Wireless interference testing method, system and computer-readable storage medium
Through the wireless interference test system, using scenario calibration and result calibration models, the interference sources of wireless devices are identified and evaluated, and a test background set is generated. This solves the problem of evaluating the anti-interference ability of wireless devices in complex environments and improves the stability and reliability of the equipment.
Patent Information
- Application Number
- CN202511013557.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-23
- Publication Date
- 2025-09-30
- Estimated Expiration
- 2045-07-23
AI Technical Summary
In complex wireless communication environments, existing technologies make it difficult to effectively evaluate the anti-interference capabilities of wireless devices, affecting the stability and reliability of information transmission. This is especially true in 5G and 6G communication technologies, where the requirements for anti-interference capabilities are higher.
A wireless interference testing system is provided, including a target analysis module, a test analysis module and a test module. Through a scenario calibration model and a result calibration model, the system identifies and evaluates interference sources of wireless devices in different application scenarios, generates a test background set, performs anti-interference testing, and generates anti-interference evaluation results.
It can adapt to complex and changing wireless communication environments, comprehensively evaluate the anti-interference performance of wireless devices, discover potential problems in advance, improve the stability and reliability of equipment in actual applications, and ensure normal communication.
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Figure CN120528533B_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the technical field of wireless interference testing, and in particular relates to a wireless interference testing method, system and computer-readable storage medium. Background Art
[0002] In today's rapidly developing information age, wireless communication technology, thanks to its convenience and efficiency, has been widely adopted in numerous fields, including aviation, aerospace, smart homes, and the Internet of Vehicles. It has become a critical infrastructure driving progress and transformation across various industries. However, with the rapid increase in the number of wireless devices, the wireless communication environment has become increasingly complex, and various interference issues have emerged, seriously impacting the stability and reliability of information transmission. Furthermore, with the promotion of next-generation communication technologies such as 5G and 6G, their high speeds, large bandwidths, and low latency have placed higher demands on the anti-interference capabilities of wireless communication systems. Therefore, how to conduct anti-interference testing on wireless devices has become a key method to ensure the normal communication of wireless devices.
[0003] Based on this, the present invention provides a wireless interference testing method, system and computer-readable storage medium. Summary of the Invention
[0004] In order to solve the problems existing in the above solutions, the present invention provides a wireless interference testing method, system and computer-readable storage medium.
[0005] The purpose of the present invention can be achieved through the following technical solutions:
[0006] A wireless interference test system includes a target analysis module, a test analysis module, and a test module;
[0007] The target analysis module is used to perform target analysis on the test target, obtain various wireless interference scenarios of the test target during application, summarize and analyze each wireless interference scenario, and obtain a test background set of the test target.
[0008] Furthermore, obtaining wireless interference scenarios includes:
[0009] Identify test target information and obtain various application scenarios of the test target based on the test target information;
[0010] The platform sets up an interference source information database, which is used to collect statistics on various interference source information in various application scenarios; and establishes a scenario calibration model based on the interference source information database.
[0011] The application scenario of the test target is analyzed through the scenario calibration model to obtain various interference sources of the test target in the corresponding application scenario; and a wireless interference scenario is generated based on the interference source information of each interference source in the corresponding application scenario.
[0012] Furthermore, the expression of the scene calibration model is:
[0013] ;
[0014] Where: (si, k) is the input data, si represents the corresponding interference source information, i is the subscript, i = 1, 2, ..., n, n is a positive integer; k represents the detailed scenario information of the application scenario of the test target; si→k indicates that the corresponding interference source information meets the calibration standard of the application scenario of the test target; the output data is the interference source calibration value HP(si, k), which is 1 or 0.
[0015] Furthermore, the application scenario of the test target is analyzed through the scenario calibration model, including:
[0016] Obtain detailed scenario information of the application scenario of the test target, and match the interference source information corresponding to the corresponding application scenario from the interference source information library according to the application scenario of the test target; input the corresponding interference source information and detailed scenario information into the corresponding input data and input it into the scenario calibration model for analysis to obtain the interference source calibration value of the corresponding interference source;
[0017] The interference source with an interference source calibration value of 1 is used as the interference source of the test target in the corresponding application scenario.
