An antenna bucking quality detection method, computer equipment and storage medium

CN116318454BActive Publication Date: 2026-09-25SICHUAN CHANGHONG NETWORK TECH CO LTD
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Patent Information

Application Number
CN202310102120.1
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-01-30
Publication Date
2026-09-25
Estimated Expiration
2043-01-30

AI Technical Summary

Technical Problem

[0005]针对现有技术中所存在的不足,本发明提供了一种天线扣装质量的检测方法,其解决了现有技术中无法检测所有天线扣装质量的问题

Benefits of technology

[0016]本发明的技术原理为:检测控制器根据获取的天线配置信息,发送检测指令到待测5G终端,控制其相对应的天线在不同的频点上依次发送5G信号,然后无线信号分析仪获取所述5G信号的特征信息,检测控制器再将所述特征信息与所述天线配置信息进行比较,根据比较结果得到天线扣装质量的检测结果。

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Abstract

The application provides an antenna installation quality detection method. According to antenna configuration information, the antenna of each port of the 5G terminal to be detected sends 5G signals in turn at different frequency points, the characteristic information of the 5G signals obtained by a wireless signal analyzer is compared with the antenna configuration information, and the detection result of the antenna installation quality is obtained, which solves the technical problem that all antenna installation qualities cannot be detected in the prior art, and has the technical effects that all antenna installation qualities of the 5G terminal can be detected, all antenna installation qualities can be detected at low cost, and detection can be performed in an open environment.
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Description

Technical Field

[0001] This invention relates to 5G terminal manufacturing and assembly technology, and more particularly to a method for detecting antenna mounting quality, a computer device, and a storage medium. Background Technology

[0002] With the improvement of 5G communication infrastructure, 5G communication technology is gradually becoming a basic data communication platform in various industries. 5G CPEs are also gradually being deployed in industry applications. Compared to 4G LTE terminals, 5G CPE terminals need to be compatible with multiple frequency points, and are equipped with at least four antennas, with some having eight or even more. These antennas each correspond to different frequency points and are installed on the motherboard during production using a wire-clamping method. Because the antennas require precise placement, they are generally installed on an antenna bracket. Antenna wire clamping is the final step before assembling the entire device and casing. If there are any missed or incorrect clamps, it will be impossible to visually inspect them after the casing is installed, rendering the product unusable. Therefore, a method for testing antenna quality is needed.

[0003] In existing technologies, the common way to test the quality of antenna mounting is to perform communication tests on an actual network after the entire device is installed, by inserting a card to see if the communication is successful, thus judging the quality of antenna mounting. However, in the method of testing the quality of antenna mounting by communication testing, since there is usually only one base station in the production environment, which can only cover 1 or 2 frequency points, it is impossible to check all antennas.

[0004] It is evident that existing communication testing methods for antenna mounting quality cannot detect the mounting quality of all antennas. Summary of the Invention

[0005] To address the shortcomings of existing technologies, this invention provides a method for detecting antenna mounting quality, which solves the problem that existing technologies cannot detect the mounting quality of all antennas.

[0006] According to an embodiment of the present invention, a method for detecting antenna mounting quality is provided, applied to an antenna mounting quality detection system. The detection system includes a detection controller and a wireless signal analyzer. The detection controller is communicatively connected to the wireless signal analyzer and to a 5G terminal under test. The method includes the following steps: the detection controller acquires antenna configuration information of the 5G terminal under test; the antenna configuration information includes all port numbers of the antenna, the number of frequency points corresponding to each port number, and frequency point information corresponding to each frequency point; the detection controller sends a detection command to the 5G terminal under test according to the antenna configuration information, causing the 5G terminal under test to control the corresponding antenna to sequentially transmit 5G signals on different frequency points according to the detection command; the wireless signal analyzer acquires feature information of the 5G signal; the feature information includes the strength values ​​and durations of each strength of the 5G signal; the detection controller compares the feature information with the antenna configuration information, and obtains the detection result of antenna mounting quality based on the comparison result.

