage device such as a ROM and a disk drive may be included in the electronic device 110 or the server 150 as a separate persistent storage device different from the memory 211 or 221.
- the memory 211 and the memory 221 are provided with an operating system and at least one program code (for example, a program installed in the electronic device 1 (110) and used for a browser or an application installed in the electronic device 1 Code) can be stored.
- These software components may be loaded from a computer readable recording medium separate from the memories 211 and 221.
- a computer-readable recording medium may include a computer-readable recording medium such as a floppy drive, a disk, a tape, a DVD / CD-ROM drive, and a memory card.
- the software components may be loaded into memory 211, 221 via communication modules 213, 223 rather than a computer readable recording medium.
- At least one program may be a computer program installed by files provided by a file distribution system (e.g., the server 160 described above) that distributes installation files of developers or applications, May be loaded into the memory 211, 221 based on the application (e.g., the application described above).
- a file distribution system e.g., the server 160 described above
- the application e.g., the application described above.
- Processors 212 and 222 may be configured to process instructions of a computer program by performing basic arithmetic, logic, and input / output operations.
- the instructions may be provided to the processors 212 and 222 by the memories 211 and 221 or the communication modules 213 and 223.
- the processor 212, 222 may be configured to execute a command received in accordance with a program code stored in a recording device, such as the memory 211, 221.
- the communication modules 213 and 223 may provide functions for the electronic device 1 110 and the server 150 to communicate with each other through the network 170 and may be provided to the electronic device 1 110 and / May provide a function for communicating with another electronic device (e.g., electronic device 2 120) or another server (e.g., server 160).
- another electronic device e.g., electronic device 2 120
- another server e.g., server 160
- the request generated by the processor 212 of the electronic device 1 110 according to the program code stored in the recording device such as the memory 211 is transmitted to the server 170 via the network 170 under the control of the communication module 213 150 < / RTI > Conversely, control signals, commands, contents, files, and the like provided under the control of the processor 222 of the server 150 are transmitted to the communication module 223 of the electronic device 110 via the communication module 223 and the network 170 213 to the electronic device 1 (110).
- control signals, commands, contents, files, and the like of the server 150 received through the communication module 213 can be transmitted to the processor 212 or the memory 211, (The above-mentioned persistent storage device), which may further include a storage medium 110.
- the input / output interface 214 may be a means for interfacing with the input / output device 215.
- the input device may include a device such as a keyboard or a mouse, and the output device may include a device such as a display, a speaker, and the like.
- the input / output interface 214 may be a means for interfacing with a device having integrated functions for input and output, such as a touch screen.
- the input / output device 215 may be composed of the electronic device 1 (110) and one device.
- the input / output interface 224 of the server 150 may be a means for interfacing with the server 150 or an interface with a device (not shown) for input or output that the server 150 may include.
- the configuration is performed using the data provided by the server 150 or the electronic device 2 (120)
- a service screen or contents can be displayed on the display through the input / output interface 214.
- electronic device 1 110 and server 150 may include more components than the components of FIG. However, there is no need to clearly illustrate most prior art components.
- electronic device 1 110 may be implemented to include at least a portion of input / output devices 215 described above, or may be implemented with other components such as a transceiver, Global Positioning System (GPS) module, camera, Elements. More specifically, when the electronic device 1 (110) is a smart phone, the acceleration sensor, the gyro sensor, the camera module, various physical buttons, buttons using a touch panel, input / output ports, A vibrator, and the like may be further included in the electronic device 1 (110).
- GPS Global Positioning System
- 3 to 5 are diagrams illustrating examples of providing network quality information in an embodiment of the present invention.
- FIG. 3 shows an example in which a user interface screen provided in the messenger application is displayed on a screen of the electronic device 110.
- a user interface 310 associated with a call is provided.
- network quality information 320 indicating the quality of an access network connected to the electronic device 1 110 and capable of providing a VoIP service is displayed on the screen of the electronic device 110.
- the quality of the access network expressed as 'VoIP quality' as the network quality information 320 is shown as one of values 1 to 10 (value '6' in the embodiment of FIG. 3) have.