[0018] Furthermore, a summary analysis of each wireless interference scenario is conducted, including:
[0019] Identify the interference source information corresponding to the wireless interference scenario, and generate the corresponding initial scenario based on the interference source information;
[0020] Define alternative standards that meet the wireless anti-interference test requirements in one initial scenario and also meet the wireless anti-interference test requirements in another initial scenario;
[0021] Evaluate whether the corresponding initial scenes meet the substitution criteria, screen the corresponding initial scenes according to the substitution evaluation results, and mark the remaining initial scenes as test backgrounds; summarize the various test backgrounds into a test background set.
[0022] Furthermore, the corresponding initial scenarios are evaluated to see whether they meet the substitution criteria, including:
[0023] Determine the reference target of the test target, obtain the corresponding historical test data of wireless anti-interference according to the reference target, classify the historical test data according to the initial scenario, obtain the historical test data corresponding to the corresponding initial scenario, and mark it as scenario reference data; determine whether the corresponding initial scenarios meet the substitution criteria based on the scenario reference data.
[0024] The test analysis module is used to perform test analysis based on the test background set and determine the test scheme adopted for performing anti-interference test on the test target.
[0025] Furthermore, test analysis is performed based on the test background set, including:
[0026] Set the test conditions required for each test background to perform anti-interference testing according to the test background set;
[0027] Obtain the user's test conditions and set up a basic test plan based on the user's test conditions and test background set;
[0028] Analyze the user's test conditions according to the test condition requirements of each test context to determine whether the corresponding test conditions meet the test condition requirements of the corresponding test context;
[0029] Mark the test background that does not meet the test condition requirements as the adjustment background; perform anti-interference testing on the test target in the test background through the basic scheme, and obtain the test results of the test target in various test backgrounds;
[0030] Acquire test-related data when performing anti-interference testing on the adjusted background; encrypt and securely process the test-related data, and send the processed test-related data to the platform for analysis to obtain the corrected test results.
[0031] The test module is used to perform anti-interference testing on the test target according to the test plan, and obtain the test results of the test target in the corresponding test background; and summarize and analyze the various test results to obtain the anti-interference evaluation results of the test target.
[0032] Furthermore, the test results are summarized and analyzed, including:
[0033] The weight coefficients of each test background in the preset test background set are set; a result calibration model is established, and the expression of the result calibration model is:
[0034] ;
[0035] Where: (cj, BZ) is the input data, cj is the test result of the corresponding test background, j represents the corresponding test background, j=1, 2, ..., m, m is a positive integer; BZ is the anti-interference standard; cj→BZ means that the test result of the corresponding test background meets the anti-interference standard, and the output data is the result calibration value GP(cj, BZ), which is 1 or 0;
[0036] Analyze the test results of each test background through the result standard model to obtain the result calibration value of the corresponding test background;
[0037] Mark the test background of the test result with the result calibration value of 1 as abnormal background;
[0038] Identify alternative backgrounds to abnormal backgrounds; estimate the probability that the alternative backgrounds meet anti-interference standards based on the abnormal background test results;
[0039] The evaluation value of the test target is evaluated according to the evaluation formula, which is:
[0040] ;
[0041] Where: GR is the evaluation value; δj represents the weight coefficient of the corresponding test background; GMj represents the result representative value of the corresponding test background; when the test background is not an alternative background, GMj=GP(cj, BZ); when the test background is an alternative background, GMj=(1-τj)×GP(cj, BZ), τj is the probability that the corresponding alternative background meets the anti-interference standard;
[0042] Generate corresponding anti-interference evaluation results based on the evaluation value.