[0007] Optionally, the detection controller acquires the antenna configuration information of the 5G terminal under test, including: the detection controller sending an information acquisition command to the 5G terminal under test; and the 5G terminal under test feeding back the pre-stored antenna configuration information to the detection controller according to the information acquisition command.

[0008] Optionally, the frequency information includes frequency, number of rotations, number of signal strengths, and strength information; the number of rotations indicates the number of times the signal cycles periodically at the frequency; the strength information includes the strength magnitude, duration, allowable duration fluctuation range, and allowable strength fluctuation range corresponding to each signal strength.

[0009] Optionally, the detection instruction includes: a port number and the frequency information corresponding to the port number.

[0010] Optionally, the detection controller sends detection commands to the 5G terminal under test according to the antenna configuration information, including: the detection controller sequentially sends detection commands to the 5G terminal under test according to each frequency point of each port number according to the antenna configuration information; or, the detection controller sequentially sends detection commands to the 5G terminal under test according to the port number according to the antenna configuration information; or, the detection controller sends detection commands to the 5G terminal under test all at once according to all port numbers according to the antenna configuration information.

[0011] Optionally, the wireless signal analyzer acquires the feature information of the 5G signal by: sequentially scanning the signal according to the frequency points of the 5G signal to obtain the received signal corresponding to the frequency point; extracting the feature information of the received signal according to the frequency point information; and feeding back the feature information to the detection controller.

[0012] Optionally, the detection controller compares the feature information with the antenna configuration information and obtains the detection result of the antenna mounting quality based on the comparison result, including: the detection controller compares the feature information with the antenna configuration information; if, in sequence, each intensity value in the feature information is within the allowable intensity fluctuation range of the antenna configuration information, and the duration of each intensity value is within the allowable duration fluctuation range of the antenna configuration information, then the antenna mounting is determined to be normal.

[0013] Optionally, before the wireless signal analyzer scans the signal sequentially according to the frequency points of the 5G signal, the method further includes: the detection controller sequentially sending frequency point information to the wireless signal analyzer according to the antenna configuration information for each frequency point of each port number; wherein, the detection controller sends the frequency point information of the next frequency point to the wireless signal analyzer only after receiving feedback from the wireless signal analyzer.

[0014] According to an embodiment of the present invention, a computer device includes a memory, a processor, and a computer program stored in the memory and executable on the processor, wherein the processor executes the computer program to implement the steps of the above-described method.

[0015] According to an embodiment of the present invention, a storage medium is provided on which a computer program is stored, which, when executed by a processor, implements the steps of the above-described method.

[0016] The technical principle of this invention is as follows: the detection controller sends a detection command to the 5G terminal under test according to the acquired antenna configuration information, controls its corresponding antenna to send 5G signals sequentially at different frequency points, then the wireless signal analyzer acquires the feature information of the 5G signal, and the detection controller compares the feature information with the antenna configuration information, and obtains the detection result of the antenna fastening quality according to the comparison result.

[0017] Compared with the prior art, the present invention has the following beneficial effects: by using antenna configuration information to make the antennas of each port of the 5G terminal under test send 5G signals sequentially at different frequency points, and comparing the feature information of the 5G signals obtained by the wireless signal analyzer with the antenna configuration information, the detection result of the antenna mounting quality is obtained. This solves the technical problem that the prior art cannot detect the mounting quality of all antennas, and produces the technical effect of being able to detect the mounting quality of all antennas of the 5G terminal. Attached Figure Description

[0018] Figure 1 This is a schematic diagram of an antenna mounting quality detection system according to an embodiment of the present invention;

[0019] Figure 2A schematic diagram illustrating a method for detecting the quality of antenna mounting according to an embodiment of the present invention;

[0020] Figure 3 A schematic diagram illustrating another method for detecting antenna mounting quality provided in an embodiment of the present invention;

[0021] Figure 4 This is a schematic diagram of another method for detecting the quality of antenna mounting provided in an embodiment of the present invention. Detailed Implementation

[0022] The technical solutions of the present invention will be further described below with reference to the accompanying drawings and embodiments.

