CA3129986A1 - Network testing method and device - Google Patents

Network testing method and device

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Publication number
CA3129986A1
CA3129986A1 CA3129986A CA3129986A CA3129986A1 CA 3129986 A1 CA3129986 A1 CA 3129986A1 CA 3129986 A CA3129986 A CA 3129986A CA 3129986 A CA3129986 A CA 3129986A CA 3129986 A1 CA3129986 A1 CA 3129986A1
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CA
Canada
Prior art keywords
network
sdk
detection
server
url
Prior art date
Legal status (The legal status 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 status listed.)
Pending
Application number
CA3129986A
Other languages
French (fr)
Inventor
Guichen LI
Xin Huang
Ye Wang
Yongyong Shu
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
10353744 Canada Ltd
Original Assignee
10353744 Canada Ltd
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 10353744 Canada Ltd filed Critical 10353744 Canada Ltd
Publication of CA3129986A1 publication Critical patent/CA3129986A1/en
Pending legal-status Critical Current

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Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W24/00Supervisory, monitoring or testing arrangements
    • H04W24/08Testing, supervising or monitoring using real traffic

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  • Engineering & Computer Science (AREA)
  • Computer Networks & Wireless Communication (AREA)
  • Signal Processing (AREA)
  • Debugging And Monitoring (AREA)
  • Small-Scale Networks (AREA)

Abstract

The present invention discloses a method and an apparatus for network testing, and relates to the technical field of network testing. The method involves integrating an SDK
capable of cyclically initiating network detection into an APP, so that terminals installed with the APP can cyclically perform network detection tasks, thereby reducing costs for network testing.
The method involves integrating the SDK with the APP; having the SDK initiate a heartbeat request to a server based on a predetermined cycle, so as to acquire a network-detection URL returned by the server; and having the SDK perform network-detection tasks according to the network-detection URL, and feed network-detection results to the server for statistical analysis. The apparatus is designed to implement the disclosed method.

Description

NETWORK TESTING METHOD AND DEVICE
BACKGROUND OF THE INVENTION
Technical Field [0001] The present invention relates to network testing, and more particularly to a method and an apparatus for network testing.
Description of Related Art
[0002] Network testing is usually used by network operators or network-based service provides to check network performance in various environments as a basis for network improvements.
Conventionally, implementation of network testing necessitates extensive deployment of numerous nodes that the relevant network operators or service provides have to build or rent, making such deployment labor- and resource-consuming.
SUMMARY OF THE INVENTION
[0003] The objective of the present invention is to provide a method and an apparatus for network testing, involving integrating an SDK for cyclically performing network detection tasks into an APP, so that a terminal can cyclically perform network detection tasks in virtue of the SDK, thereby reducing costs for network testing.
[0004] For achieving the foregoing objective, in a first aspect, the present invention provides a method for network testing, comprising:
[0005] integrating an SDK capable of cyclically initiating network-detection tasks into an APP;
[0006] initiating, by the SDK, a heartbeat request to a server based on a predetermined cycle, so as to acquire a network-detection URL returned by the server; and
[0007] performing, by the SDK, said network-detection tasks according to the network-detection URL, and feeding network-detection results back to the server for statistical analysis to get network-testing results.