[0043] A wireless interference testing method, comprising:
[0044] Obtain various wireless interference scenarios encountered by the test target during application, summarize and analyze each wireless interference scenario, and obtain the test background set of the test target;
[0045] Conduct test analysis based on the test background set and determine the test plan for anti-interference testing of the test target;
[0046] Conduct anti-interference tests on the test target according to the test plan to obtain the test results of the test target in the corresponding test background; summarize and analyze the various test results to obtain the anti-interference evaluation results of the test target.
[0047] A computer-readable storage medium stores a computer program, which implements the steps of a wireless interference testing system when executed by a processor.
[0048] Compared with the prior art, the present invention has the following beneficial effects:
[0049] The wireless interference testing method, system, and computer-readable storage medium provided by the present invention are of great and far-reaching significance. They can adapt to various interference scenarios in complex and changing wireless communication environments, provide comprehensive and in-depth anti-interference testing for wireless devices, and effectively evaluate the performance of wireless devices under different interference conditions, thereby discovering and resolving potential anti-interference issues in advance. This greatly improves the stability and reliability of wireless devices in practical applications and provides a solid and reliable guarantee for the normal communication of wireless devices in complex communication environments. BRIEF DESCRIPTION OF THE DRAWINGS
[0050] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative work.
[0051] Figure 1 This is a principle block diagram of the present invention. DETAILED DESCRIPTION
[0052] The technical solutions of the present invention will be clearly and completely described below in conjunction with the embodiments. Obviously, the embodiments described are only some embodiments of the present invention, not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0053] like Figure 1 As shown, a wireless interference test system includes a target analysis module, a test analysis module, and a test module;
[0054] The target analysis module is used to perform target analysis on the test target that needs to undergo wireless interference testing, determine various wireless interference scenarios that the test target may encounter during application, summarize and analyze each wireless interference scenario, and obtain a test background set corresponding to the test target.
[0055] In one embodiment, the wireless interference scenario and the test background set may be determined using existing methods, such as manually analyzing and determining by the platform.
[0056] In one embodiment, various wireless interference scenarios that the test target may encounter during application are determined, including:
[0057] Identify test target information, including product type, purpose, specifications, and other information related to determining the test target application scenario; obtain various application scenarios of the test target based on the test target information, such as examination room, home use, office use, and other related application scenarios;
[0058] The platform sets up an interference source information database, which is used to collect information on various interference sources in various application scenarios, such as natural interference sources (lightning, solar activity, atmospheric noise), other wireless devices (Wi-Fi routers, Bluetooth devices, mobile phones), industrial equipment (large motors, inverters, welding machines), malicious interference (mobile phone signal jammers), etc. The interference source information includes information related to wireless interference, such as frequency band, transmission power, mechanism of action and degree of impact on wireless devices; a scenario calibration model is established based on the interference source information database. The scenario calibration model is used to calibrate the application scenario of the test target based on the various interference source information corresponding to the corresponding application scenario in the interference source information database, and evaluate whether the application scenario of the test target will have corresponding interference sources; then, the application scenario of the test target is analyzed through the scenario calibration model to obtain various interference sources in the application scenario of the test target;
[0059] The application scenario of the test target is analyzed through the scenario calibration model to obtain the various interference sources of the test target in the corresponding application scenario; a wireless interference scenario is generated based on the interference source information of each interference source in the corresponding application scenario, that is, the interference source information corresponding to an application scenario constitutes a wireless interference scenario.
[0060] In one embodiment, the scene calibration model is established based on existing technologies, such as machine learning, deep learning algorithms, etc.
[0061] In one embodiment, the scene calibration model is expressed as:
[0062] ;
[0063] Where: (si, k) is the input data, si represents the corresponding interference source information, i is the subscript, i=1, 2, ..., n, n is a positive integer; k represents the detailed scenario information of the application scenario of the test target; si→k indicates that the corresponding interference source information meets the calibration standard of the application scenario of the test target, that is, the application scenario has the interference source; the output data is the interference source calibration value HP(si, k), which is 1 or 0; the corresponding historical data is used to mark the corresponding training set for training, that is, according to the application scenario, it can be determined whether the test target has the corresponding interference source, and the determination is made in combination with the detailed scenario information submitted by the user.