[0023] like Figure 1 As shown, the antenna mounting quality detection system includes a detection controller 1, a wireless signal analyzer 2, and a 5G terminal under test 3. The detection controller 1 is communicatively connected to the wireless signal analyzer 2 and the 5G terminal under test 3. The detection controller can be a computer, handheld terminal, or other device running a specific detection control APP. The 5G terminal under test 3 has a built-in communication detection module corresponding to the detection control APP, responsible for completing the handshake signal sent by the detection control APP to establish a connection with the APP and receiving detection commands sent by the APP. The detection controller 1 is interconnected with the wireless signal analyzer 2 and the 5G terminal under test 3 via a network cable, USB cable (for data transmission), serial port, or Wi-Fi (Wireless Fidelity). Based on the antenna configuration information of the 5G terminal under test 3, the detection controller 1 sends detection commands to the 5G terminal under test 3, controlling the antennas of the corresponding ports of the 5G terminal under test 3 to sequentially transmit 5G signals on different frequency points. The antenna configuration information includes all antenna port numbers, the number of frequency points corresponding to each port number, and the frequency point information corresponding to each frequency point. The wireless signal analyzer 2 sequentially acquires the characteristic information of the 5G signal transmitted by the 5G terminal under test 3 and feeds it back to the detection controller 1 in a pre-agreed manner, such as spectra, frequency spectrum, or data, depending on the capabilities of the wireless signal analyzer 2. The detection controller 1 compares the received characteristic information with the antenna configuration information to obtain the detection result of the antenna mounting quality. In this way, the detection command can specify different port number antennas of the 5G terminal under test 3 to transmit 5G signals, so that all port number antennas of the 5G terminal under test 3 can transmit 5G signals. Then, the wireless signal analyzer 2 performs signal analysis to detect the antenna mounting quality, achieving the technical effect of being able to detect the mounting quality of all antennas of the 5G terminal under test 3.

[0024] like Figure 2 As shown in the figure, an embodiment of the present invention proposes a method for detecting the quality of antenna mounting, which includes the following steps:

[0025] Step S201: The detection controller obtains the antenna configuration information of the 5G terminal under test. The antenna configuration information includes all port numbers of the antenna, the number of frequency points corresponding to each port number, and the frequency point information corresponding to each frequency point.

[0026] In step S202, the detection controller sends a detection command to the 5G terminal under test according to the antenna configuration information, so that the 5G terminal under test controls the corresponding antenna to send 5G signals sequentially at different frequency points according to the detection command.

[0027] Step S203: The wireless signal analyzer acquires the characteristic information of the 5G signal, including the strength values ​​and duration of each strength of the 5G signal.

[0028] In step S204, the detection controller compares the feature information with the antenna configuration information and obtains the detection result of the antenna mounting quality based on the comparison result.

[0029] The detailed working process of this embodiment is as follows: The detection controller acquires the antenna configuration information of the 5G terminal under test. The antenna configuration information includes all port numbers of the antenna, the number of frequency points corresponding to each port number, and the frequency point information corresponding to each frequency point. A frequency point is a number assigned to a fixed frequency. Each port number corresponds to one antenna of the 5G terminal under test, and each antenna has its own bandwidth. The number of frequency points corresponding to each port number in the antenna configuration information is the number of test frequency points selected within the antenna bandwidth corresponding to that port number. The frequency point information is the signal source information at a specific frequency point. The detection controller sends a detection command to the 5G terminal under test according to the antenna configuration information, controlling it to transmit 5G signals sequentially on different frequency points on the corresponding antennas. The wireless signal analyzer sequentially acquires the feature information of the 5G signals transmitted by the 5G terminal under test and feeds it back to the detection controller. The detection controller compares the feature information with the antenna configuration information to obtain the antenna mounting quality detection result. When the antenna's operating frequency is within the antenna bandwidth, the antenna performance will not be greatly affected, the signal quality transmitted by the antenna is good, and the signal received by the wireless signal analyzer is not much different from the original signal. When an antenna operates outside its bandwidth, its performance degrades, resulting in poor signal quality. Consequently, the signal received by the wireless signal analyzer may be distorted and significantly different from the original signal. The frequency point controlling the signal transmitted by the antenna at a specific port of the 5G terminal under test is configured based on the antenna that should originally correspond to that port number. If an incorrect antenna is configured, the test frequency point configured for that port in the antenna configuration information will not be within the bandwidth of the incorrectly configured antenna. Controlling this antenna to transmit a 5G signal outside its bandwidth will result in poor signal quality, and the signal received by the wireless signal analyzer will be distorted compared to the antenna configuration information. If an antenna is omitted, that port will not transmit a 5G signal, and the wireless signal analyzer will not receive a signal. Since all port antennas of the 5G terminal under test can be controlled to transmit 5G signals at their respective frequencies, and the wireless signal analyzer can be used to check the antenna mounting quality, this method achieves the effect of detecting the mounting quality of all antennas on the 5G terminal. Furthermore, it allows for low-cost testing of the mounting quality of all antennas using a standard wireless signal analyzer.

