Electronic scale cheating intelligent detection method and system

By obtaining the initial and real-time weighing data of the electronic scale, calculating the cheating range value and evaluating the cheating probability, the problems of low detection efficiency and poor accuracy in the prior art are solved, and intelligent detection and report generation of electronic scale cheating are realized.

CN120333594APending Publication Date: 2025-07-18GANSU PROVINCIAL INST OF METROLOGY +1
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Patent Information

Application Number
CN202510325373.4
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-19
Publication Date
2025-07-18

AI Technical Summary

Technical Problem

The existing electronic scale cheat detection system cannot automatically and comprehensively record and analyze the cheat ranges corresponding to different cheat codes, resulting in low detection efficiency and easy introduction of artificial errors, affecting the detection accuracy.

Method used

By sending regular weighing and cheating detection instructions to the electronic scale to be tested, obtaining initial and real-time weighing data, calculating the real-time cheating amplitude value, obtaining the current amplitude deviation value based on the preset cheating amplitude table, automatically assessing the probability and degree of cheating, and providing cheating detection reports.

Benefits of technology

It realizes intelligent detection of cheating of electronic scales, improves detection efficiency and accuracy, reduces human operation errors, and provides a comprehensive report on cheating.

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Abstract

The invention provides an electronic scale cheating intelligent detection method and system, and the method comprises the steps: transmitting a conventional weighing instruction to a to-be-detected electronic scale, so as to enable the to-be-detected electronic scale to carry out the conventional weighing, and obtaining the initial weighing data; generating a cheating detection instruction based on a preset cheating code, and sending the cheating detection instruction to the to-be-detected electronic scale to enable the to-be-detected electronic scale to perform cheating weighing to obtain real-time weighing data; acquiring a real-time cheating amplitude value based on the initial weighing data and the real-time weighing data; obtaining a current amplitude deviation value based on the real-time cheating amplitude value and a preset cheating amplitude table; and obtaining the cheating probability and the cheating degree of the to-be-detected electronic scale according to the current amplitude deviation value, thereby realizing cheating detection of the to-be-detected electronic scale. According to the invention, the real-time cheating amplitude value of the electronic scale to be detected can be obtained according to the cheating detection instruction, and then the cheating probability and the cheating degree of the electronic scale are obtained, so that intelligent detection of cheating of the electronic scale is realized, the detection efficiency is effectively improved, and the detection accuracy is improved.
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Description

Technical Field

[0001] The present invention relates to the technical field of electronic scale detection, and in particular, to an intelligent detection method and system for electronic scale cheating. Background Art

[0002] As a key measuring instrument widely used in weighing transactions, the accuracy of the weighing result of an electronic scale is directly related to the fairness and justice of market transactions and the vital interests of consumers. However, with the increasingly concealed and diversified profit-seeking means of lawbreakers, the phenomenon of electronic scale cheating occurs from time to time, seriously disrupting the normal market order. In the field of electronic scales, in order to cope with the proliferation of cheating behaviors, researchers and practitioners have invested a lot of energy in developing relevant detection technologies and systems. However, most of the current detection systems on the market still have significant limitations. Most of the current detection systems can only detect the existence of cheating codes, and cannot automatically and comprehensively record and analyze the cheating amplitudes corresponding to different cheating codes, which limits the application of the detection system in market supervision and law enforcement. And in actual operation, generally, the operator needs to manually input the cheating code, observe the weighing performance of the electronic scale after receiving the cheating code instruction, and record the impact of each cheating code on the final weighing result. This will result in a long test process and is difficult to meet the large-scale and high-efficiency detection requirements. Moreover, manual operation is prone to introducing human errors and affecting the accuracy of the test results. Summary of the Invention

[0003] The present invention aims to provide an intelligent detection method and system for electronic scale cheating to solve the above technical problems, which can obtain the real-time cheating amplitude value of the electronic scale to be tested according to the cheating detection instruction, and then obtain the cheating probability and cheating degree of the electronic scale, realize the intelligent detection of whether the electronic scale cheats, effectively improve the detection efficiency, and improve the detection accuracy.