Date recue / Date received 2021-11-03
[0008] Preferably, before the step of initiating, by the SDK, a heartbeat request to a server based on a predetermined cycle, so as to acquire a network-detection URL returned by the server, the method furth when the APP is activated, registering a timing service about the network-detection tasks through AlarmManager of the SDK.
[0009] More preferably, the step of initiating, by the SDK, a heartbeat request to a server based on a predetermined cycle, so as to acquire a network-detection URL returned by the server comprises:
[0010] after the SDK initiates the heartbeat request to the server based on the predetermined cycle, returning, by the server, the network-detection URL based on predetermined conditions of the current network testing to the SDK if the SDK satisfies the predetermined conditions.
[0011] Exemplificatively, the predetermined conditions include the number of tested terminals, tested areas, and a name of a tested network operator.
[0012] Optionally, when the SDK satisfying the predetermined conditions receives the network-detection URL returned by the server, but the number of times that the SDK has ignored the network-detection tasks has exceeded a frequency threshold, pulling the SDK
into a blacklist so that the server excludes the SDK from being assigned with future said network-detection tasks.
[0013] Preferably, the step of performing, by the SDK, said network-detection tasks according to the network-detection URL, and feeding network-detection results back to the server for statistical analysis to get network-testing results comprises:
[0014] accessing, by the SDK, a detected network according to the network-detection URL, so as to acquire the network-detection results returned by the detected network, in which the network-detection results include a network state, a signal strength, and a network operator name; and
[0015] packaging and sending, by the SDK, the network-detection results and terminal parameters for installing the APP to the server, so that the server performs the data statistical Date recue / Date received 2021-11-03 analysis according to the network-detection results and the terminal parameters, in which the terminal parameters include a system version, an application, and terminal information.
[0016] More preferably, after the step of performing, by the SDK, said network-detection tasks according to the network-detection URL, and feeding the network-detection results back to the server for statistical analysis, the method further comprises:
[0017] analyzing, by the server, the results obtained through the statistical analysis, and automatically providing an alert service to an administrator when a predetermined alert threshold is reached.
[0018] As compared to the prior art, the method for network testing of the present invention has the following beneficial effects:
[0019] In the method of the present invention, the SDA capable of performing network detection tasks cyclically is developed and integrated into the APP. Thus, when a user installs the APP
into his/her terminal device, the SDK can cyclically initiate the heartbeat request to the server based on the predetermined cycle, thereby acquiring a network-detection URL
returned by the server. The SDK then can use the network-detection URL to perform detection tasks cyclically, and send the network-detection results obtained in the network-detection tasks to the server. The administrator can according to a large number of network-detection results fed back be the SDK statistically analyze the data, so as to estimate network performance in the area covered by the tests.
[0020] It is thus clear that with the SDK integrated into the APP, the present invention can flexibly test any area of interest in a real-time manner as long as there is a user holding a terminal device installed with the APP in that area. As compare to the existing scheme that needs to build or rent numerous nodes, the scheme disclosed herein can significantly reduce costs for network testing.
[0021] In a second aspect, the present invention provides an apparatus for network testing, wherein the apparatus is used in the method for network testing according to the foregoing.
The apparatus comprises:

Date recue / Date received 2021-11-03
[0022] an SDK setting unit, for integrating an SDK capable of cyclically initiating network-detection tasks into an APP;
[0023] a heartbeat requiring unit, for having the SDK initiate a heartbeat request to a server based on a predetermined cycle, so as to acquire a network-detection URL returned by the server;
[0024] a network detecting unit, for having the SDK perform said network-detection tasks according to the network-detection URL, and feeding network-detection results back to the server for statistical analysis to get network-testing results.
[0025] Preferably, between the SDK setting unit and the heartbeat requiring unit there is:
[0026] a timing service unit, for registering a timing service about the network-detection tasks through the AlarmManager of the SDK when the APP is activated.
[0027] As compared to the prior art, the disclosed apparatus for network testing has beneficial effects that are identical to those of the method for network testing as provided by the foregoing technical scheme, and thus no repeated discussion is made herein.
[0028] In a third aspect, the present invention provides a computer-readable storage medium, storing therein a computer program, wherein the computer program when executed by a processor performs the steps of the foregoing method for network testing.
[0029] As compared to the prior art, the computer-readable storage medium of present invention has beneficial effects that are identical to those of the method for network testing as provided by the foregoing technical scheme, and thus no repeated discussion is made herein.
BRIEF DESCRIPTION OF THE DRAWINGS
[0030] The accompanying drawings are provided herein for better understanding of the present invention and form a part of this disclosure. The illustrative embodiments and their descriptions are for explaining the present invention and by no means form any improper limitation to the present invention, wherein:
[0031] FIG. 1 is a flowchart of a method for network testing according to one embodiment of the present invention; and
[0032] FIG. 2 is a timing diagram of the method of the embodiment.

