Storage product safety test system based on human body induction
By using a human-sensor-based storage product security testing system, the system automatically identifies testers and controls the testing process, solving the problem of low efficiency in manual monitoring and improving the security and efficiency of storage product testing.
Patent Information
- Application Number
- CN202423117322.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-17
- Publication Date
- 2025-11-07
- Estimated Expiration
- 2034-12-17
AI Technical Summary
The current storage product testing relies on manual monitoring, which is inefficient, makes it difficult to capture potential problems in real time, and poses risks of equipment damage and security incidents when no one is supervising.
A human body sensing-based storage product security testing system is adopted. The system acquires the test personnel information through a human body sensing module, and the host computer automatically controls the testing process based on the human body information. The system includes a clock timer and a central processing module to ensure safety and automated management.
It enables automated monitoring of the testing process, improves testing security and efficiency, reduces human intervention, ensures that testers are always present, and avoids the risks of being unsupervised.
Smart Images

Figure CN223526702U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of storage, in particular to a storage product safety test system based on human body sensing. BACKGROUND
[0002] The reliability test of storage products covers some rigorous test items, such as high-temperature and high-pressure test, overcurrent test, and overvoltage test, etc. These test items involve potential risk factors such as high temperature and high heat, which pose a severe challenge to the stability of the test environment and equipment. In order to ensure the safety of the test process, the test personnel usually need to closely monitor the whole process in order to discover and respond to possible abnormal situations in the first time, such as equipment overheating, current overload or voltage abnormal fluctuation, etc., so as to effectively prevent the equipment from being damaged due to bearing extreme conditions, and avoid any potential safety hazards that may cause safety accidents.
[0003] However, the current test mode which highly depends on manual monitoring has obvious drawbacks. On the one hand, manual monitoring is inefficient and difficult to achieve real-time and accurate capture and analysis of test data, which may miss the timely discovery and processing of potential problems. On the other hand, when the test personnel temporarily leave the monitoring post for some reason, the test environment is in an unattended state, which undoubtedly increases the risk of equipment damage and even safety accidents, and poses a potential threat to the smooth progress of the test work. CONTENT OF THE UTILITY MODEL
[0004] The utility model aims at providing a storage product safety test system based on human body sensing, which aims to solve the problem of safety hazards when the staff is not present during the test of storage products.
[0005] The utility model discloses a technical scheme which is:
[0006] A storage product safety test system based on human body sensing, comprising:
[0007] A human body sensing module is used to obtain human body information when the test personnel arrives at the monitoring area;
[0008] A test module comprises a test board, and a test execution module is arranged on the test board and used to perform a test task on a storage product to be tested loaded into a test station;
[0009] A test host computer is connected with the test module, used to identify the human body information, and send a test instruction to the test module according to the identified human body information, so as to control the test module to perform a related test item.
[0010] As preferably, the test host computer comprises a human-computer interaction module, which is configured to provide an operation interface for a user to input an operation instruction according to a recognition result of whether a test personnel arrives at the monitoring area.
[0011] As preferably, the test host computer further comprises a clock timer and a central processing module, the clock timer is configured to set a clock period, and the central processing module is configured to send a control instruction of pausing or terminating the test to the test module according to a recognition result that no test personnel arrives at the monitoring area within a preset clock period.
[0012] As preferably, the test execution module comprises a high-temperature and high-pressure test module, an overcurrent test module and an overvoltage test module, which are arranged in the test board in a regionally spaced manner.
[0013] As preferably, the test execution module is connected with the central processing module, and the test execution module is configured to output test related information to the central processing module after completing all tests of the storage product.
[0014] As preferably, the central processing module is connected with the human-computer interaction module 31, and the central processing module is further configured to sort the test related information and output to the human-computer interaction module 31.
[0015] As preferably, the human body sensing module comprises a human body sensing unit and a communication unit, the human body sensing unit is configured to sense human body information, and the communication unit is configured to communicate with the test host computer.