[0004] To solve the above technical problems, the present invention provides an intelligent detection method for electronic scale cheating, including the following steps:

[0005] Send a conventional weighing instruction to the electronic scale to be tested to make the electronic scale to be tested perform conventional weighing and obtain initial weighing data;

[0006] Generate a cheating detection instruction based on a preset cheating code and send the cheating detection instruction to the electronic scale to be tested to make the electronic scale to be tested perform cheating weighing and obtain real-time weighing data;

[0007] Obtain a real-time cheating amplitude value based on the initial weighing data and the real-time weighing data;

[0008] Obtain the current amplitude deviation value based on the real-time cheating amplitude value and a preset cheating amplitude table;

[0009] Obtain the cheating probability and degree of the electronic scale to be measured according to the current amplitude deviation value, and realize the detection of cheating of the electronic scale to be measured.

[0010] In the above solution, the electronic scale to be measured performs cheating weighing according to the conventional weighing instruction and the cheating detection instruction, obtains the initial weighing data and the real-time weighing data, and lays a foundation for calculating the real-time cheating amplitude value next. Then, based on the real-time cheating amplitude value and the preset cheating amplitude table, calculate to obtain the current amplitude deviation value, so as to evaluate the performance of the electronic scale simulating cheating under the preset cheating code. Then, based on the current amplitude deviation value, analyze the cheating probability and degree of the electronic scale to be measured, and judge the possibility of the electronic scale to be measured cheating. Therefore, the real-time cheating amplitude value of the electronic scale to be measured can be obtained according to the cheating detection instruction, and then the cheating probability and degree of the electronic scale can be obtained, realizing the intelligent detection of whether the electronic scale cheats, effectively improving the detection efficiency and enhancing the detection accuracy.

[0011] Furthermore, it also includes:

[0012] Obtain the preset cheating code sequence;

[0013] Generate a cheating detection instruction sequence based on the preset cheating code sequence, and send the cheating detection instruction sequence to the electronic scale to be measured, so that the electronic scale to be measured performs cheating weighing to obtain a real-time weighing data sequence;

[0014] Obtain a real-time cheating amplitude value sequence based on the initial weighing data and the real-time weighing data sequence;

[0015] Obtain a current amplitude deviation value sequence based on the real-time cheating amplitude value sequence and the preset cheating amplitude table;

[0016] Obtain the cheating probability and degree of the electronic scale to be measured according to the current amplitude deviation value sequence, and realize the detection of cheating of the electronic scale to be measured.

[0017] In the above solution, the preset cheating code sequence provides an instruction basis for simulating different cheating scenarios later. Only by determining the cheating code to be detected can cheating detection be further carried out. The real-time weighing data sequence reflects the weighing performance of the electronic scale to be measured under the action of different preset cheating codes, and is an important basis for judging whether the electronic scale to be measured cheats and the cheating amplitude, providing the original data support for subsequent calculation and analysis.

[0018] Furthermore, it also includes:

[0019] Before performing conventional weighing or cheating weighing on the electronic scale to be measured, perform zeroing and taring operations on the electronic scale to be measured, and the zeroing method is forced zeroing.

[0020] In the above solution, forced zeroing can forcibly set the display value of the electronic scale to zero, ensuring that the electronic scale to be tested starts measuring from an accurate reference state. Through the tare operation, it can ensure that the obtained weighing data only reflects the true weight change of the weighed item, improving the accuracy and reliability of the detection results.

[0021] Furthermore, it also includes:

[0022] Based on the preset cheating code sequence, real-time cheating amplitude value sequence, current amplitude deviation value sequence, and cheating probability, obtain the cheating detection result report of the electronic scale to be tested.

[0023] In the above solution, the preset cheating code sequence, real-time cheating amplitude value sequence, current amplitude deviation value sequence, and cheating probability are summarized to form a comprehensive data set, providing data support for the cheating detection result report of the electronic scale to be tested, enabling users to understand the cheating situation of the electronic scale from multiple dimensions.

[0024] Furthermore, the obtaining of the real-time cheating amplitude value based on the initial weighing data and the real-time weighing data includes:

[0025]

[0026] where R represents the real-time cheating amplitude value, W 实时 represents the real-time weighing data, and W 初始 represents the initial weighing data.