- FIG. 4 shows an example in which a profile window 410 of a selected friend is selected on the screen of the electronic device 110 according to the selection of a specific friend in the instant messenger application.
- the network quality information 430 indicating the quality of an access network capable of providing a VoIP service, which is connected to the electronic device 1 (110), is transmitted to the electronic device 1 (110) before the start input for the call occurs, And is displayed on the screen of the device 1 (110).
- the quality of the access network expressed as 'VoIP quality' as the network quality information 430 is shown as one of values 1 to 10 (value '6' in the embodiment of FIG. 4) have.
- FIG. 5 shows an example in which a user interface screen provided in a telephone call application is displayed on a screen of the electronic device 110.
- a user interface 510 associated with a call is provided.
- the quality of the access network expressed as 'VoIP quality' as the network quality information 520 is shown as one of the values of 1 to 10 (the value '6' in the embodiment of FIG. 5) have.
- the user provides the network quality information of the access network in response to the provision of the user interface associated with the call, before the free call or video call using the VoIP service, It is possible to improve the satisfaction of the VoIP service while inducing the VoIP service to be selected.
- the user can make a free call or a video call using a VoIP service instead of a general call (for example, a call using a PLMN (Public Land Mobile Network) have.
- the user can increase the satisfaction of the VoIP service by receiving the high quality VoIP service, and the provider of the VoIP service obtains the benefit of the more users by the VoIP service.
- the current quality of the access network provided in advance is low, the user can proceed with a normal call. In this case, it is possible to prevent the user from having a bad prejudice against the VoIP service.
- the network quality information is expressed by a value within a predetermined range, but it is easily understood by those skilled in the art that a user can express the network quality information by other methods that can be recognized by the user.
- the network quality information may be displayed in three stages, upper, middle, or lower, or the network quality information may be displayed based on the change in color from red to green.
- the network quality information can be provided to the user through any one of the ways that the user can recognize the degree of quality of the access network capable of providing the VoIP service.
- the network quality information is preferably displayed through a location associated with the user interface associated with the call, but is not limited thereto.
- the network quality information may be displayed on the screen of the electronic device 1 (110) at a position independent of the user interface associated with the call.
- a computer device such as electronic device 1 (110) may monitor that a user interface associated with the call is provided to the user. For example, an application installed in the electronic device 1 (110) can confirm that a user interface related to a call has been provided through information on a situation or a key input for providing a user interface related to a call. Information of the network quality information can be displayed on the screen of the computer device such as the electronic device 1 (110) before the start input for the call occurs.
- FIG. 6 is a flowchart illustrating an example of a network quality verification method of an electronic device according to an embodiment of the present invention.
- the network quality verification method according to embodiments of the present invention can be performed by a computer apparatus such as the electronic apparatus 1 (110) described above.
- the electronic device 110 may perform the steps 610 to 630 included in the network quality verification method of FIG.
- the processor 212 of the electronic device 1 (110) may be operable to code the operating system contained in the memory 211, or code of the at least one computer program (e.g., an application provided for the network quality verification method) And may be implemented to execute control instructions.
- the processor 212 controls the first electronic device 110 so that the first electronic device 110 performs the steps 610 through 630 of FIG. 6 in accordance with the control command provided by the code stored in the first electronic device 110 Can be controlled.
- the electronic device 1 (110) may recognize the provision of a user interface associated with the call using the electronic device 1 (110).
- the application installed in the electronic device 1 (110) may include information on a user interface for recognition.
- information on specific applications providing a call function and information on user interfaces associated with a call in the applications may be stored, and the electronic device 110 (110) And may recognize whether a user interface associated with the call has been provided.
- the first electronic device 110 obtains the network quality information indicating the quality of the access network that is connected to the first electronic device 110 and is capable of providing the VoIP service .
- provision of a user interface associated with a call may mean that the user intends to make a call or that a path is provided to the user to access the call, wherein the electronic device 1 (110)
- the network quality information can be obtained in order to provide the network quality information according to the provision of the associated user interface. Techniques for obtaining network quality information will be described in detail later.