[0016] As preferably, the human body sensing unit comprises at least one of the following types: an infrared recognition sensor, a camera, a body temperature sensor, a breath detection sensor and a gravity sensing sensor.
[0017] The storage product safety test system based on human body sensing has the beneficial effects that: through automatic recognition and information collection of the test personnel entering the monitoring area by the human body, the control instruction issued by the test host computer is regulated and controlled, thereby avoiding the problem that the staff tests the risky items of the storage product when the staff is not in the monitoring area, and the safety of the test system is enhanced; through the human body sensing technology, the automatic monitoring and management of the test process are realized, manual operation is not needed, human intervention is reduced, and the safety and efficiency of the test are improved. BRIEF DESCRIPTION OF DRAWINGS
[0018] Figure 1 is a module schematic view of an embodiment of the storage product safety test system based on human body sensing of the utility model;
[0019] Figure 2 is a structure schematic view of different modules of the storage product safety test system based on human body induction.
[0020] BRIEF DESCRIPTION OF DRAWINGS
[0021] Reference Name Reference Name 1 Human body induction module 11 Human body induction unit 12 Communication unit 2 Test module 21 Test board 211 Test execution module 221 Test board 3 Test host computer 31 Human-computer interaction module 32 Clock timer 33 Central processing module 2111 High temperature and high pressure module 2112 Overcurrent test module 2113 Overvoltage test module DETAILED DESCRIPTION
[0022] The scheme in the embodiments of the present application will be described clearly and completely below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments of the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.
[0023] It should be noted that all directional indications (such as up, down, left, right, front, back, etc.) in the embodiments of the present application are only used to explain the relative positional relationship, movement condition, etc. between components in a certain specific posture (as shown in the drawings), and if the specific posture changes, the directional indications also change accordingly.
[0024] It should also be noted that when an element is referred to as being "fixed to" or "set on" another element, it can be directly on the other element or can have a middle element. When an element is referred to as being "connected" to another element, it can be directly connected to the other element or can have a middle element.
[0025] In addition, the description of "first", "second" and the like in the present application is only for the purpose of description, and cannot be understood as indicating or implying the relative importance of the indicated technical features or implicitly indicating the number of the indicated technical features. Therefore, the features limited by "first", "second" can explicitly or implicitly include at least one of the features. In addition, the technical solutions of each embodiment can be combined with each other, but it must be based on the realization of the person skilled in the art, and when the combination of technical solutions appears contradictory or unachievable, it should be considered that the combination of technical solutions does not exist, and is not within the protection scope required by the present application.
[0026] The present application provides a storage product safety test system based on human body induction, referring to Figure 1 The storage product safety test system based on human body induction comprises:
[0027] A human body induction module 1 is used to obtain human body information when a test personnel arrives at a monitoring area.
[0028] The test module 2 comprises a test board 21, and a test execution module 211 is arranged on the test board 21, and is used for performing a test task on a storage product to be tested loaded to a test station.
[0029] The test host computer 3 is connected with the test module 2, is used for identifying the human body information, and sends a test instruction to the test module 2 according to the identified human body information, so as to control the test module 2 to perform a related test item.
[0030] As shown in Figure 1 In the embodiment of the present application, the storage product safety test system aims to realize effective monitoring and management of the test process of the storage product through intelligent human body sensing technology. In the embodiment of the present application, the sensor used for human body sensing can be one of an infrared recognition sensor, a camera, a body temperature sensor, a breath detection sensor and a gravity sensing sensor. The simplest one only needs to confirm that the staff is located in the monitoring area.