[0030] Optionally, the detection controller acquires the antenna configuration information of the 5G terminal under test, including: the detection controller sending an information acquisition command to the 5G terminal under test; and the 5G terminal under test feeding back the pre-stored antenna configuration information to the detection controller according to the information acquisition command. This allows for the pre-stored antenna configuration information of different 5G terminals under test, facilitating the acquisition of the corresponding antenna configuration information when testing the antenna mounting quality of different 5G terminals under test.

[0031] In some embodiments, the detection control APP running the detection controller provides a parameter setting menu for users to configure the corresponding information and generate the corresponding antenna configuration information. The APP can directly load the configuration information for use or modification the next time it is used.

[0032] Optionally, the frequency information includes frequency, number of rotations, number of signal strengths, and strength information; the number of rotations indicates the number of times the signal cycles at a given frequency; the strength information includes the magnitude, duration, allowable duration fluctuation range, and allowable strength fluctuation range for each signal strength. Thus, by controlling and varying the transmitted signal strength, in an open environment where multiple identical devices are operating simultaneously, the tested port can transmit a signal at a certain strength for a certain period, then transition to transmitting a signal at the next strength, repeating this cycle several times. This allows for accurate differentiation of the tested device in an open environment. In this way, the wireless signal analyzer can precisely lock onto the signal of the 5G terminal under test based on the signal's characteristic information, preventing interference from other signals with the test results.

[0033] Optionally, the detection command includes: a port number and the frequency information corresponding to the port number. Thus, the detection command includes the port number to specify the controlled antenna, and the detection command includes the frequency information corresponding to that port number. A 5G signal is sent according to the frequency information, and the received signal is compared with the frequency information by a wireless signal analyzer. The quality of the 5G signal sent by the antenna according to the frequency information is checked to determine the quality of the antenna mounting.

[0034] Optionally, the detection controller sends detection commands to the 5G terminal under test based on the antenna configuration information. This includes: the detection controller sending detection commands sequentially to the 5G terminal under test for each frequency point of each port number according to the antenna configuration information; or, the detection controller sending detection commands sequentially to the 5G terminal under test for each port number according to the antenna configuration information; or, the detection controller sending detection commands to the 5G terminal under test for all port numbers at once according to the antenna configuration information. The detection controller can send detection commands one frequency point at a time, one port number at a time, or all at once. The 5G terminal under test then parses the detection commands to obtain which port needs to be controlled, what frequency, strength, and duration to use, and calls the device driver to send 5G signals sequentially to the antenna of the corresponding port according to different frequency points. This allows for more flexible sending of detection commands based on the 5G terminal under test's parsing capabilities.

[0035] In some embodiments, after each frequency point setting, strength setting, and duration completion, the 5G terminal under test sends the execution result and antenna status back to the detection control APP. The feedback content is as follows: Start of execution: port number, frequency point, strength, start time, execution result; End of execution: port number, frequency point, strength, end time, execution result. The detection controller displays the overall progress and status based on the execution results returned by the 5G terminal under test.