[0027] In the above solution, a method for accurately calculating the real-time cheating amplitude value is provided, quantifying the change in the weighing data of the electronic scale to be tested in the cheating state. Only by calculating the real-time cheating amplitude value through this formula can it be further compared with the preset cheating amplitude table to obtain the current amplitude deviation value, thereby determining whether the electronic scale to be tested is cheating and evaluating the degree of cheating, enabling intelligent detection of electronic scale cheating.

[0028] The present invention provides an intelligent electronic scale cheating detection system, including an initial weighing module, a cheating weighing module, a cheating amplitude calculation module, an amplitude deviation calculation module, and a cheating analysis module, where:

[0029] The initial weighing module is used to send a conventional weighing instruction to the electronic scale to be tested, so that the electronic scale to be tested performs a conventional weighing to obtain the initial weighing data;

[0030] The cheating weighing module is used to generate a cheating detection instruction based on a preset cheating code and send the cheating detection instruction to the electronic scale to be tested, so that the electronic scale to be tested performs a cheating weighing to obtain the real-time weighing data;

[0031] The cheating amplitude calculation module is used to obtain the real-time cheating amplitude value based on the initial weighing data and the real-time weighing data;

[0032] The amplitude deviation calculation module is used to obtain the current amplitude deviation value based on the real-time cheating amplitude value and a preset cheating amplitude table;

[0033] The cheating analysis module is used to obtain the cheating probability and the degree of cheating of the electronic scale to be measured according to the current amplitude deviation value, so as to realize the detection of cheating of the electronic scale to be measured.

[0034] The electronic scale cheating intelligent detection system provided by the above solution has a simple structure. In practical applications, only the initial weighing module and the cheating weighing module are needed to obtain the initial weighing data and the real-time weighing data. Then, the cheating amplitude calculation module converts the abstract cheating weighing performance of the electronic scale to be measured into specific cheating quantification indexes, providing accurate numerical support. Next, the amplitude deviation calculation module compares the real-time cheating amplitude value of the electronic scale to be measured with the standard value in the preset cheating amplitude table to obtain the current amplitude deviation value. Finally, the cheating analysis module comprehensively evaluates the cheating probability and the degree of cheating of the electronic scale to be measured according to the current amplitude deviation value obtained by the amplitude deviation calculation module, so as to realize the intelligent detection of whether the electronic scale cheats, effectively improving the detection efficiency and enhancing the detection accuracy.

[0035] Further, it further includes:

[0036] The cheating weighing module is further used to obtain a preset cheating code sequence;

[0037] The cheating weighing module is further used to generate a cheating detection instruction sequence based on the preset cheating code sequence, and send the cheating detection instruction sequence to the electronic scale to be measured, so as to make the electronic scale to be measured perform cheating weighing to obtain a real-time weighing data sequence;

[0038] The cheating amplitude calculation module is further used to obtain a real-time cheating amplitude value sequence based on the initial weighing data and the real-time weighing data sequence;

[0039] The amplitude deviation calculation module is used to obtain a current amplitude deviation value sequence based on the real-time cheating amplitude value sequence and a preset cheating amplitude table;

[0040] The cheating analysis module is used to obtain the cheating probability and the degree of cheating of the electronic scale to be measured according to the current amplitude deviation value sequence, so as to realize the detection of cheating of the electronic scale to be measured.

[0041] In the above solution, the cheating weighing module automatically replaces the preset cheating codes according to the preset cheating code sequence, providing an instruction basis for subsequently simulating the cheating weighing situations of the electronic scale to be tested under different preset cheating codes. The real-time weighing data sequence reflects the weighing performance of the electronic scale to be tested under the action of different preset cheating codes, and is an important basis for judging whether the electronic scale to be tested cheats and the cheating amplitude, providing raw data support for subsequent calculations and analyses.

[0042] Furthermore, it further includes an initialization module:

[0043] The initialization module is used to perform a zeroing and taring operation on the electronic scale to be tested before performing a conventional weighing or a cheating weighing on the electronic scale to be tested, and the zeroing method is forced zeroing.

