A detection method and device for an indoor network, an electronic device and a medium

By acquiring measurement reports and physical cell identifiers from terminal devices, indoor network detection information is generated, solving the problem of failures of indoor passive devices that cannot be detected in a timely manner. This enables automatic detection and fault identification, improving monitoring efficiency and reducing costs.

CN116208999BActive Publication Date: 2025-12-12CHINA TELECOM CORP LTD
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Patent Information

Application Number
CN202211729772.X
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-12-30
Publication Date
2025-12-12
Estimated Expiration
2042-12-30

AI Technical Summary

Technical Problem

In existing technologies, faults in indoor passive devices cannot be detected in a timely manner, leading to frequent user complaints. Manual inspections are inefficient and costly, and cannot effectively monitor faults in indoor distribution systems.

Method used

By acquiring measurement reports and physical cell identifiers of broadband locations reported by terminal devices, indoor network detection information is generated, enabling automatic detection and identification of abnormal and normal indoor network states.

Benefits of technology

It improves the efficiency of indoor distribution system fault monitoring, reduces monitoring costs, and enables automatic detection and fault identification of indoor networks.

✦ Generated by Eureka AI based on patent content.

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Abstract

Embodiments of the present application provide a detection method and device for an indoor network, electronic equipment and a medium. The method comprises: obtaining a measurement report reported by a terminal device connected to a broadband deployed at different positions in a room; the measurement report comprising a first physical cell identifier of a serving cell and a neighboring cell to which the terminal device is connected; obtaining a broadband position of each broadband and indoor network information corresponding to each broadband position; the indoor network information comprising a second physical cell identifier of the serving cell and the neighboring cell corresponding to the broadband position; and generating detection information for the indoor network according to the first physical cell identifier and the second physical cell identifier. Through the embodiments of the present application, the indoor network is detected by combining the measurement report reported by the terminal device when connecting to the broadband and the physical cell identifier corresponding to the broadband position; thus, the indoor network is automatically detected, the efficiency of monitoring the fault of the room distribution system is improved, and the cost of monitoring the fault of the room distribution system is reduced.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of detection, and in particular to a detection method and device for an indoor network, electronic equipment and a medium. BACKGROUND

[0002] Three major operators all use AGPS (Assisted Global Positioning System) MR (Measurement Report) to perform network-wide wireless coverage quality evaluation.

[0003] In the passive indoor distribution system that has been built, a traditional signal source, a combiner, passive devices (couplers, power dividers, etc.), a feeder and an antenna are mainly used to form a system. In order to solve the construction cost, a repeater is introduced to expand the coverage direction.

[0004] However, the fault monitoring system can only monitor the signal source, and the repeater, the combiner and the antenna below the signal source cannot be effectively monitored, so that the failure of these devices cannot be found in time, thereby causing frequent user complaints. Usually, manual inspection is used to exclude hidden dangers, but the timeliness of manual inspection is poor and the cost is high, which long-term restricts the fault monitoring of the indoor distribution system. SUMMARY

[0005] In view of the above problems, a detection method and device for an indoor network, electronic equipment and a medium are provided to overcome the above problems or at least partially solve the above problems, which comprise:

[0006] A detection method for an indoor network, the method comprising:

[0007] Obtaining a measurement report reported by a terminal device connected to a broadband deployed at different positions in a room; the measurement report comprising a first physical cell identifier of a serving cell and a neighboring cell connected by the terminal device;

[0008] Obtaining a broadband position of each broadband and indoor network information corresponding to each broadband position; the indoor network information comprising a second physical cell identifier of the serving cell and the neighboring cell corresponding to the broadband position;

[0009] Generating detection information for the indoor network according to the first physical cell identifier and the second physical cell identifier.

[0010] Optionally, the generating detection information for the indoor network according to the first physical cell identifier and the second physical cell identifier comprises:

[0011] determining a third physical cell identifier corresponding to a terminal device connected to a first broadband, and a fourth physical cell identifier corresponding to a first broadband position of the first broadband;

[0012] determining whether the third physical cell identifier matches the fourth physical cell identifier;

[0013] when the third physical cell identifier matches the fourth physical cell identifier, generating detection information with a normal result for an indoor network at the first broadband position;

[0014] when the third physical cell identifier does not match the fourth physical cell identifier, generating detection information with an abnormal result for the indoor network at the first broadband position.

[0015] Optionally, the measurement report further includes a first reference signal receiving power (RSRP) of a serving cell and a neighbor cell to which the terminal device is connected, and the indoor network information further includes a second RSRP of a serving cell and a neighbor cell corresponding to the broadband position;

[0016] generating the detection information for the indoor network according to the first physical cell identifier and the second physical cell identifier, includes:

[0017] generating the detection information for the indoor network according to the first physical cell identifier and the second physical cell identifier, and the first RSRP and the second RSRP.

[0018] Optionally, the method further includes:

[0019] obtaining at least one mobile phone number set in advance for each broadband, and a mobile terminal model corresponding to each mobile phone number, and obtaining a media access control (MAC) address and a mobile terminal model of a terminal device connected to each broadband;

[0020] obtaining auxiliary global satellite positioning system (AGPS) position information reported by a first target mobile phone number, and a first target MAC address of a target mobile terminal model currently connected to a second broadband; the first target mobile phone number is a mobile phone number set in advance for the second broadband;

[0021] determining whether the AGPS position information matches a broadband position of the second broadband;

[0022] when the AGPS position information matches the broadband position of the second broadband, determining whether a mobile terminal model corresponding to the first target mobile phone number matches the target mobile terminal model;

[0023] When the first target mobile phone number corresponds to a mobile terminal model matching the target mobile terminal model, a corresponding relationship between the first target mobile phone number, the target mobile terminal model and the first target MAC address is established.

[0024] Optionally, the method further comprises:

[0025] Optionally, the method further comprises:

[0026] Optionally, the method further comprises:

[0027] Optionally, the method further comprises:

[0028] Optionally, the method further comprises:

[0029] Optionally, the method further comprises:

[0030] Optionally, the method further comprises:

[0031] Optionally, the method further comprises:

[0032] Optionally, the method further comprises:

[0033] Optionally, the method further comprises:

[0034] Optionally, the method further comprises:

[0035] Optionally, the method further comprises:

[0036] Optionally, the detection module is configured to determine a third physical cell identifier corresponding to a terminal device connected to the first wideband, and a fourth physical cell identifier corresponding to a first wideband location of the first wideband; determine whether the third physical cell identifier matches the fourth physical cell identifier; when the third physical cell identifier matches the fourth physical cell identifier, generate detection information with a normal result for the indoor network at the first wideband location; and when the third physical cell identifier does not match the fourth physical cell identifier, generate detection information with an abnormal result for the indoor network at the first wideband location.