[0064] In one embodiment, analyzing the application scenario of the test target using the scenario calibration model includes:
[0065] Obtain detailed scenario information of the application scenario of the test target, and match the interference source information corresponding to the corresponding application scenario from the interference source information library according to the application scenario of the test target; input the corresponding interference source information and detailed scenario information into the corresponding input data and input it into the scenario calibration model for analysis to obtain the interference source calibration value of the corresponding interference source;
[0066] The interference source with an interference source calibration value of 1 is used as the interference source of the test target in the corresponding application scenario.
[0067] In one embodiment, summarizing and analyzing various wireless interference scenarios includes:
[0068] Identify the interference source information corresponding to the wireless interference scenario and generate the corresponding initial scenario based on the interference source information. For example, Wi-Fi devices, Bluetooth tags, and wireless sensor networks are used. Wi-Fi devices mainly operate in the 2.4GHz and 5GHz frequency bands with a transmission power between 100mW and 1W. Bluetooth tags operate in the 2.4GHz frequency band with a relatively low transmission power of approximately 1-10mW. Wireless sensor networks use the 433MHz frequency band with a transmission power between 10-50mW. The initial scenario is formed based on the above information.
[0069] Define an alternative standard. The alternative standard is that when the wireless anti-interference test requirements of one initial scenario are met, the wireless anti-interference test requirements of another initial scenario are also met. For example, if there are two initial scenarios A and B, when the anti-interference test of A is met, the anti-interference performance of the test target will also meet the anti-interference capability of B. In this case, A and B are considered to meet the alternative standard. Because A has a higher standard, stronger anti-interference capability for the test target, or includes testing for B, in the subsequent screening, B is eliminated and A is retained.
[0070] Evaluate whether the corresponding initial scenes meet the substitution criteria, screen the corresponding initial scenes according to the substitution evaluation results, and mark the remaining initial scenes as test backgrounds; summarize the various test backgrounds into a test background set.
[0071] In one embodiment, the evaluation of whether the corresponding initial scenarios meet the substitution criteria can be determined by combining historical test data of similar products of the existing test targets, and on this basis, the evaluation and judgment are performed using existing evaluation methods, judgment methods, etc.
[0072] In one embodiment, evaluating whether the corresponding initial scenarios satisfy substitution criteria includes:
[0073] Determine the reference target for the test target. The reference target is generally the same product as the test target. If the amount of data is insufficient, other products with equivalent anti-interference effects can also be used. The reference target can be set according to common sense in the field and is generally determined manually by the platform or the user.
[0074] According to the reference target, the historical test data of the corresponding wireless anti-interference is obtained, the historical test data is classified according to the initial scenario, and the historical test data corresponding to the corresponding initial scenario is obtained and marked as the scenario reference data; according to the scenario reference data, it is determined whether the replacement criteria are met between the corresponding initial scenarios.
[0075] That is, based on the actual historical test data that serves as a reference, analyze whether the corresponding test target can test only one initial scenario between the corresponding two initial scenarios; such as using machine learning, deep learning algorithms, etc. to establish a corresponding evaluation and judgment model for intelligent judgment.
[0076] The test analysis module is used to perform test analysis based on the test background set and determine the test scheme adopted for performing anti-interference test on the test target.
[0077] In one embodiment, the test scheme is determined according to the test background set, and can be determined based on existing methods, such as common manual settings, using user-defined test condition settings, matching preset test schemes, and the like.