[0031] The human body sensing module 1 is arranged in the monitoring area, and is used for collecting information of the monitoring area. When the test personnel arrives at the monitoring area, the sensor in the human body sensing module 1 can obtain the human body information of the staff, so as to provide accurate test personnel information for the storage product safety test system, and ensure that the test task can be performed according to the preset process. The test module 2 comprises a test board 21, and a test execution module 211 is arranged on the test board 21, and is used for performing a test task on a storage product to be tested loaded to a test station. The test host computer 3 is connected with the test module 2, the test host computer 3 receives the human body information obtained by the human body sensing module 1 and identifies the human body information. According to the identified human body information, a corresponding test instruction can be sent to the test module 2, so as to control the test module 2 to perform a related test item, realize automatic management of the test process, and the test personnel does not need to manually start or stop the test.
[0032] In some embodiments, with reference to Figure 2, the test host computer 3 comprises a human-computer interaction module 31, which is integrated in the test host computer 3. According to the identification result of the test personnel arriving at the monitoring area, an operation interface is provided to the user, and the user is allowed to input operation instructions so as to finely control or adjust the test process. That is, the test host computer 3 will show an operation interface to the user through the human-computer interaction module 31. When the test personnel enters the monitoring area and the human body information is acquired by the human body sensing module 1, the test host computer 3 will identify the human body information, and according to the identified human body information, the test instruction is unlocked or locked. The test instruction is used to control the test module 2 to perform a specific test item. The introduction of the human-computer interaction module 31 enables the test personnel to perform more flexible operation and control during the test process, and improves the flexibility and individuality of the test. At the same time, the test result or test state is also displayed through the operation interface, which is also helpful for the test personnel to understand the test progress in time and improve the test efficiency.
[0033] Further, the test host computer 3 further comprises a clock timer 32 and a central processing module 33, which are also integrated in the test host computer 3. The clock timer 32 is used to set a clock period, that is, a specific time interval, to provide a time reference for the system, which is used to judge whether the test personnel enters the monitoring area within the preset time period. The central processing module 33 sends a control instruction of pausing or terminating the test to the test module 2 according to the identification result that no test personnel arrives at the monitoring area within the preset clock period, so as to ensure that the system can automatically pause or terminate the test when there is no test personnel operation, and avoid the possible accidental and unnecessary test process when there is no one. The introduction of the clock timer 32 and the central processing module 33 enables the system to automatically judge the operation state of the test personnel, and automatically pause or terminate the test when there is no operation, thereby improving the safety of the system.
[0034] In some embodiments, with reference to Figure 2, the test execution module 211 is further refined to include a high temperature and high pressure test module 2111, an overcurrent test module 2112, and an overvoltage test module 2113, which are arranged in separate regions on the test board 21 to ensure that each module can be tested independently and safely. The high temperature and high pressure test module 2111 is used to simulate the working conditions of storage products in a high temperature and high pressure environment, to detect their performance and stability under extreme conditions; the overcurrent test module 2112 is used to test the performance of storage products when the current exceeds the normal working current, to evaluate their overcurrent protection capability and circuit safety; the overvoltage test module 2113 is used to test the performance of storage products when the voltage exceeds the normal working voltage, to detect their overvoltage protection mechanism and circuit voltage resistance. When the test personnel enter the monitoring area and are recognized by the human body sensing module 1, the test host computer 3 will send corresponding test instructions to the test execution module 211 through the test module 2 according to the preset test process. After receiving the instructions, the test execution module 211 will activate the corresponding high temperature and high pressure test module 2111, overcurrent test module 2112, or overvoltage test module 2113 according to the test instruction requirements, to test the storage products loaded on the test station. The separate arrangement of these modules ensures the safety and independence of the test, and avoids interference between different tests.
[0035] In some embodiments, with reference to Figure 2 , the test execution module 211 is connected to the central processing module 33 through a data communication interface, and both parties follow a predetermined communication protocol for data exchange to ensure accurate transmission of information. After completing all test tasks for the storage products, the test execution module 211 will automatically output test-related information to the central processing module 33. The test-related information content includes but is not limited to test results (pass / fail), test data (such as temperature, pressure, current, voltage, etc.), test time, test personnel information, etc. The connection between the test execution module 211 and the central processing module 33 and the output of test-related information enable the system to record and analyze test data in real time, improving the accuracy and traceability of the test. Moreover, the central processing module 33 can further process and analyze the test data to generate detailed test reports, providing strong support for product quality control and improvement, and helping to improve the automation and intelligence level of the test system and reduce the workload of the test personnel.