[0037] Optionally, the measurement report further includes first reference signal receiving power (RSRP) of a serving cell and a neighboring cell to which the terminal device is connected, and the indoor network information further includes second RSRP of a serving cell and a neighboring cell corresponding to a wideband location.

[0038] The detection module is configured to generate detection information for the indoor network according to the first physical cell identifier and the second physical cell identifier, and the first RSRP and the second RSRP.

[0039] Optionally, the apparatus further includes:

[0040] The relationship establishment module is configured to acquire at least one mobile phone number set in advance for each wideband, and a mobile phone terminal model corresponding to each mobile phone number; acquire a media access control (MAC) address of a terminal device connected to each wideband and the mobile phone terminal model; acquire auxiliary global satellite positioning system (AGPS) location information reported by a first target mobile phone number, and a first target MAC address of a target mobile phone terminal model currently connected to a second wideband; the first target mobile phone number is a mobile phone number set in advance for the second wideband; determine whether the AGPS location information matches a wideband location of the second wideband; when the AGPS location information matches the wideband location of the second wideband, determine whether a mobile phone terminal model corresponding to the first target mobile phone number matches the target mobile phone terminal model; and when the mobile phone terminal model corresponding to the first target mobile phone number matches the target mobile phone terminal model, establish a corresponding relationship among the first target mobile phone number, the target mobile phone terminal model, and the first target MAC address.

[0041] Optionally, the first acquisition module is configured to determine a second target MAC address of a terminal device connected to a third wideband; and acquire a measurement report reported by a second target mobile phone number corresponding to the second target MAC address.

[0042] Optionally, the detection module is configured to determine an abnormal room splitting system according to the first physical cell identifier and the second physical cell identifier; and generate detection information for the indoor network according to the abnormal room splitting system.

[0043] Optionally, the apparatus further comprises:

[0044] The report generation module is configured to generate indoor three-dimensional measurement report information according to the wideband position corresponding to each wideband and each measurement report.

[0045] The embodiments of the present application also provide an electronic device, including a processor, a memory, and a computer program stored in the memory and capable of running on the processor, and the computer program is executed by the processor to implement the above-mentioned detection method for the indoor network.

[0046] The embodiments of the present application also provide a computer readable storage medium, and the computer readable storage medium stores a computer program, and the computer program is executed by a processor to implement the above-mentioned detection method for the indoor network.

[0047] The embodiments of the present application have the following advantages:

[0048] In the embodiments of the present application, the measurement report reported by a terminal device connected to a wideband deployed at different positions in a room is acquired; the measurement report includes a first physical cell identifier of a serving cell and a neighbor cell connected by the terminal device; the wideband position of each wideband and indoor network information corresponding to each wideband position are acquired; the indoor network information includes a second physical cell identifier of the serving cell and the neighbor cell corresponding to the wideband position; and detection information for the indoor network is generated according to the first physical cell identifier and the second physical cell identifier. Through the embodiments of the present application, the indoor network is detected by combining the measurement report reported by the terminal device when connecting the wideband and the physical cell identifier corresponding to the wideband position; thus, the indoor network is automatically detected, the efficiency of monitoring the room splitting system fault is improved, and the cost of monitoring the room splitting system fault is reduced. BRIEF DESCRIPTION OF DRAWINGS

[0049] In order to more clearly illustrate the technical solutions of the present application, the following will briefly introduce the drawings needed to be used in the description of the present application. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can be obtained by those skilled in the art without any creative labor.

[0050] Figure 1 is a step flow chart of a detection method for an indoor network according to an embodiment of the present application;

[0051] Figure 2is a step flow chart of another detection method for an indoor network according to an embodiment of the present application;

[0052] Figure 3 is a schematic diagram of database updating according to an embodiment of the present application;

[0053] Figure 4 is a step flow chart of another detection method for an indoor network according to an embodiment of the present application;

[0054] Figure 5 is a step flow chart of another detection method for an indoor network according to an embodiment of the present application;

[0055] Figure 6 is a step flow chart of a detection method for an indoor network according to an embodiment of the present application;

[0056] Figure 7 is a structural schematic diagram of a detection device for an indoor network according to an embodiment of the present application. DETAILED DESCRIPTION

[0057] In order to make the above objectives, characteristics and advantages of the present application more apparent, further specific embodiments of the present application will be described in detail below with reference to the drawings and specific embodiments. Obviously, the described embodiments are part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative labor fall within the scope of protection of the present application.

[0058] In order to realize detection of an indoor network, an embodiment of the present application provides a detection method for an indoor network, which combines a measurement report reported by a terminal device when connecting a broadband and a physical cell identifier corresponding to a broadband position to detect the indoor network; thereby realizing automatic detection of the indoor network, improving the efficiency of monitoring of a room distribution system fault, and reducing the cost of monitoring of the room distribution system fault.

[0059] Referring to Figure 1 , a step flow chart of a detection method for an indoor network according to an embodiment of the present application can include the following steps:

[0060] In step 101, a measurement report reported by a terminal device connecting a broadband deployed at different positions in a room is acquired; the measurement report includes a first physical cell identifier of a serving cell and a neighbor cell connected by the terminal device.

[0061] The terminal device will also be connected with a cellular network when connecting the broadband; thereby, when the terminal device is connecting the broadband, the measurement report can be reported based on the connection with the cellular network; the measurement report can include the first physical cell identifier of the serving cell and the neighbor cell connected by the terminal device.

[0062] When it is necessary to detect the indoor network, the measurement report reported by the terminal device connected to the broadband deployed in different positions of the indoor network can be acquired; specifically, different families can be deployed with the broadband respectively, and the building positions corresponding to different families are also different; based on the measurement report corresponding to the broadband of different families, the measurement report reported by the terminal device in different building positions can be acquired.

[0063] In step 102, the broadband position of each broadband and the indoor network information corresponding to each broadband position are acquired; the indoor network information includes the second physical cell identifier of the serving cell and the neighboring cell corresponding to the broadband position.