[0044] In the above solution, the initialization module can, through the forced zeroing operation, forcibly set the display value of the electronic scale to zero, ensuring that the electronic scale to be tested starts measuring from an accurate reference state. Through the taring operation, it is ensured that the obtained weighing data only reflects the real weight change of the weighed item, improving the accuracy and reliability of the detection result.

[0045] Furthermore, it further includes a report generation module:

[0046] The report generation module is used to obtain a cheating detection result report for the electronic scale to be tested based on the preset cheating code sequence, the real-time cheating amplitude value sequence, the current amplitude deviation value sequence, and the cheating probability.

[0047] In the above solution, the preset cheating code sequence, the real-time cheating amplitude value sequence, the current amplitude deviation value sequence, and the cheating probability are summarized, and through the report generation module, a comprehensive data set is formed, providing data support for the cheating detection result report of the electronic scale to be tested, enabling the user to understand the cheating situation of the electronic scale from multiple dimensions.

[0048] Furthermore, the cheating amplitude calculation module is used to obtain the real-time cheating amplitude value based on the initial weighing data and the real-time weighing data, including:

[0049]

[0050] wherein, R represents the real-time cheating amplitude value, W 实时 represents the real-time weighing data, and W 初始 represents the initial weighing data.

[0051] In the above solution, the cheating amplitude calculation module provides a way to accurately calculate the real-time cheating amplitude value for the electronic scale cheating intelligent detection system, and quantifies the change in the weighing data of the electronic scale to be measured in the cheating state. Only by calculating the real-time cheating amplitude value through this formula can the current amplitude deviation value be further calculated based on the real-time cheating amplitude value and the preset cheating amplitude table in the amplitude deviation calculation module, so as to determine whether the electronic scale to be measured is cheating and evaluate the degree of cheating, and the intelligent detection of electronic scale cheating can be realized. BRIEF DESCRIPTION OF THE DRAWINGS

[0052] Figure 1 FIG. is a schematic flow chart of an electronic scale cheating intelligent detection method provided by an embodiment of the present invention;

[0053] Figure 2 FIG. is a schematic architecture diagram of an electronic scale cheating intelligent detection system provided by an embodiment of the present invention. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0054] The following will clearly and completely describe the technical solutions in the embodiments of the present invention with reference to the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.

[0055] Please refer to Figure 1 , this embodiment provides an electronic scale cheating intelligent detection method, including the following steps:

[0056] Send a conventional weighing instruction to the electronic scale to be measured to make the electronic scale to be measured perform conventional weighing and obtain the initial weighing data;

[0057] Generate a cheating detection instruction based on a preset cheating code and send the cheating detection instruction to the electronic scale to be measured to make the electronic scale to be measured perform cheating weighing and obtain real-time weighing data;

[0058] Obtain a real-time cheating amplitude value based on the initial weighing data and the real-time weighing data;

[0059] Obtain the current amplitude deviation value based on the real-time cheating amplitude value and the preset cheating amplitude table;

[0060] Obtain the cheating probability and cheating degree of the electronic scale to be measured according to the current amplitude deviation value, and realize the detection of cheating of the electronic scale to be measured.

[0061] In this embodiment, the electronic scale to be tested performs cheating weighing according to the conventional weighing instruction and the cheating detection instruction, obtains the initial weighing data and the real-time weighing data, laying a foundation for calculating the real-time cheating amplitude value next. Then, based on the real-time cheating amplitude value and the preset cheating amplitude table, calculations are carried out to obtain the current amplitude deviation value, thereby evaluating the performance of the electronic scale in simulating cheating under the preset cheating code. Then, based on the current amplitude deviation value, the cheating probability and the cheating degree of the electronic scale to be tested are analyzed to judge the possibility of the electronic scale to be tested cheating. Thus, the real-time cheating amplitude value of the electronic scale to be tested can be obtained according to the cheating detection instruction, and further the cheating probability and the cheating degree of the electronic scale can be obtained, realizing the intelligent detection of whether the electronic scale cheats, effectively improving the detection efficiency, and enhancing the detection accuracy. By automating the process of detecting the electronic scale, the function of starting the cheating amplitude detection with one key is realized, reducing manual operation, reducing the risk of introducing errors, and solving the problems of low detection efficiency, easy error and single function existing in the existing electronic scale cheating detection system.