Date recue / Date received 2021-11-03 DETAILED DESCRIPTION OF THE INVENTION
[0033] To make the foregoing objectives, features, and advantages of the present invention clearer and more understandable, the following description will be directed to some embodiments as depicted in the accompanying drawings to detail the technical schemes disclosed in these embodiments. It is, however, to be understood that the embodiments referred herein are only a part of all possible embodiments and thus not exhaustive. Based on the embodiments of the present invention, all the other embodiments can be conceived without creative labor by people of ordinary skill in the art, and all these and other embodiments shall be embraced in the scope of the present invention.
[0034] Embodiment I
[0035] Referring to FIG. 1, the present embodiment provides a method for network testing. The method comprises the steps detailed below.
[0036] The first step involves integrating an SDK capable of cyclically initiating network-detection tasks into an APP, and having the SDK cyclically initiate heartbeat requests to a server based on predetermined cycle, so as to acquire a network-detection URL
returned by the server. The SDK performs detection tasks according to the network-detection URL, and feeds the network-detection results to the server where the network testing results are statistically analyzed.
[0037] In the method of the present embodiment, the SDA capable of performing network detection tasks cyclically is developed and integrated into the APP. Thus, when a user installs the APP into his/her terminal device, the SDK can cyclically initiate the heartbeat request to the server based on the predetermined cycle, thereby acquiring a network-detection URL
returned by the server. The SDK then can use the network-detection URL to perform detection tasks cyclically, and send the network-detection results obtained in the network-detection tasks to the server. The administrator can according to a large number of network-detection results fed back be the SDK statistically analyze the data, so as to estimate network performance in the area covered by the tests.
Date recue / Date received 2021-11-03
[0038] It is thus clear that with the SDK integrated into the APP, the present invention can flexibly test any area of interest in a real-time manner as long as there is a user holding a terminal device installed with the APP in that area. As compare to the existing scheme that needs to build or rent numerous nodes, the scheme disclosed herein can significantly reduce costs for network testing. In addition, as compared to the known scheme in which the server actively pushes the network-detection URL to the SDK, the present embodiment can minimize interference with users and its selection of users is more subject-targeting.
[0039] In the foregoing embodiment, before the step of initiating, by the SDK, a heartbeat request to a server based on a predetermined cycle, so as to acquire a network-detection URL
returned by the server, the method further comprises:
[0040] when the APP is activated, registering a timing service of network detection tasks using AlarmManager of the SDK.
[0041] In the foregoing embodiment, the SDK performing the network-detection tasks according to the network-detection URL, and feeding the network-detection results back to the server for statistical analysis of network testing result is achieved by:
[0042] accessing, by the SDK, a detected network according to the network-detection URL, so as to acquire the network-detection results returned by the detected network, in which the network-detection results include a network state, a signal strength, and a network operator name; and packaging and sending, by the SDK, the network-detection results and terminal parameters for installing the APP to the server, so that the server performs the data statistical analysis according to the network-detection results and the terminal parameters, in which the terminal parameters include a system version, an application, and terminal information.
[0043] Referring to FIG. 2, in a particular implementation, after the APP is activated, it automatically initializes the SDK, so that the SDK registers a network detection service that is provide cyclically based on AlarmManager. For example, it may initiate a heartbeat request every 30 minutes, and inform the terminal system OS of the registered service. When it is the time to act according to cycle, the system OS sends a heartbeat request reminder to Date recue / Date received 2021-11-03 the SDK. After receiving the reminder, the SDK instantly initiates a heartbeat request to the server. A heartbeat request is composed of a header and an entity, wherein the header includes network identification information, such as the network operator used by the terminal, the breakout IP address, etc. The entity includes terminal identification parameters, such as the system version, applications, terminal information, etc. After receiving a heartbeat request from the SDK, the server automatically identifies the network operator the user is using to access the network and the geographical region in which the user is accessing the network according to the heartbeat request, and then according to conditions predetermined for this network test makes determination. Subsequently, when it is determined that the SDK satisfies the testing conditions, the network-detection URL is returned to the SDK. When it is determined that the SDK does not satisfy the testing conditions, a rejection against the request is sent to the SDK. The SDK, after receiving the URL address, accesses the address and performs its network detection task. The URL server sends network-detection results, including the network state, signal strength and the name of the network operator, back to the SDK. Afterward, the SDK packages the network-detection results and the terminal parameters, and uploads the package of a predetermined format to the server, so that the server can generate a landing file according to the packaged data for statistical analysis.
[0044] It is to be understood that when there is a need to update the network testing tasks, the administrator may work with the APP supplier to remotely update the cycle network detection tasks in the SDK through updating the APP, so as to realize remote distribution and updating of network testing tasks.
[0045] In the foregoing embodiment, the step of initiating, by the SDK, a heartbeat request to a server based on a predetermined cycle, so as to acquire a network-detection URL returned by the server comprises:
[0046] after the SDK initiates the heartbeat request to the server based on the predetermined cycle, returning, by the server, the network-detection URL based on predetermined Date recue / Date received 2021-11-03 conditions of the current network testing to the SDK if the SDK satisfies the predetermined conditions. Therein, the predetermined conditions include the number of tested terminals, tested areas, and the name of the network operator of the tested network.
[0047] In the foregoing embodiment, the step of performing, by the SDK, said network-detection tasks according to the network-detection URL, and feeding network-detection results back to the server for statistical analysis to get network-testing results comprises:
[0048] accessing, by the SDK, a detected network according to the network-detection URL, so as to acquire the network-detection results returned by the detected network, in which the network-detection results include a network state, a signal strength, and a network operator name; and packaging and sending, by the SDK, the network-detection results and terminal parameters for installing the APP to the server, so that the server performs the data statistical analysis according to the network-detection results and the terminal parameters, in which the terminal parameters include a system version, an application, and terminal information. It is to be noted that statistical analysis of network testing results is well known in the art therefore detailed description about it is omitted herein.
[0049] In a particular implementation, the administrator may remotely configure the predetermined conditions for network testing in the server. For example, in a case where network testing is to be done against 10,000 terminals operating across the network of China Unicorn (China United Network Communications Group Co., Ltd.,) in Nanking, China, when the server receives a heartbeat request initiated by a terminal that is not one held by a Nanking user or operating in the China Unicorn network, the server sends a rejection to the SDK of the ternal to refuse the request. In addition, if the server has received more than 10,000 heartbeat requests from terminals held by Nanking users and operating in the China Unicorn network during the current cycle, the server also sends rejection to all the relevant SDKs. In other words, only when a heartbeat request initiated by a SDK is from a Nanking user using the China Unicorn network, and has a sequence in the current cycle is earlier than the 10,000th one, will the server return a network-detection URL to the relevant SDK. With Date recue / Date received 2021-11-03 these predetermined conditions set, a "first-come first-responded, number limited" rule for request handling can be established to make network testing more flexible and subject-targeting.
[0050] Preferably, in the foregoing embodiment, when the SDK satisfying the predetermined conditions receives the network-detection URL returned by the server, but the number of times that the SDK has ignored the network-detection tasks has exceeded a frequency threshold, the SDK is pulled into a blacklist so that the server excludes the SDK from being assigned with future said network-detection tasks. By using a blacklist, the present invention can mask users who are not willing to participate in network testing. The willing of a user about whether he/she participates in network testing may be set and changed in the APP, and this help prevent unwilling users from disturbance by excluding them from the contact list, so as to not degrade user experience.
[0051] Preferably, after the step of performing, by the SDK, said network-detection tasks according to the network-detection URL, and feeding the network-detection results back to the server for statistical analysis, the method further comprises:
[0052] analyzing, by the server, the results obtained through the statistical analysis, and automatically providing an alert service to an administrator when a predetermined alert threshold is reached. By setting the alert threshold, the present embodiment can further enhance automation of network testing.
[0053] Embodiment 2
[0054] The present embodiment provides an apparatus for network testing. The apparatus comprises:
[0055] an SDK setting unit, for integrating an SDK capable of cyclically initiating network-detection tasks into an APP;
[0056] a heartbeat requiring unit, for having the SDK initiate a heartbeat request to a server based on a predetermined cycle, so as to acquire a network-detection URL returned by the server;