[0064] In actual application, different building positions can be deployed with different indoor networks, for example, different room distribution systems can be deployed; the user can also set the corresponding broadband position in the account of the broadband when handling the broadband, and the broadband position has a certain corresponding relationship with the building position thereof.

[0065] Therefore, the embodiment of the present application can determine the building position of each broadband by acquiring the broadband position of each broadband; and then, based on the building position corresponding to each broadband, the room distribution system deployed in the building position corresponding to each broadband position is determined, and the second physical cell identifier corresponding thereto is determined.

[0066] In step 103, the detection information for the indoor network is generated according to the first physical cell identifier and the second physical cell identifier.

[0067] After the first physical cell identifier and the second physical cell identifier are determined, the detection information for the indoor network can be generated based on the first physical cell identifier and the second physical cell identifier; the detection information can be used to indicate the abnormality of the indoor network, for example, which building position corresponding to the indoor network is abnormal, or the indoor network of the whole building is abnormal.

[0068] Specifically, it can be judged whether the first physical cell identifier and the second physical cell identifier match. If the first physical cell identifier and the second physical cell identifier do not match, it can be indicated that the room distribution system of the building position where the broadband corresponding to the first physical cell identifier is located is abnormal; and if the first physical cell identifier and the second physical cell identifier match, it can be indicated that the room distribution system of the building position where the broadband corresponding to the first physical cell identifier is located is not abnormal, which is not limited by the embodiment of the present application.

[0069] In the embodiment of the present application, the measurement report reported by the terminal device connected to the broadband deployed in different positions in the indoor is acquired; the measurement report comprises the first physical cell identifier of the serving cell and the neighbor cell connected by the terminal device; the broadband position of each broadband is acquired, and the indoor network information corresponding to each broadband position is acquired; the indoor network information comprises the second physical cell identifier of the serving cell and the neighbor cell corresponding to the broadband position; the detection information for the indoor network is generated according to the first physical cell identifier and the second physical cell identifier. Through the embodiment of the present application, the indoor network is detected by combining the measurement report reported by the terminal device when connecting the broadband and the physical cell identifier corresponding to the broadband position; thus, the indoor network is automatically detected, the efficiency of monitoring the fault of the indoor distribution system is improved, and the cost of monitoring the fault of the indoor distribution system is reduced.

[0070] Referring to Figure 2 , another step flow chart of the detection method for the indoor network is shown, which can comprise the following steps:

[0071] In step 201, the measurement report reported by the terminal device connected to the broadband deployed in different positions in the indoor is acquired.

[0072] The terminal device is also connected to the cellular network when connecting the broadband; thus, the terminal device can report the measurement report based on the connection with the cellular network when connecting the broadband; the measurement report can comprise the first physical cell identifier of the serving cell and the neighbor cell connected by the terminal device.

[0073] When the indoor network needs to be detected, the measurement report reported by the terminal device connected to the broadband deployed in different positions in the indoor is acquired; specifically, different families in the indoor can be deployed with the broadband, and the building positions corresponding to different families are different; based on the measurement report of the broadband corresponding to different families, the measurement report reported by the terminal device in different building positions can be acquired.

[0074] In the embodiment of the present application, the following steps can also be included:

[0075] S1, at least one mobile phone number set in advance for each broadband, and the mobile phone terminal model corresponding to each mobile phone number are acquired, and the media access control (MAC) address and the mobile phone terminal model of the terminal device connected to each broadband are acquired.

[0076] In practical applications, the technical defects of the independent operation of the operator's home broadband WI-FI system and the 4 / 5G communication network and the non-intercommunication and non-association of related information (such as the terminal phone MAC (Media Access Control Address) address and the phone number used by the terminal) are solved. The intersection of the relationship is found by searching the existing independent data collection of the two systems, and relevant operations are performed to make decisions, thereby realizing indoor MR identification.

[0077] Specifically, at least one phone number previously set for each broadband can be acquired, and the mobile phone terminal model corresponding to each phone number can be acquired.

[0078] As an example, based on the home broadband phone fusion user, the home broadband account of each fusion user, the phone numbers of the family members associated under the same account, and the mobile phone terminal model currently used by each phone number are extracted to form a corresponding relationship basic database, such as Table 1:

[0079] Table 1:

[0080]

[0081] In addition, the media access control (MAC) address of the terminal equipment connected to each broadband and the mobile phone terminal model can be acquired.

[0082] Specifically, the MAC address of the mobile phone terminal accessed under each home broadband account and the terminal model can be acquired from the home gateway management system, which is used for subsequent association of the terminal MAC address and the phone number and indoor terminal access positioning, such as Table 2:

[0083] Table 2:

[0084]

[0085] S2, acquiring the auxiliary global satellite positioning system (AGPS) location information reported by the first target phone number and the first target MAC address of the target mobile phone terminal model currently connected to the second broadband; the first target phone number is a phone number previously set for the second broadband.

[0086] When the home gateway management system detects the access of a certain mobile terminal, the AGPS position information in the MR data reported by the home user with the same mobile phone number is extracted and matched with the home broadband address by algorithm. The reported AGPS position coordinates and the home broadband address position coordinates of the home broadband account are known, and the latitude and longitude straight-line distance calculation is performed on the position coordinates. If the AGPS distance and the home broadband address differ by within 10 meters (APGS error range), it is judged that the mobile phone number and the terminal MAC address are a binding corresponding relationship. Then, based on the time period of the mobile terminal connecting the home broadband WIFI, the MR sampling data of the user corresponding to the time period is extracted as the indoor MR coverage basic data of the user at the home broadband address.

[0087] Specifically, the AGPS position information reported by the first target mobile phone number and the first target MAC address of the target mobile terminal currently connected to the second broadband to which the first target mobile phone number belongs can be obtained.

[0088] S3, judge whether the AGPS position information matches the broadband position of the second broadband.

[0089] Then, it can be judged whether the AGPS position information matches the broadband position of the second broadband. Specifically, the AGPS position information set (Xn, Yn) of the mobile terminal type (T) corresponding to all mobile phone numbers in the home broadband account (A) is matched with the home broadband address position coordinates (X1, Y1) of the mobile terminal type (T) connected to the home broadband account (A) by performing latitude and longitude straight-line distance calculation on the position coordinates. It is known that the average error of AGPS is about 10 meters, and it is judged whether there is an association relationship between the position information set (Xn, Yn) and the home broadband address position coordinates (X1, Y1). The judgment condition is as follows:

[0090] Let the straight-line distance between the position information set (Xn, Yn) and (X1, Y1) be d.