[0062] Further, it also includes:

[0063] Obtain the preset cheating code sequence;

[0064] Generate a cheating detection instruction sequence based on the preset cheating code sequence, and send the cheating detection instruction sequence to the electronic scale to be tested, so that the electronic scale to be tested performs cheating weighing to obtain a real-time weighing data sequence;

[0065] Obtain a real-time cheating amplitude value sequence based on the initial weighing data and the real-time weighing data sequence;

[0066] Obtain a current amplitude deviation value sequence based on the real-time cheating amplitude value sequence and the preset cheating amplitude table;

[0067] Obtain the cheating probability and the cheating degree of the electronic scale to be tested according to the current amplitude deviation value sequence, and realize the detection of the electronic scale to be tested cheating.

[0068] In this embodiment, the preset cheating code sequence provides an instruction basis for simulating different cheating scenarios subsequently. Determining the cheating code to be detected can further carry out cheating detection. The real-time weighing data sequence reflects the weighing performance of the electronic scale to be tested under the action of different preset cheating codes, and is an important basis for judging whether the electronic scale to be tested cheats and the cheating amplitude, providing the original data support for subsequent calculations and analyses. Moreover, the same preset cheating code sequence can be repeatedly input to the electronic scale to be tested, and the real-time weighing data sequence generated each time is recorded. By repeatedly detecting multiple times, multiple groups of real-time weighing data sequences can be obtained. By comprehensively analyzing these data and calculating statistical quantities such as the average value and standard deviation of multiple groups of data, the influence of random errors can be effectively reduced, and the reliability and accuracy of the cheating detection results can be improved.

[0069] Further, it further includes:

[0070] Before performing regular weighing or cheating weighing on the electronic scale to be tested, perform a zeroing and taring operation on the electronic scale to be tested, and the zeroing method is forced zeroing.

[0071] In this embodiment, forced zeroing can force the display value of the electronic scale to be set to zero, ensuring that the electronic scale to be tested starts measuring from an accurate reference state. Through the taring operation, it can ensure that the obtained weighing data only reflects the real weight change of the weighed item, improving the accuracy and reliability of the detection result.

[0072] Further, it further includes:

[0073] Based on the preset cheating code sequence, real-time cheating amplitude value sequence, current amplitude deviation value sequence, and cheating probability, obtain the cheating detection result report of the electronic scale to be tested.

[0074] In this embodiment, the preset cheating code sequence, real-time cheating amplitude value sequence, current amplitude deviation value sequence, and cheating probability are summarized to form a comprehensive data set, providing data support for the cheating detection result report of the electronic scale to be tested, enabling users to understand the cheating situation of the electronic scale from multiple dimensions.

[0075] Further, the obtaining of the real-time cheating amplitude value based on the initial weighing data and the real-time weighing data includes:

[0076]

[0077] Wherein, R represents the real-time cheating amplitude value, W 实时 represents the real-time weighing data, and W 初始 represents the initial weighing data.

[0078] In this embodiment, a method for accurately calculating the real-time cheating amplitude value is provided to quantify the change in the weighing data of the electronic scale to be tested in the cheating state. Only by calculating the real-time cheating amplitude value through this formula can the current amplitude deviation value be further obtained by comparing with the preset cheating amplitude table, so as to determine whether the electronic scale to be tested is cheating and evaluate the degree of cheating, and the intelligent detection of electronic scale cheating can be realized.