Date recue / Date received 2021-11-03
[0057] a network detecting unit, for having the SDK perform said network-detection tasks according to the network-detection URL, and feeding network-detection results back to the server for statistical analysis to get network-testing results.
[0058] Preferably, between the SDK setting unit and the heartbeat requiring unit there is:
[0059] a timing service unit, for registering a timing service about the network-detection tasks through the AlarmManager of the SDK when the APP is activated.
[0060] As compared to the prior art, the apparatus of the present embodiment has beneficial effects that are identical to those of the methods for network testing as provided by the foregoing technical schemes, no repeated discussion is made herein.
[0061] Embodiment 3
[0062] The present embodiment provides a computer-readable storage medium. The computer-readable storage medium stores a computer program. The computer program when executed by a processor, performs the steps of the method for network testing as described above.
[0063] The disclosed computer-readable storage medium is superior to the prior-art devices for having beneficial effects. As these beneficial effects are identical to those of the methods for network testing as provided by the foregoing technical schemes, no repeated discussion is made herein.
[0064] As will be appreciated by people of ordinary skill in the art, implementation of all or a part of the steps of the method of the present invention as described previously may be realized by having a program instruct related hardware components. The program may be stored in a computer-readable storage medium, and the program is about performing the individual steps of the methods described in the foregoing embodiments. The storage medium may be a ROM/RAM, a disk, a compact disk, a memory card or the like.
[0065] The present invention has been described with reference to the preferred embodiments and it is understood that the embodiments are not intended to limit the scope of the present invention. Moreover, as the contents disclosed herein should be readily understood and can be implemented by a person skilled in the art, all equivalent changes or modifications which Date recue / Date received 2021-11-03 do not depart from the concept of the present invention should be encompassed by the appended claims. Hence, the scope of the present invention shall only be defined by the appended claims.