[0036] Optionally, the wireless signal analyzer acquires the feature information of the 5G signal, including: the wireless signal analyzer sequentially scans the signal according to the frequency points of the 5G signal to obtain the received signal corresponding to the frequency point; extracts the feature information of the received signal according to the frequency point information; and feeds back the feature information to the detection controller. When the detection controller sends a 5G signal, the wireless signal analyzer scans and receives signals at the same frequency point. The scanned signal may be singular, nonexistent, or multiple. The wireless signal analyzer then analyzes the feature information of signals with the same frequency point as the 5G signal sent by the detection controller, including the intensity change of the 5G signal at this frequency point, the duration of each intensity level, and the overall intensity change logic (i.e., how many times it cycled), and feeds this information back to the detection controller. This feedback to the detection controller facilitates the detection control APP in obtaining and displaying the results.

[0037] Optionally, the detection controller compares the feature information with the antenna configuration information to obtain the antenna mounting quality detection result, including: the detection controller compares the feature information with the antenna configuration information; if the intensity values ​​in the sequential feature information are within the allowable intensity fluctuation range of the antenna configuration information, and the duration of each intensity is within the allowable duration fluctuation range of the antenna configuration information, then the antenna mounting is determined to be normal. The feature information is compared with the corresponding frequency point information in the antenna configuration information; if the duration and intensity values ​​of each intensity at each frequency point are within the allowable duration fluctuation range and the allowable intensity fluctuation range, then the antenna installation at that port is determined to be normal; otherwise, the installation is abnormal and rework is required. If the wireless signal analyzer does not receive a signal at the same frequency point, or if the received signal at the same frequency point differs significantly from the antenna configuration information, then it may be a case of missed mounting. If a signal at the same frequency point is received and some features in the antenna configuration information are visible but not within the preset range, then it may be a case of incorrect mounting. The detection control APP displays the detection results through a menu.

[0038] like Figure 3 As shown in the figure, this embodiment of the invention proposes another method for detecting the quality of antenna mounting, which includes the following steps:

[0039] Step S301: The detection controller obtains the antenna configuration information of the 5G terminal under test. The antenna configuration information includes all port numbers of the antenna, the number of frequency points corresponding to each port number, and the frequency point information corresponding to each frequency point.

[0040] In step S302, the detection controller sends frequency point information to the wireless signal analyzer sequentially according to each frequency point of each port number based on the antenna configuration information. The detection controller sends the frequency point information of the next frequency point to the wireless signal analyzer only after receiving feedback from the wireless signal analyzer.

[0041] In step S303, the detection controller sends a detection command to the 5G terminal under test according to the antenna configuration information, so that the 5G terminal under test controls the corresponding antenna to send 5G signals sequentially at different frequency points according to the detection command.

[0042] In step S304, the wireless signal analyzer scans the signal sequentially according to the frequency points of the 5G signal to obtain the received signal corresponding to the frequency point.

[0043] In step S305, the wireless signal analyzer extracts the characteristic information of the received signal based on the frequency point information. The characteristic information includes the strength values ​​and duration of each strength of the 5G signal, and feeds the characteristic information back to the detection controller.

[0044] In step S306, the detection controller compares the feature information with the antenna configuration information and obtains the detection result of the antenna mounting quality based on the comparison result.

[0045] The detailed working process of this embodiment is as follows: Before sending the detection command to the 5G terminal under test, the detection controller first sends frequency point information to the wireless signal analyzer according to the antenna configuration information for each frequency point of each port number. Then, it sends the detection command to the 5G terminal under test, controlling its corresponding antenna to send 5G signals sequentially on different frequency points. After receiving the frequency point information, the wireless signal analyzer begins to receive the 5G signals sent by the 5G terminal under test according to the frequency point information, extracts feature information, and feeds it back to the detection controller. Only after receiving the feedback from the wireless signal analyzer does the detection controller send the frequency point information of the next 5G signal to be sent by the 5G terminal under test to the wireless signal analyzer. Based on the above further improvements, since the frequency point information is sent to the wireless signal analyzer before sending the detection command to the 5G terminal under test, and the detection controller only sends the frequency point information of the next frequency point to the wireless signal analyzer after receiving the feedback from the wireless signal analyzer, it also creates a state where the wireless signal analyzer can be prepared in advance to receive 5G signals, thus achieving the effect of timely reception of 5G signals. Frequency point information is sent to the wireless signal analyzer sequentially for each frequency point of each port number. The detection controller sends the frequency point information of the next frequency point to the wireless signal analyzer only after receiving feedback from the wireless signal analyzer. This is to ensure that the wireless signal analyzer can process the next frequency point after extracting the feature information of the 5G signal of the previous frequency point, and to avoid the previous frequency point being covered by the 5G signal of the next frequency point before it is processed, which would cause information loss.