[0091] When d> 10 meters, the position information set (Xn, Yn) is not associated with (X1, Y1).

[0092] When d≤10 meters, the position information set (Xn, Yn) is associated with (X1, Y1).

[0093] S4, when the AGPS position information matches the broadband position of the second broadband, judge whether the mobile terminal type corresponding to the first target mobile phone number matches the target mobile terminal type.

[0094] If the AGPS position information matches the wideband position of the second wideband, it can be further determined whether the mobile phone terminal model corresponding to the first target mobile phone number matches the target mobile phone terminal model, so as to establish the correspondence between the mobile phone number and the MAC address.

[0095] S5, when the mobile phone terminal model corresponding to the first target mobile phone number matches the target mobile phone terminal model, the correspondence between the first target mobile phone number, the target mobile phone terminal model and the first target MAC address is established.

[0096] If it is determined that the mobile phone terminal model corresponding to the first target mobile phone number matches the target mobile phone terminal model, the correspondence between the first target mobile phone number, the target mobile phone terminal model and the first target MAC address can be established.

[0097] By continuously identifying the correspondence table of mobile phone numbers and MAC addresses of mobile phone terminals used in the existing network, and converging to generate a "basic terminal number database", the database mainly includes basic information such as mobile phone numbers, associated mobile phone terminal models, and mobile phone MAC addresses. For example, as shown in Table 3:

[0098] Table 3:

[0099]

[0100] Through the "basic terminal number database", the MR information generated by the terminal under the non-home broadband can be identified.

[0101] It should be noted that, as Figure 3 When the terminal model changes, the terminal model also needs to be changed based on the user terminal change mechanism; for example, when changing, it needs to be recorded, registered, etc.

[0102] When there are the same terminal models under the same home broadband, the same terminal model identification mechanism can also be used to distinguish them, for example, the access time or the terminal unique identifier (such as the terminal serial number) can be used.

[0103] For non-home broadband users, the above-mentioned basic terminal number database is used to realize the non-home broadband user identification mechanism; for example, the corresponding mobile phone number can be determined based on the MAC address, and the corresponding measurement report can be obtained.

[0104] Based on the user terminal change mechanism, the same terminal model identification mechanism and the non-home broadband user identification mechanism, a more accurate database can be constructed.

[0105] As an example, step 201 can include the following sub-steps:

[0106] Sub-step 11, determining a second target MAC address of a terminal device connected to the third broadband.

[0107] In actual application, when obtaining the measurement report, the second target MAC address of the terminal device connected to the third broadband can be determined first.

[0108] Sub-step 12, obtaining a measurement report reported by a second target mobile phone number corresponding to the second target MAC address.

[0109] Then, the second target mobile phone number corresponding to the second target MAC address can be determined based on the obtained “basic terminal number database”, and the measurement report reported by the second target mobile phone number can be obtained.

[0110] After obtaining the measurement report reported by the second target mobile phone number, the measurement report can be taken as the measurement report corresponding to the third broadband.

[0111] Step 202, obtaining a broadband position of each broadband and indoor network information corresponding to each broadband position.

[0112] In actual application, different indoor networks can be deployed in different building positions, for example, different room distribution systems can be deployed, and the user can set a corresponding broadband position in the broadband account when handling the broadband, which has a certain corresponding relationship with the building position.

[0113] Therefore, the embodiment of the application can determine the building position of each broadband by obtaining the broadband position of each broadband, and then determine the room distribution system deployed in the building position corresponding to each broadband position and the second physical cell identifier corresponding to the serving cell and the neighboring cell based on the building position corresponding to each broadband.

[0114] Specifically, the detection information of the indoor network of the building position where a broadband is located can be generated by referring to steps 203-206:

[0115] Step 203, determining a third physical cell identifier corresponding to a terminal device connected to a first broadband and a fourth physical cell identifier corresponding to a first broadband position of the first broadband.

[0116] The first broadband can be a broadband deployed anywhere in the room.

[0117] When detecting the indoor network of the building position where the first broadband is located, the third physical cell identifier in the measurement report reported by the terminal device connected to the first broadband can be determined first.

[0118] Meanwhile, a fourth physical cell identifier of a building position corresponding to the first wideband position corresponding to the first wideband can be determined; the fourth physical cell identifier can be an identifier of a room system of the building position corresponding to the first wideband position.

[0119] Step 204: determining whether the third physical cell identifier matches the fourth physical cell identifier.

[0120] After the third physical cell identifier and the fourth physical cell identifier are obtained, it can be determined whether the third physical cell identifier matches the fourth physical cell identifier; specifically, it can be determined whether the third physical cell identifier matches the fourth physical cell identifier by determining whether the third physical cell identifier is consistent with the fourth physical cell identifier.

[0121] Step 205: when the third physical cell identifier matches the fourth physical cell identifier, generating detection information with a normal result for the indoor network of the first wideband position.

[0122] If the third physical cell identifier is consistent with the fourth physical cell identifier, it can be determined that the third physical cell identifier matches the fourth physical cell identifier; at this time, detection information with a normal result can be generated for the indoor network of the first wideband position.

[0123] Step 206: when the third physical cell identifier does not match the fourth physical cell identifier, generating detection information with an abnormal result for the indoor network of the first wideband position.

[0124] If the third physical cell identifier is not consistent with the fourth physical cell identifier, it can be determined that the third physical cell identifier does not match the fourth physical cell identifier; at this time, detection information with an abnormal result can be generated for the indoor network of the first wideband position.

[0125] In an embodiment of the present application, the following steps can also be included:

[0126] According to the wideband positions corresponding to the widebands and the measurement reports, indoor three-dimensional measurement report information is generated.

[0127] In actual application, based on the broadband location and the measurement report acquired in advance, the floor MR information (may include PCI (Physical Cell Identifier) and RSRP (Reference Signal Receiving Power)) of the broadband address associated with the broadband home user can be realized, and based on this, the MR information of the broadband address of the whole network convergence user is gathered and the indoor 3D MR information is formed. In addition, through the "basic terminal number database", the MR information generated by the mobile phone number of the same operator under the same wide account number accessed (provided that the mobile phone number is in the basic terminal number database) can be further identified, the 3D MR identification range of the user is expanded, and the 3D MR degree and coverage are improved.