[0078] In one embodiment, due to differences in user situations, the test methods that can be adopted may vary. For example, due to equipment limitations, only static scenarios can be simulated, resulting in test results that differ from actual results. Some users, due to high testing costs, launch products into the market without performing interference testing. Based on this background, in this embodiment, test analysis is performed based on a test background set, including:
[0079] The test conditions required for anti-interference testing of each test background set are determined by the platform based on the test accuracy to be achieved, generally in accordance with industry regulations;
[0080] Obtain the user's test conditions, including self-owned test conditions and test conditions that are allowed to be rented; set up a test plan according to the user's test conditions and test background set, that is, use the test method corresponding to the existing test conditions to set the test method for all test backgrounds to form a test plan. For test backgrounds that cannot be tested due to lack of test equipment, etc., test according to the rental method corresponding to the highest cost allowed by the user to achieve basic interference testing. The platform will determine the service for the user and can also make recommendations based on existing recommendation technologies. Under normal circumstances, the user's test conditions can meet the basic interference test; mark the obtained test plan as the basic plan;
[0081] Analyze the user's test conditions according to the test condition requirements of each test context to determine whether the corresponding test conditions meet the test condition requirements of the corresponding test context;
[0082] The test background that does not meet the test condition requirements is marked as an adjustment background. When the anti-interference test is performed on the adjustment background through the basic plan, the corresponding test conditions, test results, test process and other test-related data related to the correction of the test results in this case are obtained; the test-related data is encrypted and securely processed, and the processed test-related data is sent to the platform for analysis to obtain the corrected test results; and integrated to form an application test plan.
[0083] In one embodiment, the test-related data is encrypted and securely processed, generally using homomorphic encryption, so that the post-processed test-related data can be corrected and analyzed on the platform side in an encrypted state. The platform side uses its own resources to set up intelligent correction models, intelligent agents, etc. to correct various test results; and the test-related data can also be provided by multiple data parties in combination with the alliance chain to ensure the security of the data throughout the process; other methods can also be used to ensure the security of the data.
[0084] The test module is used to perform anti-interference testing on the test target according to the test plan, and obtain the test results of the test target in the corresponding test background; and summarize and analyze the various test results to obtain the anti-interference evaluation results of the test target.
[0085] In one embodiment, the test results are summarized and analyzed, including:
[0086] The weight coefficient corresponding to each test background in the preset test background set can be set based on multiple factors such as the occurrence ratio, market share ratio, and application impact ratio of the test background. The weight coefficient can be set by the user according to actual needs, or determined by the platform through objective analysis;
[0087] A result calibration model is established. The result calibration model is used to calibrate the test results to determine whether they meet the anti-interference standard of the test target. The expression of the result calibration model is:
[0088] ;
[0089] Where: (cj, BZ) is the input data, cj is the test result of the corresponding test background, j represents the corresponding test background, j=1, 2, ..., m, m is a positive integer; BZ is the anti-interference standard; cj→BZ means that the test result of the corresponding test background meets the anti-interference standard, and the output data is the result calibration value GP(cj, BZ), which is 1 or 0. The corresponding training set is set using the corresponding historical test results and anti-interference standard for training;
[0090] Analyze the test results of each test background through the result standard model to obtain the result calibration value of the corresponding test background;
[0091] Mark the test background of the test result with the result calibration value of 1 as abnormal background;
[0092] Identify whether the abnormal background meets the replacement standard. If so, identify the replacement test background corresponding to the abnormal background and mark the replacement test background as the replacement background. Estimate the probability that the replacement background meets the anti-interference standard based on the test results of the abnormal background.
[0093] The evaluation value of the test target is evaluated according to the evaluation formula, which is:
[0094] ;
[0095] Where: GR is the evaluation value; δj represents the weight coefficient of the corresponding test background; GMj represents the result representative value of the corresponding test background; when the test background is not an alternative background, GMj=GP(cj, BZ); when the test background is an alternative background, GMj=(1-τj)×GP(cj, BZ), τj is the probability that the corresponding alternative background meets the anti-interference standard;
[0096] Generate corresponding anti-interference evaluation results based on the evaluation value.
[0097] In one embodiment, the anti-interference evaluation result is an evaluation value.
[0098] In one embodiment, the anti-interference evaluation result includes an evaluation value and a result of whether each test background is qualified.
[0099] In one embodiment, the anti-interference evaluation result may also include other information, such as the reason for failure, the degree of influence of abnormal background, etc.