- the first electronic device 110 may display the obtained network quality information on the screen of the electronic device 110 before the start input for the call is generated through the user interface. Accordingly, the first electronic device 110 can prevent the user from entering the VoIP service through the quality of the access network for the VoIP service or from having a bad prejudice against the VoIP service through the low quality access network.
- the user can select either the call using the VoIP service or the call using the VoIP service according to the provided network quality information.
- the call may be automatically performed by selecting either a call using a VoIP service or a general call.
- FIG. 7 is a flowchart illustrating an example of a process of automatically selecting one of a call using a VoIP service and a general call according to the degree of quality set by a user in an embodiment of the present invention.
- the steps 710 to 750 of FIG. 7 may be performed after step 630 described above with reference to FIG. 6, or may be performed instead of step 630.
- FIG. 7 shows an example in which steps 710 to 750 are performed after step 630.
- the electronic device 1 (110) can provide the user with a function that allows the user to set the degree of quality. For example, if the degree of quality for the access network is in the range of 1 to 10, a function may be provided for the user to select any one of the values from 1 to 10.
- the first electronic device 110 may store and manage the first degree of quality set through the function of setting the degree of quality.
- the electronic device 1 (110) can store and manage the first degree '7' of the set quality.
- the first degree '7' of the quality set according to the control of the application installed in the electronic device 1 (110) can be managed.
- the first electronic device 110 may compare whether the second degree of quality according to the obtained network quality information is equal to or greater than the first degree of the set quality. At this time, the electronic device 110 may perform step 740 if the second degree is greater than or equal to the first degree, and may perform step 750 if the second degree is less than the first degree. As in the above example, if the second degree of quality according to the network quality information is greater than or equal to the first degree " 7 " of the set quality, step 740 may be performed. Conversely, if the second degree is less than the first degree ' 7, then step 750 may be performed.
- the first electronic device 110 may attempt to connect a call using the VoIP service according to the start input of the user's call.
- the electronic device 1 (110) can automatically attempt to connect the call using the VoIP service according to the start input of the user's call. For example, a call using a VoIP service may be attempted even if the user presses a button for a normal call.
- the other party of the call can be specified through the account of the selected VoIP service based on the telephone number selected or inputted in association with the ordinary call.
- the electronic device 1 (110) may try to connect a normal call according to the start input of the user's call. In other words, the electronic device 1 (110) can control the general call to proceed automatically when the network quality is low.
- a network verification server can be utilized to acquire network quality information.
- the network verification server may correspond to the server 150 described with reference to FIG. 1 and FIG.
- methods for acquiring network quality information through the network validation server will be described in more detail.
- 8 is a diagram illustrating a first example of a process of acquiring network quality information in an embodiment of the present invention. 8 shows an electronic device 810 corresponding to the electronic device 1 110 described above and a network verification server 820 corresponding to the server 150 described above.
- the electronic device 810 that wants to acquire the network quality information can transmit and receive packets with the network verification server 820 for a preset time.
- the electronic device 810 can exchange RTP (Real-time Transport Protocol) packets with the network validation server 820 for a short time (for example, 500 to 1000 milliseconds).
- RTP Real-time Transport Protocol
- the electronic device 810 may measure at least one of quality information such as latency, loss, and jitter of the transmitted and received packets. Measuring the quality of a network through parameters such as latency, loss, jitter, etc., will be readily apparent to those skilled in the art through well known techniques.
- the electronic device 810 may calculate, as first network quality information, a VoIP quality index that expresses the quality of the access network at a value within a predetermined range according to the measured at least one quality information.
- the VoIP quality index may be a value within a predetermined range of the quality of the access network as described above.
- the quality information and the first network quality information may be measured at network verification server 820 and provided to electronic device 810.
- the electronic device 810 may use the first network quality information as the network quality information described above, but may further use the second network quality information.
- the second network quality information may be provided through the network quality information for each access network collected and managed by the network verification server 820.
- the network validation server 820 collects quality information measured in connection with the access network from a plurality of electronic devices 910, and generates network information for each access network.