[0128] The indoor three-dimensional measurement report information can be as shown in Table 4:

[0129] Table 4:

[0130]

[0131] In the embodiment of the application, the measurement report reported by the terminal device connected to the broadband deployed at different positions in the room is acquired; the broadband position of each broadband is acquired, and the indoor network information corresponding to each broadband position is acquired; the third physical cell identifier corresponding to the terminal device connected to the first broadband is determined, and the fourth physical cell identifier corresponding to the first broadband position of the first broadband is determined; it is judged whether the third physical cell identifier and the fourth physical cell identifier match; when the third physical cell identifier and the fourth physical cell identifier match, the detection information with a normal result is generated for the indoor network of the first broadband position; when the third physical cell identifier and the fourth physical cell identifier do not match, the detection information with an abnormal result is generated for the indoor network of the first broadband position. Through the embodiment of the application, the indoor network is detected by combining the measurement report reported by the terminal device when connecting the broadband and the physical cell identifier corresponding to the broadband position; thereby the indoor network is automatically detected, the efficiency of monitoring the room distribution system fault is improved, and the cost of monitoring the room distribution system fault is reduced.

[0132] Referring to Figure 4 , a step flow chart of another kind of detection method for the indoor network according to the embodiment of the application is shown, which can include the following steps:

[0133] Step 401, acquiring the measurement report reported by the terminal device connected to the broadband deployed at different positions in the room.

[0134] The terminal device is also connected with the cellular network when connecting the broadband; thus, when the terminal device is connected with the broadband, the terminal device can report the measurement report based on the connection with the cellular network; the measurement report can include the first physical cell identifier of the serving cell and the neighboring cell connected by the terminal device.

[0135] When the indoor network needs to be detected, the measurement report reported by the terminal device connected with the broadband deployed in different positions of the indoor network can be acquired; specifically, different families can be deployed with the broadband, and the buildings corresponding to different families are also different; based on the measurement report corresponding to the broadband of different families, the measurement report reported by the terminal device in different building positions can be acquired.

[0136] Step 402, acquiring the broadband position of each broadband and the indoor network information corresponding to each broadband position.

[0137] In actual application, different building positions can be deployed with different indoor networks, for example, different room distribution systems can be deployed; the user can also set the corresponding broadband position in the broadband account when handling the broadband, and the broadband position has a certain corresponding relationship with the building position.

[0138] Therefore, the embodiment of the present application can determine the building position of each broadband by acquiring the broadband position of each broadband; then, based on the building position corresponding to each broadband, the room distribution system deployed in the building position corresponding to each broadband position can be determined, and the second physical cell identifier of the corresponding serving cell and neighboring cell can be determined.

[0139] Step 403, the measurement report further includes the first reference signal receiving power (RSRP) of the serving cell and the neighboring cell connected by the terminal device, and the indoor network information further includes the second RSRP of the serving cell and the neighboring cell corresponding to the broadband position. According to the first physical cell identifier and the second physical cell identifier, and the first RSRP and the second RSRP, the detection information for the indoor network is generated.

[0140] In actual application, the measurement report not only includes the physical cell identifier, but also can include the reference signal receiving power.

[0141] Therefore, when the detection information for the indoor network is generated, the detection information for the indoor network can be generated according to the first physical cell identifier and the second physical cell identifier, and the first RSRP and the second RSRP. Specifically, the 3D detection information for the indoor network can be generated based on Table 4.

[0142] As an example, the measurement report can further include a RSRQ (Reference Signal Receiving Quality) and a SINR (Signal-To-Noise And Interferenceratio); when generating the detection result, the detection information for the indoor network can also be generated based on the RSRQ, the SINR, the first physical cell identifier and the second physical cell identifier, and the first RSRP and the second RSRP, and the embodiments of the present application do not limit this.

[0143] In the embodiments of the present application, the measurement report reported by a terminal device connected to a broadband deployed at different positions in a room is acquired; the broadband position of each broadband and the indoor network information corresponding to each broadband position are acquired; the measurement report further includes a first reference signal receiving power (RSRP) of a serving cell and a neighbor cell to which the terminal device is connected, and the indoor network information further includes a second RSRP of the serving cell and the neighbor cell corresponding to the broadband position. Detection information for the indoor network is generated based on the first physical cell identifier and the second physical cell identifier, and the first RSRP and the second RSRP. Through the embodiments of the present application, the indoor network is detected in combination with the measurement report reported by the terminal device when connecting to the broadband and the physical cell identifier corresponding to the broadband position; thus, the indoor network is automatically detected, the efficiency of monitoring the fault of the room distribution system is improved, and the cost of monitoring the fault of the room distribution system is reduced.

[0144] Referring to Figure 5 , another step flowchart of a detection method for an indoor network according to an embodiment of the present application is shown, which can include the following steps:

[0145] Step 501: Acquire a measurement report reported by a terminal device connected to a broadband deployed at different positions in a room.

[0146] The terminal device is also connected to a cellular network when connecting to the broadband; thus, the terminal device can report the measurement report based on the connection to the cellular network when connecting to the broadband; the measurement report can include a first physical cell identifier of a serving cell and a neighbor cell to which the terminal device is connected.

[0147] When the indoor network needs to be detected, the measurement report reported by the terminal device connected to the broadband deployed at different positions in the room can be acquired; specifically, different families in the room can have a broadband deployed respectively, and the building positions corresponding to different families are also different; based on the measurement report of the broadband corresponding to different families, the measurement report reported by the terminal device at different building positions can be acquired.

[0148] Step 502: Acquire the broadband position of each broadband and the indoor network information corresponding to each broadband position.

[0149] In actual application, different building positions can correspond to different indoor networks deployed, for example, different room distribution systems can be deployed; and a user can set a corresponding broadband position in a broadband account when handling broadband, and the broadband position has a certain corresponding relationship with a building position where the user is located.

[0150] Therefore, the embodiment of the present application can determine the building position where each broadband is located by acquiring the broadband position of each broadband; and then determine the room distribution system deployed in the building position corresponding to each broadband position based on the building position corresponding to each broadband, and determine the second physical cell identifier of the corresponding serving cell and neighbor cell.

[0151] Step 503, determining the abnormal room distribution system according to the first physical cell identifier and the second physical cell identifier.