[0079] Please refer to Figure 2 , this embodiment provides an intelligent electronic scale cheating detection system, including an initial weighing module, a cheating weighing module, a cheating amplitude calculation module, an amplitude deviation calculation module, and a cheating analysis module, wherein:

[0080] The initial weighing module is used to send a regular weighing instruction to the electronic scale to be tested, so as to make the electronic scale to be tested perform regular weighing and obtain the initial weighing data;

[0081] The cheating weighing module is used to generate a cheating detection instruction based on a preset cheating code, and send the cheating detection instruction to the electronic scale to be tested, so that the electronic scale to be tested performs cheating weighing to obtain real-time weighing data;

[0082] The cheating amplitude calculation module is used to obtain a real-time cheating amplitude value based on the initial weighing data and the real-time weighing data;

[0083] The amplitude deviation calculation module is used to obtain the current amplitude deviation value based on the real-time cheating amplitude value and a preset cheating amplitude table;

[0084] The cheating analysis module is used to obtain the cheating probability and cheating degree of the electronic scale to be tested according to the current amplitude deviation value, so as to realize the detection of cheating of the electronic scale to be tested.

[0085] The intelligent cheating detection system for electronic scales provided in this embodiment has a simple structure. In practical applications, only the cheating weighing module needs to automatically replace the cheating amplitude function key (the cheating amplitude function key contains preset cheating codes M1 - M6) and send detection instructions to the electronic scale to be tested. These detection instructions are used to simulate various situations in the actual weighing process to test the performance of the electronic scale under different conditions. Then, the initial weighing data and real-time weighing data are obtained through the initial weighing module and the cheating weighing module, and the cheating weighing performance of the abstract electronic scale to be tested is converted into specific cheating quantification indicators by using the cheating amplitude calculation module, providing accurate numerical support. Then, the current amplitude deviation value is obtained by comparing the real-time cheating amplitude value of the electronic scale to be tested with the standard value in the preset cheating amplitude table through the amplitude deviation calculation module. Finally, the cheating analysis module comprehensively evaluates the cheating probability and cheating degree of the electronic scale to be tested based on the current amplitude deviation value obtained by the amplitude deviation calculation module, so as to realize the intelligent detection of whether the electronic scale cheats, effectively improving the detection efficiency and enhancing the detection accuracy. The provided intelligent cheating detection system for electronic scales can realize the one-key test function, automatically replace the cheating amplitude function key, record the cheating amplitude corresponding to different keys, and give a complete test result, which not only enriches the system functions, but also provides more powerful technical support for market supervision and law enforcement.

[0086] Furthermore, it further includes:

[0087] The cheating weighing module is further used to obtain a preset cheating code sequence;

[0088] The cheating weighing module is further used to generate a sequence of cheating detection instructions based on the preset cheating code sequence, and send the sequence of cheating detection instructions to the electronic scale to be tested, so that the electronic scale to be tested performs cheating weighing to obtain a sequence of real-time weighing data;

[0089] The cheating amplitude calculation module is further configured to obtain a real-time cheating amplitude value sequence based on the initial weighing data and the real-time weighing data sequence;

[0090] The amplitude deviation calculation module is configured to obtain a current amplitude deviation value sequence based on the real-time cheating amplitude value sequence and a preset cheating amplitude table;

[0091] The cheating analysis module is configured to obtain the cheating probability and the cheating degree of the electronic scale to be measured according to the current amplitude deviation value sequence, so as to realize the detection of cheating of the electronic scale to be measured.

[0092] In this embodiment, the cheating weighing module automatically replaces the preset cheating codes according to the preset cheating code sequence, providing an instruction basis for simulating the cheating weighing conditions of the electronic scale to be measured under different preset cheating codes. The real-time weighing data sequence reflects the weighing performance of the electronic scale to be measured under the action of different preset cheating codes, and is an important basis for judging whether the electronic scale to be measured is cheating and the cheating amplitude, providing the original data support for subsequent calculation and analysis. Moreover, the cheating weighing module can also repeatedly input the same preset cheating code sequence to the electronic scale to be measured, and record the real-time weighing data sequence generated each time. Through repeated detections, multiple groups of real-time weighing data sequences can be obtained. By comprehensively analyzing these data and calculating statistical quantities such as the average value and standard deviation of multiple groups of data, the influence of random errors can be effectively reduced, and the reliability and accuracy of the cheating detection results can be improved.

[0093] Further, an initialization module is further included:

[0094] The initialization module is configured to perform a zeroing and taring operation on the electronic scale to be measured before performing a normal weighing or a cheating weighing on the electronic scale to be measured, and the zeroing method is forced zeroing.