- each of the plurality of electronic devices 910 can measure at least one of quality information of delay time, loss, and jitter of packets transmitted and received in the process of performing a VoIP service, To the verification server 820.
- the electronic device 810 also measures the quality information of the packets transmitted and received in the process of performing the VoIP service in the case of performing a free call or a video call using the VoIP service and transmits the measured quality information to the network validation server 820 ).
- the electronic device 810 may also be one of a plurality of electronic devices 910.
- the electronic device 810 selects at least one of the delay time, loss and jitter for the packets transmitted and received in the course of performing the VoIP service
- One quality information may be measured, and at least one of the measured quality information and the information about the access network may be linked and transmitted to the network verification server 820.
- each of the plurality of electronic devices 910 may further transmit information on the access network used for performing the VoIP service to the network verification server 820.
- the identifier of the access network may be transmitted to the network verification server 820 with the measured quality information.
- the network verification server 820 can generate the network quality information using the quality information, associates the information about the access network with the network quality information generated for the access network, Stored and managed.
- the network verification server 820 can obtain the network quality information by the access network.
- a plurality of network quality information for the same access network can be obtained.
- the network verification server 820 can statistically maintain the network quality information by statistically correlating the network quality information with respect to one access network.
- the electronic device 810 may request the network quality information from the network verification server 820 before the start of the call, and the second network 820 may extract the network quality information from the network quality information database 920, Quality information can be received.
- the quality information can be extracted and provided to the electronic device 810.
- the network verification server 820 further receives the location information of each of the plurality of electronic devices 910 when the VoIP service is performed (during a VoIP call), and according to the location information, The network quality information may be further subdivided.
- the network verification server 820 may further subdivide the network quality information for the same access network according to the call time zone.
- the quality of an access network may vary depending on the location of a specific electronic device from the access network, and may vary depending on the number of access users. Therefore, depending on the time at which a specific electronic device accesses the access network It can be different. Therefore, the network verification server 820 can manage and manage the network quality information by location and / or time zone for each access network and for the same access network.
- the electronic device 810 can transmit the location information to the network verification server 820 together with the identifier of the current access network.
- the network validation server 820 may extract the second network quality information corresponding to the received location and / or time zone among the network quality information corresponding to the identifier, and provide the extracted second network quality information to the electronic device 810.
- the second network quality information provided to the electronic device 810 is displayed on the screen of the electronic device 810 before the start input for the call is generated, So that the quality (quality of the access network) can be sensed.
- both the first network quality information described in the embodiment of FIG. 8 and the second network quality information described in the embodiment of FIG. 9 may be utilized.
- the electronic device 810 generates first network quality information through packet transmission / reception with the network verification server 820, receives second network quality information from the network verification server 820, It is possible to generate the network quality information for providing to the user by using both the quality information and the second network quality information.
- the electronic device 810 may generate network quality information for averaging and providing the user with a weighted sum of the first network quality information and the second network quality information.
- FIG. 10 is a flowchart illustrating a network quality verification method of a network validation server according to an embodiment of the present invention.
- the network quality verification method may be performed by the network verification server 820 described above and the network verification server 820 may be implemented by a computer device such as the server 150.
- the network verification server 820 may perform the steps 1010 to 1050 included in the network quality verification method of FIG.
- the processor 222 of the server 150 may be implemented to execute control instructions in accordance with the code of the operating system or the code of at least one computer program that the memory 221 contains.
- the processor 222 may control the server 150 to perform the steps 1010 to 1050 of FIG. 10 according to the control command provided by the code stored in the server 150.
- the network verification server 820 may collect quality information measured in connection with an access network capable of providing a VoIP service in a plurality of electronic devices. 9, it is possible to measure at least one of quality information of delay time, loss, and jitter of packets transmitted and received in a process of performing a VoIP service by each of a plurality of electronic devices 910, Information can be transmitted to the network validation server 820.
- the network verification server 820 may generate network quality information for each access network using the collected quality information.
- network validation server 820 may store and manage the generated network quality information in a database.
- the network verification server 820 can generate and manage the network quality information by the access network and store the information in the database, as described above with reference to FIG.
- the database may correspond to the network quality information database 920 described with reference to FIG.