[0152] After the first physical cell identifier and the second physical cell identifier are determined, whether the room distribution system of the building position where the broadband is located is abnormal can be judged based on the first physical cell identifier and the second physical cell identifier.

[0153] Specifically, if the first physical cell identifier and the second physical cell identifier do not match, it can be indicated that the room distribution system of the building position where the broadband connected by the terminal equipment corresponding to the first physical cell identifier is located is abnormal.

[0154] If the first physical cell identifier and the second physical cell identifier match, it can be indicated that the room distribution system of the building position where the broadband connected by the terminal equipment corresponding to the first physical cell identifier is located is not abnormal.

[0155] Step 504, generating detection information for the indoor network according to the abnormal room distribution system.

[0156] After each abnormal room distribution system is determined, the detection information for the indoor network can be generated.

[0157] Specifically, the corresponding detection information can be generated for the indoor network of different positions of the indoor network, or the detection information of the building can be generated based on multiple detection information.

[0158] For example, when only the room distribution system of one floor is abnormal, only the detection information of the room distribution system can be generated; and if the room distribution systems of the whole building are abnormal, the detection information of the RRU (Remote Radio Unit, full name of radio frequency remote unit) of the building can be generated, and the embodiment of the present application does not limit this.

[0159] In the embodiment of the present application, the measurement report reported by a terminal device connected to a broadband deployed at different positions in a room is acquired; the broadband position of each broadband is acquired, and indoor network information corresponding to each broadband position is acquired; the abnormal room splitting system is determined according to the first physical cell identifier and the second physical cell identifier; and the detection information for the indoor network is generated according to the abnormal room splitting system. Through the embodiment of the present application, the indoor network is detected by combining the measurement report reported by the terminal device when connected to the broadband and the physical cell identifier corresponding to the broadband position; thus, the indoor network is automatically detected, the efficiency of monitoring the room splitting system fault is improved, and the cost of monitoring the room splitting system fault is reduced.

[0160] In order to describe the above detection method for the indoor network, the following is exemplified:

[0161] As Figure 6 :

[0162] Step 1: Home broadband data extraction:

[0163] Based on the home broadband mobile phone fusion user, the home broadband account of each fusion user, the mobile phone numbers of the family members associated under the same account and the mobile phone terminal model currently used by each mobile phone number are extracted from the customer relationship management system to form a corresponding relationship basic database.

[0164] Step 2: Home broadband access terminal information extraction:

[0165] The MAC address and terminal model of the mobile phone terminal accessed under each home broadband account are acquired from the home gateway management system, which is used for subsequent association of the terminal MAC address and the mobile phone number and indoor terminal access positioning.

[0166] Step 3: Indoor MR identification:

[0167] When the home gateway management system detects the access of a mobile phone terminal, the AGPS position information in the MR data reported by the mobile phone number of the same model in the home user is extracted, and an algorithm matching is performed with the home broadband address. The AGPS position coordinates reported and the home broadband account home broadband address position coordinates are known, and the latitude and longitude straight line distance calculation is performed on the position coordinates. If the AGPS distance and the home broadband address differ by 10 meters or less (APGS error range), it is judged that the mobile phone number and the terminal MAC address are a binding corresponding relationship. Then, based on the time period when the mobile phone terminal connects the home broadband WIFI, the MR sampling data of the user corresponding to the time period is extracted as the indoor MR coverage basic data of the user at the home broadband address.

[0168] Specifically, the time when the mobile phone terminal connects the home broadband can be identified first, and the AGPS location information of the mobile phone number associated with the same terminal model is identified; then, according to the address location of the AGPS and the home broadband, it is calculated that the indoor user is determined within 10 meters (APGS error range).

[0169] At this time, the MR data of the user connecting the home gateway time period can be extracted as the indoor basic MR data.

[0170] Step 4-1: Form a mobile phone number corresponding to MAC address library:

[0171] Through step 3, the mobile phone number and the mobile phone terminal MAC address corresponding table used by the mobile phone terminal can be continuously identified, and the "basic terminal number database" is generated, which mainly includes mobile phone number, associated mobile phone terminal model, mobile phone MAC address and other basic information. Through the "basic terminal number database", the MR information generated by the terminal under the non-home broadband can be identified, and the user can generate more detailed indoor MR samples.

[0172] Step 4-2: Gather MR to generate indoor 3D MR information:

[0173] Through step 4-1, the floor MR information of the home broadband address associated with the home broadband mobile phone fusion user can be basically realized, and on this basis, the MR information of the home broadband address of the whole network fusion user is gathered and indoor 3D MR information is formed. In addition, through step 4-2, the MR information generated by the mobile phone number under the same operator accessed by a single broadband account can be further identified (provided that the mobile phone number is in the basic terminal number database), the user expands the 3D MR identification range and MR reporting data, and improves the degree and coverage of 3D MR.

[0174] Step 5: Implicit fault identification and early warning of room distribution system:

[0175] Through the above steps, indoor 3D MR data generation has been realized, and then the PCI information in the MR reported by the terminal of each floor area is compared with the PCI information of the room distribution system of the floor area. If the two PCI information is inconsistent, it means that the room distribution system of the floor area has a fault, and then according to the range involved by the abnormal coverage and the alarm of the 4 / 5G network management system, if a large range of faults caused by RRU fault, then exclude RRU problem; if the problem occurs in the area under the hanging of the direct broadcast station (at this time there is no alarm for implicit fault), then the problem of direct broadcast station is preferentially checked; if only one layer or several layers have problems, then check the faults of power divider, coupler and antenna.

[0176] Specifically, the PCIs reported by the user in the indoor MR can be counted every day; the indoor MR reported PCIs of the user are matched with the indoor cell PCIs of the building where the user is located. When the user MR reported PCI changes from the indoor cell PCI, it is determined that the indoor cell has an abnormality.

[0177] At this time, the indoor distribution system of the area where the user is located can be investigated, so as to realize the early warning of the indoor distribution system.

[0178] It should be noted that, for the method embodiments, in order to simply describe, they are all expressed as a series of action combinations, but those skilled in the art should know that the embodiments of the present application are not limited by the order of the described actions, because according to the embodiments of the present application, certain steps can be performed in other order or simultaneously. Secondly, those skilled in the art should know that the embodiments described in the specification all belong to preferred embodiments, and the actions involved are not necessarily the necessary of the embodiments of the present application.