[0095] In this embodiment, the initialization module can, through the forced zeroing operation, forcibly set the display value of the electronic scale to zero, ensuring that the electronic scale to be measured starts measuring from an accurate reference state. Through the taring operation, it is ensured that the obtained weighing data only reflects the real weight change of the weighed item, improving the accuracy and reliability of the detection results.

[0096] Further, a report generation module is further included:

[0097] The report generation module is configured to obtain a cheating detection result report of the electronic scale to be measured based on the preset cheating code sequence, the real-time cheating amplitude value sequence, the current amplitude deviation value sequence, and the cheating probability.

[0098] In this embodiment, the preset cheat code sequence, the real-time cheat amplitude value sequence, the current amplitude deviation value sequence, and the cheating probability are summarized, and a comprehensive data set is formed by the report generation module to provide data support for the cheat detection result report of the electronic scale to be tested, enabling the user to understand the cheating situation of the electronic scale to be tested from multiple dimensions. Further, it helps the user understand the performance of the electronic scale to be tested. Moreover, the report generation module also supports the functions of data export and printing. The user can export the result report to other formats (such as Excel, PDF), or directly print it out. This provides great convenience and flexibility for the user. After obtaining the complete cheat detection result report, the user can perform subsequent processing and analysis according to the actual situation.

[0099] Further, the cheat amplitude calculation module is used to obtain the real-time cheat amplitude value based on the initial weighing data and the real-time weighing data, including:

[0100]

[0101] where R represents the real-time cheat amplitude value, W 实时 represents the real-time weighing data, and W 初始 represents the initial weighing data.

[0102] In this embodiment, the cheat amplitude calculation module provides a way to accurately calculate the real-time cheat amplitude value for the electronic scale cheat intelligent detection system, quantifying the change in the weighing data of the electronic scale to be tested in the cheating state. Only by calculating the real-time cheat amplitude value through this formula can the current amplitude deviation value be further calculated based on the real-time cheat amplitude value and the preset cheat amplitude table in the amplitude deviation calculation module, so as to judge whether the electronic scale to be tested is cheating and evaluate the degree of cheating, and the intelligent detection of electronic scale cheating can be realized.

[0103] This embodiment also includes an operation interface module and a hardware interface module:

[0104] The operation interface module provides a form interface for the user and can start the cheat amplitude detection;

[0105] The hardware interface module provides a physical connection and communication between the system and the electronic scale.

[0106] In this embodiment, the user can interact with the system through this interface, and the user can conveniently perform various operations, such as starting the cheat amplitude detection with one key. The hardware interface module can ensure that the detection instruction can be accurately transmitted to the electronic scale to be tested and receive the response data of the electronic scale to be tested.

[0107] The above is the preferred embodiment of the present invention. It should be noted that for those of ordinary skill in the art, without departing from the principle of the present invention, several improvements and modifications can be made, and these improvements and modifications are also regarded as the protection scope of the present invention.

Claims

1. An intelligent detection method for electronic scale cheating, characterized in that It includes the following steps: Send a regular weighing instruction to the electronic scale to be tested, so that the electronic scale to be tested performs regular weighing to obtain initial weighing data; Generate a cheating detection instruction based on a preset cheating code, and send the cheating detection instruction to the electronic scale to be tested, so that the electronic scale to be tested performs cheating weighing to obtain real-time weighing data; Obtain a real-time cheating amplitude value based on the initial weighing data and the real-time weighing data; Obtain the current amplitude deviation value based on the real-time cheating amplitude value and a preset cheating amplitude table; Obtain the cheating probability and cheating degree of the electronic scale to be tested according to the current amplitude deviation value, and realize the detection of cheating of the electronic scale to be tested.