[0100] In one embodiment, the probability that the alternative background meets the anti-interference standard is estimated based on the test results of the abnormal background, and can be statistically determined in combination with the existing historical test data. For example, the proportion of the alternative background that meets the anti-interference standard under the test results of the abnormal background is counted and regarded as the corresponding probability; the data volume of the historical test data can be supplemented by referring to the target to improve the representativeness, and the estimation can also be based on other existing methods, such as the common estimation based on intelligent models based on intelligent algorithms such as machine learning and deep learning algorithms.
[0101] A wireless interference testing method, comprising:
[0102] Obtain various wireless interference scenarios encountered by the test target during application, summarize and analyze each wireless interference scenario, and obtain the test background set of the test target;
[0103] Conduct test analysis based on the test background set and determine the test plan for anti-interference testing of the test target;
[0104] Conduct anti-interference tests on the test target according to the test plan to obtain the test results of the test target in the corresponding test background; summarize and analyze the various test results to obtain the anti-interference evaluation results of the test target.
[0105] A computer-readable storage medium stores a computer program, which, when executed by a processor, implements the steps described in the above-mentioned wireless interference test system embodiment.
[0106] It is understandable that if the method in the above embodiment is implemented in the form of a software functional unit and sold or used as an independent product, it can be stored in a computer-readable storage medium. Based on this understanding, the technical solution of the present application, or the part that contributes to the prior art, or all or part of the technical solution can be embodied in the form of a software product. The computer software product is stored in a storage medium and executes all or part of the steps of the method described in each embodiment of the present application. The aforementioned storage medium includes: U disk, mobile hard disk, read-only memory (ROM), random access memory (RAM), disk or optical disk, and other media that can store program code.
[0107] The above formulas are all calculated by removing dimensions and taking their numerical values. The formula is a formula that is closest to the actual situation obtained by collecting a large amount of data and performing software simulation. The preset parameters and preset thresholds in the formula are set by technicians in this field according to actual conditions or obtained by simulating a large amount of data.
[0108] The above embodiments are only used to illustrate the technical method of the present invention and are not intended to limit the present invention. Although the present invention has been described in detail with reference to the preferred embodiments, those skilled in the art should understand that the technical method of the present invention may be modified or replaced by equivalents without departing from the spirit and scope of the technical method of the present invention.
Claims
1. A wireless interference testing system, characterized in that: Including target analysis module, test analysis module, and test module; The target analysis module is used to perform target analysis on the test target, obtain various wireless interference scenarios of the test target during application, summarize and analyze each wireless interference scenario, and obtain a test background set of the test target; The test analysis module is used to perform test analysis based on the test background set and determine the test plan adopted for the anti-interference test of the test target; The test module is used to perform anti-interference testing on the test target according to the test plan and obtain the test results of the test target in the corresponding test background; Summarize and analyze the test results to obtain the anti-interference evaluation results of the test target; Acquisition of wireless interference scenarios, including: Identify test target information and obtain various application scenarios of the test target based on the test target information; The platform sets up an interference source information database, which is used to collect statistics on various interference source information in various application scenarios; and establishes a scenario calibration model based on the interference source information database. Analyze the application scenario of the test target through the scenario calibration model to obtain various interference sources of the test target in the corresponding application scenario; generate a wireless interference scenario based on the interference source information of each interference source in the corresponding application scenario; The expression of the scene calibration model is: ; Where: (si, k) is the input data, si represents the corresponding interference source information, i is the subscript, i=1, 2, ..., n, n is a positive integer; k represents the detailed scenario information of the application scenario of the test target; si→k indicates that the corresponding interference source information meets the calibration standard of the application scenario of the test target; the output data is the interference source calibration value HP(si, k), which is 1 or 0; Summarize and analyze various wireless interference scenarios, including: Identify the interference source information corresponding to the wireless interference scenario, and generate the corresponding initial scenario based on the interference source information; Define alternative standards that meet the wireless