[0179] Referring to Figure 7 , a structure schematic diagram of a detection device for an indoor network according to an embodiment of the present application is shown, which can include the following modules:

[0180] The first acquisition module 701 is configured to acquire a measurement report reported by a terminal device connected to a broadband deployed at different positions in the indoor; the measurement report includes a first physical cell identifier of a serving cell and a neighbor cell connected by the terminal device;

[0181] The second acquisition module 702 is configured to acquire a broadband position of each broadband, and indoor network information corresponding to each broadband position; the indoor network information includes a second physical cell identifier of the serving cell and the neighbor cell corresponding to the broadband position;

[0182] The detection module 703 is configured to generate detection information for the indoor network according to the first physical cell identifier and the second physical cell identifier.

[0183] In an optional embodiment of the present application, the detection module 703 is configured to determine a third physical cell identifier corresponding to the terminal device connected to the first broadband, and a fourth physical cell identifier corresponding to the first broadband position of the first broadband; judge whether the third physical cell identifier matches the fourth physical cell identifier; when the third physical cell identifier matches the fourth physical cell identifier, generate detection information with a normal result for the indoor network of the first broadband position; when the third physical cell identifier does not match the fourth physical cell identifier, generate detection information with an abnormal result for the indoor network of the first broadband position.

[0184] In an optional embodiment of the present application, the measurement report further comprises first reference signal receiving power (RSRP) of the serving cell and the neighbor cell to which the terminal device is connected, and the indoor network information further comprises second RSRP of the serving cell and the neighbor cell corresponding to the wideband location.

[0185] The detection module 703 is configured to generate detection information for the indoor network according to the first physical cell identifier and the second physical cell identifier, and the first RSRP and the second RSRP.

[0186] In an optional embodiment of the present application, the device further comprises:

[0187] The relationship establishing module is configured to acquire at least one mobile phone number set in advance for each wideband, and a mobile phone terminal model corresponding to each mobile phone number, and acquire a media access control (MAC) address of a terminal device connected to each wideband and the mobile phone terminal model; acquire auxiliary global satellite positioning system (AGPS) location information reported by a first target mobile phone number, and a first target MAC address of a target mobile phone terminal model currently connected to a second wideband; the first target mobile phone number is a mobile phone number set in advance for the second wideband; determine whether the AGPS location information matches a wideband location of the second wideband; when the AGPS location information matches the wideband location of the second wideband, determine whether a mobile phone terminal model corresponding to the first target mobile phone number matches the target mobile phone terminal model; when the mobile phone terminal model corresponding to the first target mobile phone number matches the target mobile phone terminal model, establish a corresponding relationship among the first target mobile phone number, the target mobile phone terminal model, and the first target MAC address.

[0188] In an optional embodiment of the present application, the first acquisition module 701 is configured to determine a second target MAC address of a terminal device connected to a third wideband; and acquire a measurement report reported by a second target mobile phone number corresponding to the second target MAC address.

[0189] In an optional embodiment of the present application, the detection module 703 is configured to determine an abnormal indoor distribution system according to the first physical cell identifier and the second physical cell identifier; and generate detection information for the indoor network according to the abnormal indoor distribution system.

[0190] In an optional embodiment of the present application, the device further comprises:

[0191] The report generation module is configured to generate indoor three-dimensional measurement report information according to the wideband location corresponding to each wideband and each measurement report.

[0192] In the embodiment of the present application, the measurement report reported by the terminal device connected to the wideband deployed at different positions in the indoor is acquired; the measurement report comprises the first physical cell identifier of the serving cell and the neighbor cell to which the terminal device is connected; the wideband position of each wideband is acquired, and the indoor network information corresponding to each wideband position is acquired; the indoor network information comprises the second physical cell identifier of the serving cell and the neighbor cell corresponding to the wideband position; and the detection information for the indoor network is generated according to the first physical cell identifier and the second physical cell identifier. Through the embodiment of the present application, the indoor network is detected by combining the measurement report reported by the terminal device when connecting the wideband and the physical cell identifier corresponding to the wideband position; thus, the indoor network is automatically detected, the efficiency of monitoring the fault of the indoor distribution system is improved, and the cost of monitoring the fault of the indoor distribution system is reduced.

[0193] The embodiment of the present application further provides an electronic device, comprising a processor, a memory, and a computer program stored in the memory and capable of running on the processor, and the computer program is executed by the processor to realize the detection method for the indoor network.

[0194] The embodiment of the present application further provides a computer readable storage medium, and the computer readable storage medium stores a computer program, and the computer program is executed by the processor to realize the detection method for the indoor network.

[0195] For the device embodiment, since it is basically similar to the method embodiment, the description is relatively simple, and the related parts are referred to the part of the method embodiment.

[0196] Each embodiment in the specification is described in a progressive manner, and each embodiment mainly describes the difference from other embodiments, and the same and similar parts of each embodiment are referred to each other.

[0197] Those skilled in the art should understand that the embodiments of the present application can be provided as a method, a device, or a computer program product. Therefore, the embodiments of the present application can adopt a complete hardware embodiment, a complete software embodiment, or an embodiment combining software and hardware aspects. Moreover, the embodiments of the present application can adopt the form of a computer program product implemented on one or more computer usable storage media (including but not limited to disk storage, CD-ROM, optical storage, etc.) containing computer usable program codes.

[0198] The embodiments of the present application are described with reference to the flowchart illustrations and / or block diagrams of the methods, terminal devices (systems) and computer program products according to the embodiments of the present application. It will be understood that each block of the flowchart illustrations and / or block diagrams, and combinations of blocks in the flowchart illustrations and / or block diagrams, can be implemented by computer program instructions. These computer program instructions can be provided to a processor of a general purpose computer, special purpose computer, embedded processor, or other programmable data processing terminal devices to produce a machine, such that the instructions, which execute via the processor of the computer or other programmable data processing terminal devices, create means for implementing the functions specified in the flowchart illustrations and / or block diagrams. Figure 1 one or more functions specified in the flowchart illustrations and / or block diagrams. Figure 1 one or more functions specified in the flowchart illustrations and / or block diagrams.

[0199] These computer program instructions can also be stored in a computer-readable memory that can direct a computer or other programmable data processing terminal devices to function in a particular manner, such that the instructions stored in the computer-readable memory produce an article of manufacture including instructions which implement the functions specified in the flowchart illustrations and / or block diagrams. Figure 1 one or more functions specified in the flowchart illustrations and / or block diagrams. Figure 1 one or more functions specified in the flowchart illustrations and / or block diagrams.