Date recue / Date received 2021-11-03

Claims (10)

What is claimed is:
1. A method for network testing, the method comprising:
integrating an SDK capable of cyclically initiating network-detection tasks into an APP;
initiating, by the SDK, a heartbeat request to a server based on a predetermined cycle, so as to acquire a network-detection URL returned by the server; and performing, by the SDK, said network-detection tasks according to the network-detection URL, and feeding network-detection results back to the server for statistical analysis to get network-testing results.
2. The method of claim 1, wherein before the step of initiating, by the SDK, a heartbeat request to a server based on a predetermined cycle, so as to acquire a network-detection URL returned by the server, the method further comprises:
when the APP is activated, registering a timing service about the network-detection tasks through the SDK.
3. The method of claim 1 or 2, wherein the step of initiating, by the SDK, a heartbeat request to a server based on a predetermined cycle, so as to acquire a network-detection URL returned by the server comprises:
after the SDK initiates the heartbeat request to the server based on the predetermined cycle, returning, by the server, the network-detection URL based on predetermined conditions of the current network testing to the SDK if the SDK satisfies the predetermined conditions.

Date recue / Date received 2021-11-03
4. The method of claim 3, wherein the predetermined conditions include the number of tested terminals, tested areas, and a name of a tested network operator.
5. The method of claim 3, further comprising when the SDK satisfying the predetermined conditions receives the network-detection URL returned by the server, but the number of times that the SDK has ignored the network-detection tasks has exceeded a frequency threshold, pulling the SDK into a blacklist so that the server excludes the SDK from being assigned with future said network-detection tasks.
6. The method of claim 1 or 2, wherein the step of performing, by the SDK, said network-detection tasks according to the network-detection URL, and feeding network-detection results back to the server for statistical analysis to get network-testing results comprises:
accessing, by the SDK, a detected network according to the network-detection URL, so as to acquire the network-detection results returned by the detected network, in which the network-detection results include a network state, a signal strength, and a network operator name; and packaging and sending, by the SDK, the network-detection results and terminal parameters for installing the APP to the server, so that the server performs the data statistical analysis according to the network-detection results and the terminal parameters, in which the terminal parameters include a system version, an application, and terminal information.
7. The method of claim 6, wherein after the step of performing, by the SDK, said network-detection tasks according to the network-detection URL, and feeding the network-detection results back to the server for statistical analysis, the method further comprises:

Date recue / Date received 2021-11-03 analyzing, by the server, the results obtained through the statistical analysis, and automatically providing an alert service to an administrator when a predetermined alert threshold is reached.
8. An apparatus for network testing, comprising:
an SDK setting unit, for integrating an SDK capable of cyclically initiating network-detection tasks into an APP;
a heartbeat requiring unit, for having the SDK initiate a heartbeat request to a server based on a predetermined cycle, so as to acquire a network-detection URL returned by the server; and a network detecting unit, for having the SDK perform said network-detection tasks according to the network-detection URL, and feeding network-detection results back to the server for statistical analysis to get network-testing results.
9. The apparatus of claim 8, further comprising between the SDK setting unit and the heartbeat requiring unit:
a timing service unit, for registering a timing service about the network-detection tasks through the SDK when the APP is activated.
10. A computer-readable storage medium, storing therein a computer program, wherein the computer program when executed by a processor performs the steps of the method of any of claims 1 through 7.

Date recue / Date received 2021-11-03
CA3129986A 2020-09-03 2021-09-03 Network testing method and device Pending CA3129986A1 (en)

Applications Claiming Priority (2)

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CN117639906A (en) * 2024-01-26 2024-03-01 成都星联芯通科技有限公司 Method, device and system for testing performance of gateway station under high-orbit satellite broadband

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US20150067155A1 (en) * 2013-08-29 2015-03-05 Tune, Inc. Systems and methods for measuring approximate engagement of users in a software application
CN107832210A (en) * 2017-10-27 2018-03-23 广州四三九九信息科技有限公司 Access method of testing, device and a server are buried in daily record
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CN117135729B (en) * 2023-01-20 2024-05-24 荣耀终端有限公司 Multi-device cooperation method, system and terminal device
CN117639906A (en) * 2024-01-26 2024-03-01 成都星联芯通科技有限公司 Method, device and system for testing performance of gateway station under high-orbit satellite broadband
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