2. The intelligent detection method for electronic scale cheating according to claim 1, wherein, It also includes: Obtain a preset cheating code sequence; Generate a cheating detection instruction sequence based on the preset cheating code sequence, and send the cheating detection instruction sequence to the electronic scale to be tested, so that the electronic scale to be tested performs cheating weighing to obtain a real-time weighing data sequence; Obtain a real-time cheating amplitude value sequence based on the initial weighing data and the real-time weighing data sequence; Obtain the current amplitude deviation value sequence based on the real-time cheating amplitude value sequence and the preset cheating amplitude table; Obtain the cheating probability and cheating degree of the electronic scale to be tested according to the current amplitude deviation value sequence, and realize the detection of cheating of the electronic scale to be tested.

3. An intelligent detection method for electronic scale cheating according to claim 1, characterized in that, It also includes: Before performing regular weighing or cheating weighing on the electronic scale to be tested, perform a zeroing and taring operation on the electronic scale to be tested, and the zeroing method is forced zeroing.

4. The intelligent detection method for electronic scale cheating according to claim 2, wherein It also includes: Obtain a cheating detection result report of the electronic scale to be tested based on the preset cheating code sequence, the real-time cheating amplitude value sequence, the current amplitude deviation value sequence, and the cheating probability.

5. The intelligent detection method for electronic scale cheating according to claim 1, characterized in that, The obtaining of the real-time cheating amplitude value based on the initial weighing data and the real-time weighing data includes: Among them, R represents the real-time cheating amplitude value, and W 实时 represents the real-time weighing data, and W 初始 represents the initial weighing data.

6. An intelligent detection system for electronic scale cheating, characterized in that, It includes an initial weighing module, a cheating weighing module, a cheating amplitude calculation module, an amplitude deviation calculation module, and a cheating analysis module, where: The initial weighing module is used to send a regular weighing instruction to the electronic scale to be tested, so that the electronic scale to be tested performs regular weighing to obtain initial weighing data; The cheating weighing module is used to generate a cheating detection instruction based on a preset cheating code, and send the cheating detection instruction to the electronic scale to be tested, so that the electronic scale to be tested performs cheating weighing to obtain real-time weighing data; The cheating amplitude calculation module is used to obtain a real-time cheating amplitude value based on the initial weighing data and the real-time weighing data; The amplitude deviation calculation module is used to obtain the current amplitude deviation value based on the real-time cheating amplitude value and a preset cheating amplitude table; The cheating analysis module is used to obtain the cheating probability and cheating degree of the electronic scale to be tested according to the current amplitude deviation value, and realize the detection of cheating of the electronic scale to be tested.

7. An intelligent detection system for electronic scale cheating according to claim 6, characterized in that, It also includes: The cheating weighing module is also used to obtain a preset cheating code sequence; The cheating weighing module is also used to generate a cheating detection instruction sequence based on the preset cheating code sequence, and send the cheating detection instruction sequence to the electronic scale to be tested, so that the electronic scale to be tested performs cheating weighing to obtain a real-time weighing data sequence; The cheating amplitude calculation module is also used to obtain a real-time cheating amplitude value sequence based on the initial weighing data and the real-time weighing data sequence; The amplitude deviation calculation module is used to obtain the current amplitude deviation value sequence based on the real-time cheating amplitude value sequence and the preset cheating amplitude table; The cheating analysis module is used to obtain the cheating probability and cheating degree of the electronic scale to be measured according to the current amplitude deviation value sequence, so as to realize the detection of cheating of the electronic scale to be measured.

8. An intelligent detection system for electronic scale cheating according to claim 6, characterized in that, It further includes an initialization module: The initialization module is used to clear and tare the electronic scale to be measured before normal weighing or cheating weighing of the electronic scale to be measured, and the clearing method is forced clearing.

9. An intelligent detection system for electronic scale cheating according to claim 7, characterized in that, It further includes a report generation module: The report generation module is used to obtain the cheating detection result report of the electronic scale to be measured based on the preset cheating code sequence, the real-time cheating amplitude value sequence, the current amplitude deviation value sequence and the cheating probability.

10. An intelligent detection system for electronic scale cheating according to claim 6, characterized in that, The cheating amplitude calculation module is used to obtain the real-time cheating amplitude value based on the initial weighing data and the real-time weighing data, including: Among them, R represents the real-time cheating amplitude value, and W 实时 represents the real-time weighing data, and W 初始 represents the initial weighing data.