[0200] These computer program instructions can also be loaded onto a computer or other programmable data processing terminal devices, such that a series of operational steps are carried out on the computer or other programmable terminal devices to produce a computer implemented process so that the instructions executed on the computer or other programmable terminal devices provide steps for implementing the functions specified in the flowchart illustrations and / or block diagrams. Figure 1 one or more functions specified in the flowchart illustrations and / or block diagrams. Figure 1 one or more functions specified in the flowchart illustrations and / or block diagrams.

[0201] Although preferred embodiments of the present application have been described, those skilled in the art will be able to make additional modifications and variations to these embodiments without departing from the scope of the present application. Accordingly, the appended claims are intended to encompass all such modifications and variations as falling within the scope of the present application.

[0202] Finally, it is to be understood that the phraseology or terminology such as "first" and "second" etc. used herein is merely intended to differentiate one entity or operation from another entity or operation, without necessarily requiring or implying any actual such relationship or order between such entities or operations. Moreover, the terms "comprises", "comprising", or any other variations thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but can also include other elements not expressly listed or inherent to such process, method, article, or apparatus. An element proceeded by "comprises... a" does not, without more constraints, exclude the existence of additional identical elements in the process, method, article, or apparatus that comprises the element.

[0203] The above provides a detection method, device, electronic equipment and medium for an indoor network, which is described in detail. The principles and implementation manners of the present application are described by using specific examples. The above description of the embodiments is only used to help understand the method and core idea of the present application. For those skilled in the art, the specific implementation manners and application ranges can be changed according to the idea of the present application. In summary, the content of the specification should not be understood as a limitation of the present application.

Claims

1. A detection method for indoor networks, characterized in that, The method includes: Obtain measurement reports from terminal devices connected to broadband deployed at different locations indoors; the measurement reports include the first physical cell identifiers of the serving cell and neighboring cells to which the terminal devices are connected; Obtain the broadband location of each broadband location, and the corresponding indoor network information; the indoor network information includes the second physical cell identifier of the serving cell and neighboring cells corresponding to the broadband location; Based on the first physical cell identifier and the second physical cell identifier, detection information for the indoor network is generated; The step of generating detection information for the indoor network based on the first physical cell identifier and the second physical cell identifier includes: Determine the third physical cell identifier corresponding to the terminal device connected to the first broadband, and the fourth physical cell identifier corresponding to the first broadband location of the first broadband; Determine whether the third physical cell identifier matches the fourth physical cell identifier; When the third physical cell identifier matches the fourth physical cell identifier, a normal detection information is generated for the indoor network of the first broadband location; When the third physical cell identifier does not match the fourth physical cell identifier, an abnormal result detection information is generated for the indoor network of the first broadband location.

2. The method according to claim 1, characterized in that, The measurement report also includes the first reference signal received power (RSRP) of the serving cell and neighboring cells connected to the terminal device, and the indoor network information also includes the second RSRP of the serving cell and neighboring cells corresponding to the broadband location. The step of generating detection information for the indoor network based on the first physical cell identifier and the second physical cell identifier includes: Based on the first physical cell identifier and the second physical cell identifier, as well as the first RSRP and the second RSRP, detection information for the indoor network is generated.

3. The method according to claim 1, characterized in that, The method further includes: Obtain at least one mobile phone number pre-set for each broadband, and the mobile terminal model corresponding to each mobile phone number, as well as the media access control MAC address and mobile terminal model of the terminal device connected to each broadband; Obtain the AGPS location information reported by the first target mobile phone number, and the first target MAC address of the target mobile phone terminal model currently connected to the second broadband; the first target mobile phone number is a mobile phone number pre-set for the second broadband. Determine whether the AGPS location information matches the broadband location of the second broadband; When the AGPS location information matches the broadband location of the second broadband, it is determined whether the mobile terminal model corresponding to the first target mobile phone number matches the target mobile terminal model. When the mobile terminal model corresponding to the first target mobile phone number matches the target mobile terminal model, a correspondence is established between the first target mobile phone number, the target mobile terminal model, and the first target MAC address.

4. The method according to claim 3, characterized in that, The measurement reports reported by the terminal devices that acquire broadband connections deployed at different locations indoors include: Determine the second target MAC address of the terminal device connecting to the third broadband; Obtain the measurement report reported by the second target mobile phone number corresponding to the second target MAC address.

5. The method according to claim 1, characterized in that, The step of generating detection information for the indoor network based on the first physical cell identifier and the second physical cell identifier includes: Based on the first physical cell identifier and the second physical cell identifier, the indoor distribution system that is malfunctioning is identified; Based on the abnormal indoor distribution system, detection information for the indoor network is generated.

6. The method according to any one of claims 1-5, characterized in that, The method further includes: Based on the broadband location corresponding to each broadband and each measurement report, generate indoor 3D measurement report information.

7. A detection device for indoor networks, characterized in that, The device includes: The first acquisition module is used to acquire measurement reports reported by terminal devices that connect to broadband deployed in different locations indoors; the measurement reports include the first physical cell identifiers of the serving cell and neighboring cells to which the terminal devices are connected; The second acquisition module is used to acquire the broadband location of each broadband and the indoor network information corresponding to each broadband location; the indoor network information includes the second physical cell identifier of the serving cell and the neighboring cell corresponding to the broadband location; The detection module is used to generate detection information for the indoor network based on the first physical cell identifier and the second physical cell identifier; The detection module is configured to determine the third physical cell identifier corresponding to the terminal device connected to the first broadband, and the fourth physical cell identifier corresponding to the first broadband location; determine whether the third physical cell identifier and the fourth physical cell identifier match; when the third physical cell identifier and the fourth physical cell identifier match, generate detection information indicating a normal result for the indoor network at the first broadband location; when the third physical cell identifier and the fourth physical cell identifier do not match, generate detection information indicating an abnormal result for the indoor network at the first broadband location.

8. An electronic device, characterized in that, It includes a processor, a memory, and a computer program stored in the memory and capable of running on the processor, wherein the computer program, when executed by the processor, implements the detection method for an indoor network as described in any one of claims 1 to 6.

9. A computer-readable storage medium, characterized in that, A computer program is stored on the computer-readable storage medium, which, when executed by a processor, implements the detection method for an indoor network as described in any one of claims 1 to 6.

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