- the network validation server 820 may receive a request for network quality information of the first access network from the electronic device 810. The request may occur at the electronic device 810 in response to the user interface associated with the call using the electronic device 810 being provided at the electronic device 810.
- the network validation server 820 may retrieve the first network quality information corresponding to the request from the database and send it to the electronic device 810. At this time, before the start input for the call is generated in the electronic device 810 through the user interface, the electronic device 810 displays the screen of the electronic device 810 using the first network quality information, Quality information can be displayed.
- the network verification server 820 can transmit and receive packets to and from the electronic device 810 for a predetermined period of time.
- the delay time, loss, and jitter And a VoIP quality index indicating the quality of the access network at a value within a preset range according to the measured at least one quality information may be calculated as the second network quality information.
- the electronic device 810 can determine the network quality information for the first access network using both the first network quality information and the second network quality information.
- the network verification server 820 can check information on at least one of the location and the call time zone of each of the plurality of electronic devices in the measurement of the quality information in step 1010, and in step 1030,
- the network quality information of the access network may be subdivided into network quality information of at least one of the confirmed information and stored in the database and managed.
- the network validation server 820 confirms at least one of the location of the electronic device 810 and the call time zone in step 1040, and in step 1050, the network quality information corresponding to the first access network, And the call time zone may be extracted from the database as first network quality information and transmitted to the electronic device 810.
- the electronic device 810 can determine the network quality information for the first access network using both the first network quality information and the second network quality information.
- the user can help the user to select the VoIP service and improve the user's satisfaction with the VoIP service.
- the embodiments of the present invention it is possible to provide the users with information that can predict the quality of the access network related to the VoIP service before attempting the VoIP service, And at the same time, satisfaction with the VoIP service can be improved.
- the system or apparatus described above may be implemented as a hardware component, a software component or a combination of hardware components and software components.
- 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.
- OS operating system
- the processing device may also access, store, manipulate, process, and generate data in response to execution of the software.
- 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.
- 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 As shown in FIG.
- 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.
- Such a recording medium may be a variety of recording means or storage means in the form of a single or a plurality of hardware combined and is not limited to a medium directly connected to any computer system but may be dispersed on a network.
- 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.
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- Engineering & Computer Science (AREA)
- Signal Processing (AREA)
- Computer Networks & Wireless Communication (AREA)
- Quality & Reliability (AREA)
- Telephonic Communication Services (AREA)
- Telephone Function (AREA)
- Data Exchanges In Wide-Area Networks (AREA)
Abstract
L'invention concerne une technologie de contrôle de la qualité d'un réseau d'accès pour un service voix sur IP (VoIP). Un procédé de vérification de la qualité d'un réseau selon des modes de réalisation de la présente invention peut comprendre les étapes consistant à : en réponse à la fourniture d'une interface utilisateur associée à un appel à l'aide d'un dispositif électronique, se connecter au dispositif électronique et acquérir des informations de qualité de réseau indiquant la qualité d'un réseau d'accès apte à fournir un service voix sur IP (VoIP) ; et avant qu'une entrée de début d'appel soit exécutée via l'interface utilisateur, afficher les informations de qualité de réseau acquises sur un écran du dispositif électronique.