[0046] like Figure 4 As shown in the figure, this embodiment of the invention proposes another method for detecting the quality of antenna mounting, which includes the following steps:

[0047] Step S401: The detection controller sends an information acquisition command to the 5G terminal under test.

[0048] In step S402, when the 5G terminal under test receives the information acquisition instruction, it feeds back the pre-stored antenna configuration information to the detection controller. The antenna configuration information includes all the port numbers of the antenna, the number of frequency points corresponding to each port number, and the frequency point information corresponding to each frequency point.

[0049] In step S403, the detection controller sends frequency point information to the wireless signal analyzer sequentially according to each frequency point of each port number based on the antenna configuration information; wherein, the detection controller sends the frequency point information of the next frequency point to the wireless signal analyzer only after receiving feedback from the wireless signal analyzer.

[0050] In step S404, upon receiving the antenna configuration information, the detection controller sequentially sends detection commands to the 5G terminal under test according to each frequency point of each port number.

[0051] In step S405, upon receiving the detection command, the 5G terminal under test controls the corresponding antenna to sequentially transmit 5G signals at different frequency points.

[0052] In step S406, upon receiving the frequency point information, the wireless signal analyzer scans the signal sequentially according to the frequency points of the 5G signal to obtain the received signal corresponding to the frequency point.

[0053] In step S407, the wireless signal analyzer extracts the characteristic information of the received signal based on the frequency point information. The characteristic information includes the strength values ​​and duration of each strength of the 5G signal.

[0054] In step S408, the wireless signal analyzer feeds back the feature information to the detection controller.

[0055] In step S409, when the detection controller receives the feature information, it compares the feature information with the antenna configuration information. If each strength value in the sequential feature information is within the allowable strength fluctuation range of the antenna configuration information, and the duration of each strength value is within the allowable duration fluctuation range of the antenna configuration information, then the antenna is determined to be properly fastened.

[0056] The detailed working process of this embodiment is as follows: The detection controller sends an information acquisition command to the 5G terminal under test to obtain antenna configuration information. Then, according to the antenna configuration information, it sequentially sends frequency point information to the wireless signal analyzer for each frequency point of each port number. Only after receiving feedback from the wireless signal analyzer does it send the frequency point information for the next frequency point. Then, it sequentially sends detection commands to the 5G terminal under test for each frequency point of each port number, controlling the corresponding antenna to sequentially transmit 5G signals on different frequency points. The wireless signal analyzer sequentially scans the signal according to the frequency points of the 5G signal and extracts feature information, which is then fed back to the detection controller. The detection controller compares the feature information with the antenna configuration information. If the feature information is within the preset range of the antenna configuration information, it determines that the antenna is properly installed. Based on the above further improvements, the pre-stored antenna configuration information of the 5G terminal under test is obtained through the information acquisition command, facilitating the acquisition of the antenna configuration information corresponding to that terminal. Sending the frequency point information to the wireless signal analyzer before sending the detection command avoids the previous frequency point being overwritten by the 5G signal of the next frequency point before processing is completed, resulting in information loss. Because all antenna ports of the 5G terminal under test can be controlled to transmit 5G signals at corresponding frequencies, the mounting quality of all antennas on the 5G terminal can be detected. Furthermore, using a common wireless signal analyzer, the mounting quality of all antennas can be tested at low cost. By controlling and varying the transmitted signal strength, the device under test can be accurately distinguished in open environments.