anti-interference test requirements in one initial scenario and also meet the wireless anti-interference test requirements in another initial scenario; Evaluate whether the corresponding initial scenes meet the substitution criteria, screen the corresponding initial scenes based on the substitution evaluation results, and mark the remaining initial scenes as test backgrounds; summarize the various test backgrounds into a test background set; Perform test analysis based on the test background set, including: Set the test conditions required for each test background to perform anti-interference testing according to the test background set; Obtain the user's test conditions and set up a basic test plan based on the user's test conditions and test background set; Analyze the user's test conditions according to the test condition requirements of each test context to determine whether the corresponding test conditions meet the test condition requirements of the corresponding test context; Mark the test background that does not meet the test condition requirements as the adjustment background; perform anti-interference testing on the test target in the test background through the basic scheme, and obtain the test results of the test target in various test backgrounds; Obtain test-related data when performing anti-interference testing on the adjusted background; encrypt and securely process the test-related data, and send the processed test-related data to the platform for analysis to obtain the corrected test results; Summarize and analyze the test results, including: The weight coefficients of each test background in the preset test background set are set; a result calibration model is established, and the expression of the result calibration model is: ; Where: (cj, BZ) is the input data, cj is the test result of the corresponding test background, j represents the corresponding test background, j=1, 2, ..., m, m is a positive integer; BZ is the anti-interference standard; cj→BZ means that the test result of the corresponding test background meets the anti-interference standard, and the output data is the result calibration value GP(cj, BZ), which is 1 or 0; Analyze the test results of each test background through the result standard model to obtain the result calibration value of the corresponding test background; Mark the test background of the test result with the result calibration value of 1 as abnormal background; Identify alternative backgrounds to abnormal backgrounds; estimate the probability that the alternative backgrounds meet anti-interference standards based on the abnormal background test results; The evaluation value of the test target is evaluated according to the evaluation formula, which is: ; Where: GR is the evaluation value; δj represents the weight coefficient of the corresponding test background; GMj represents the result representative value of the corresponding test background; when the test background is not an alternative background, GMj=GP(cj, BZ); when the test background is an alternative background, GMj=(1-τj)×GP(cj, BZ), τj is the probability that the corresponding alternative background meets the anti-interference standard; Generate corresponding anti-interference evaluation results based on the evaluation value.
2. A wireless interference testing system according to claim 1, characterized in that: The scenario calibration model is used to analyze the application scenarios of the test target, including: Obtain detailed scenario information of the application scenario of the test target, and match the interference source information corresponding to the corresponding application scenario from the interference source information library according to the application scenario of the test target; input the corresponding interference source information and detailed scenario information into the corresponding input data and input it into the scenario calibration model for analysis to obtain the interference source calibration value of the corresponding interference source; The interference source with an interference source calibration value of 1 is used as the interference source of the test target in the corresponding application scenario.
3. The wireless interference testing system according to claim 1, wherein: Evaluate whether the substitution criteria between the corresponding initial scenarios are met, including: Determine the reference target of the test target, obtain the corresponding historical test data of wireless anti-interference according to the reference target, classify the historical test data according to the initial scenario, obtain the historical test data corresponding to the corresponding initial scenario, and mark it as scenario reference data; determine whether the corresponding initial scenarios meet the substitution criteria based on the scenario reference data.
4. A wireless interference testing method, characterized in that: A wireless interference testing system according to any one of claims 1 to 3, wherein the method comprises: Obtain various wireless interference scenarios encountered by the test target during application, summarize and analyze each wireless interference scenario, and obtain the test background set of the test target; Conduct test analysis based on the test background set and determine the test plan for anti-interference testing of the test target; Conduct anti-interference tests on the test target according to the test plan to obtain the test results of the test target in the corresponding test background; summarize and analyze the various test results to obtain the anti-interference evaluation results of the test target.
5. A computer-readable storage medium, characterized in that The computer-readable storage medium stores a computer program, and when the computer program is executed by a processor, the steps of the wireless interference testing system according to any one of claims 1 to 3 are implemented.
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