Priority Applications (3)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
PCT/KR2017/009118 WO2019039621A1 (fr) | 2017-08-22 | 2017-08-22 | Contrôle de qualité de réseau d'accès pour voip |
KR1020197038237A KR102447398B1 (ko) | 2017-08-22 | 2017-08-22 | Voip를 위한 접속망 품질 관리 |
JP2020506227A JP7030184B2 (ja) | 2017-08-22 | 2017-08-22 | VoIPのためのアクセスネットワークの品質管理 |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
PCT/KR2017/009118 WO2019039621A1 (fr) | 2017-08-22 | 2017-08-22 | Contrôle de qualité de réseau d'accès pour voip |
Publications (1)
Publication Number | Publication Date |
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WO2019039621A1 true WO2019039621A1 (fr) | 2019-02-28 |
Family
ID=65439459
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
PCT/KR2017/009118 WO2019039621A1 (fr) | 2017-08-22 | 2017-08-22 | Contrôle de qualité de réseau d'accès pour voip |
Country Status (3)
Country | Link |
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JP (1) | JP7030184B2 (fr) |
KR (1) | KR102447398B1 (fr) |
WO (1) | WO2019039621A1 (fr) |
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KR20030028784A (ko) * | 2003-02-12 | 2003-04-10 | 주식회사데이콤 | VoIP 가입자 단말 게이트웨이 |
US20040208133A1 (en) * | 2003-04-21 | 2004-10-21 | Dylan Jay | Method and apparatus for predicting the quality of packet data communications |
US20080062887A1 (en) * | 2006-09-13 | 2008-03-13 | Sbc Knowledge Ventures, L.P. | Method and apparatus for presenting quality information in a communication system |
KR20140080849A (ko) * | 2012-12-20 | 2014-07-01 | (주)카카오 | 모바일 보이스 오버 인터넷 프로토콜(mVoIP) 서비스에서의 품질 정보 제공 및 관리 방법 |
KR20160030408A (ko) * | 2014-09-10 | 2016-03-18 | (주)브릿지모바일 | 일반 통화 모드 및 인터넷 통화 모드를 스위칭하는 통화 서비스 제공 방법 및 시스템 |
Family Cites Families (5)
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JP4314515B2 (ja) | 2003-08-15 | 2009-08-19 | ソニー株式会社 | 通信機器および回線状況表示プログラム、並びに回線状況表示方法 |
JP2014192710A (ja) | 2013-03-27 | 2014-10-06 | Oki Electric Ind Co Ltd | 音声通信品質測定システム、音声通信品質測定方法、音声通信品質測定装置、音声通信品質測定プログラム、音声通信品質要求装置及び音声通信品質要求プログラム |
JP6304972B2 (ja) | 2013-08-23 | 2018-04-04 | エヌ・ティ・ティ・コミュニケーションズ株式会社 | 通信端末、品質指標出力システム、品質指標出力方法、及びコンピュータプログラム |
JP6292903B2 (ja) | 2014-01-28 | 2018-03-14 | エヌ・ティ・ティ・コミュニケーションズ株式会社 | 通信端末、コーデック制御方法及びコンピュータプログラム |
KR20170088745A (ko) * | 2016-01-25 | 2017-08-02 | 문병진 | Sip 네트워크에서 구간별 통화 품질 예측 방법 |
-
2017
- 2017-08-22 KR KR1020197038237A patent/KR102447398B1/ko active IP Right Grant
- 2017-08-22 WO PCT/KR2017/009118 patent/WO2019039621A1/fr active Application Filing
- 2017-08-22 JP JP2020506227A patent/JP7030184B2/ja active Active
Patent Citations (5)
Publication number | Priority date | Publication date | Assignee | Title |
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KR20030028784A (ko) * | 2003-02-12 | 2003-04-10 | 주식회사데이콤 | VoIP 가입자 단말 게이트웨이 |
US20040208133A1 (en) * | 2003-04-21 | 2004-10-21 | Dylan Jay | Method and apparatus for predicting the quality of packet data communications |
US20080062887A1 (en) * | 2006-09-13 | 2008-03-13 | Sbc Knowledge Ventures, L.P. | Method and apparatus for presenting quality information in a communication system |
KR20140080849A (ko) * | 2012-12-20 | 2014-07-01 | (주)카카오 | 모바일 보이스 오버 인터넷 프로토콜(mVoIP) 서비스에서의 품질 정보 제공 및 관리 방법 |
KR20160030408A (ko) * | 2014-09-10 | 2016-03-18 | (주)브릿지모바일 | 일반 통화 모드 및 인터넷 통화 모드를 스위칭하는 통화 서비스 제공 방법 및 시스템 |
Also Published As
Publication number | Publication date |
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JP2021500762A (ja) | 2021-01-07 |
JP7030184B2 (ja) | 2022-03-04 |
KR20200034962A (ko) | 2020-04-01 |
KR102447398B1 (ko) | 2022-09-26 |
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