[0057] This invention provides a computer device, including a memory, a processor, and a computer program stored in the memory and executable on the processor. When the processor executes the computer program, it implements the steps of the above-described method.

[0058] This invention provides a storage medium storing a computer program thereon, which, when executed by a processor, implements the steps of the above-described method.

[0059] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention and are not intended to limit it. Although the present invention has been described in detail with reference to preferred embodiments, those skilled in the art should understand that modifications or equivalent substitutions can be made to the technical solutions of the present invention without departing from the spirit and scope of the technical solutions of the present invention, and all such modifications or substitutions should be covered within the scope of the claims of the present invention.

Claims

1. A method for detecting the quality of antenna mounting, characterized in that, A detection system for antenna mounting quality, comprising a detection controller and a wireless signal analyzer, wherein the detection controller is communicatively connected to the wireless signal analyzer and to the 5G terminal under test, and the detection method includes: The detection controller acquires the antenna configuration information of the 5G terminal under test; the antenna configuration information includes all antenna port numbers, the number of frequency points corresponding to each port number, and the frequency point information corresponding to each frequency point; the frequency point information includes frequency, rotation number, number of signal strengths, and strength information; the rotation number indicates the number of times the signal cycles at the specified frequency; the strength information includes the strength magnitude, duration, allowable duration fluctuation range, and allowable strength fluctuation range corresponding to each signal strength; The detection controller sends a detection command to the 5G terminal under test according to the antenna configuration information, so that the 5G terminal under test controls the corresponding antenna to send 5G signals sequentially at different frequency points according to the detection command. The wireless signal analyzer acquires the characteristic information of the 5G signal; the characteristic information includes the strength values ​​and duration of each strength of the 5G signal. The detection controller compares the feature information with the antenna configuration information. If, in sequence, the intensity values ​​in the feature information are within the allowable intensity fluctuation range of the antenna configuration information, and the duration of each intensity value is within the allowable duration fluctuation range of the antenna configuration information, then the antenna is determined to be properly installed; otherwise, the installation is determined to be abnormal.

2. The method for detecting the quality of antenna mounting as described in claim 1, characterized in that, The detection controller acquires the antenna configuration information of the 5G terminal under test, including: the detection controller sending an information acquisition command to the 5G terminal under test; and the 5G terminal under test feeding back the pre-stored antenna configuration information to the detection controller according to the information acquisition command.

3. The method for detecting the quality of antenna mounting as described in claim 1, characterized in that, The detection command includes: port number and the frequency information corresponding to the port number.

4. The method for detecting the quality of antenna mounting as described in claim 1, characterized in that, The detection controller sends detection commands to the 5G terminal under test according to the antenna configuration information, including: the detection controller sequentially sends detection commands to the 5G terminal under test according to each frequency point of each port number according to the antenna configuration information; or, the detection controller sequentially sends detection commands to the 5G terminal under test according to the port number according to the antenna configuration information; or, the detection controller sends detection commands to the 5G terminal under test all at once according to all port numbers according to the antenna configuration information.

5. The method for detecting the quality of antenna mounting as described in claim 1, characterized in that, The wireless signal analyzer acquires the feature information of the 5G signal by: sequentially scanning the signal according to the frequency points of the 5G signal to obtain the received signal corresponding to the frequency point; extracting the feature information of the received signal according to the frequency point information; and feeding back the feature information to the detection controller.

6. The method for detecting the quality of antenna mounting as described in claim 5, characterized in that, Before the wireless signal analyzer scans the signal sequentially according to the frequency points of the 5G signal, the method further includes: the detection controller sequentially sending frequency point information to the wireless signal analyzer according to the antenna configuration information for each frequency point of each port number; wherein, the detection controller sends the frequency point information of the next frequency point to the wireless signal analyzer only after receiving feedback from the wireless signal analyzer.

7. A computer device, comprising a memory, a processor, and a computer program stored in the memory and executable on the processor, characterized in that, When the processor executes the computer program, it implements the steps of any one of claims 1 to 6.

8. A storage medium having a computer program stored thereon, characterized in that, When the computer program is executed by the processor, it implements the steps of any one of claims 1 to 6.

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