[0036] Further, the central processing module 33 is connected with the human-computer interaction module 31 through an internal bus, and both sides exchange data in accordance with a predetermined communication protocol to ensure accurate transmission of information. After receiving the test-related information output by the test execution module 211, the central processing module 33 will further process and arrange, such as data screening, format conversion, result analysis, etc. The arranged test-related information includes but is not limited to test report, test data chart, test result summary, etc. and the central processing module 33 will display the arranged test-related information to the user through the human-computer interaction module 31, and the user can view and analyze the test results through the user interface on the human-computer interaction module 31.
[0037] In some embodiments, with reference to Figure 2 It can be seen that the human body sensing module 1 includes a human body sensing unit 11 and a communication unit 12. The human body sensing unit 11 is part of the human body sensing module 1 for detecting and identifying the human body information of the test personnel. It uses infrared sensors, cameras, pressure sensors or other biometric identification technologies to sense the presence of the test personnel in a non-contact or contact manner, which can be used to confirm whether the test personnel has entered the monitoring area, thereby triggering the judgment of the test host computer 3 whether to perform risk testing. The communication unit 12 is responsible for data transmission and communication between the human body sensing unit 11 and the test host computer 3, and is used to timely transmit the information detected by the human body sensing unit 11 to the test host computer 3, so that the test host computer 3 makes corresponding reactions or adjustments according to these information.
[0038] Based on the storage product safety test system in the above embodiments, during the test process, the workflow is as follows: when the test personnel enters the monitoring area, the human body sensing unit 11 will sense the presence of the human body and generate a corresponding sensing signal. After receiving the sensing signal, the communication unit 12 will convert it into a data format suitable for transmission and send it to the test host computer 3 through a predetermined communication protocol. After receiving the signal sent by the communication unit 12, the test host computer 3 will judge that the test personnel has been positioned and can choose to perform the preset test process.
[0039] After the test process is started, the test host computer 3 will send test instructions to the test execution module 211 through the test module 2. The test execution module 211 will test the storage product according to the instructions. After the test is completed, the test execution module 211 will output the test results to the central processing module 33. After receiving the test-related information, the central processing module 33 will process, analyze and arrange the data to generate detailed test reports and test results. Then, the central processing module 33 will output the arranged test-related information to the human-computer interaction module 31, and the user can view the test results and analysis reports in real time through the user interface of the human-computer interaction module 31.
[0040] If no new test personnel enters the monitoring area within a preset clock cycle, the central processing module 33 sends a control instruction to the test module 2 to pause or terminate the test according to the judgment result.
[0041] In summary, the application provides a storage product safety test system based on human body sensing. The automatic identification and information collection of the test personnel entering the monitoring area by the human body realize the unlocking or locking of the control instruction sent by the test host computer 3, thereby avoiding the problem that the staff tests the risky items of the storage product when not in the monitoring area. The system can automatically start the test process without manual operation, reduces human intervention, and improves the safety and efficiency of the test. The clock timer 32 and the central processing module 33 monitor the activity of the test personnel within a preset clock cycle. If no test personnel arrives, a control instruction to pause or terminate the test is automatically sent, further ensuring that the staff needs to be in the monitoring area during the risk test. The test execution module 211 includes a high-temperature and high-pressure test module 2111, an overcurrent test module 2112, and an overvoltage test module 2113. These modules are arranged in a region on the test board 21, which can meet the safety performance test requirements of the storage product and ensure the accuracy and reliability of the test results. After completing the test, the test execution module 211 can output test-related information to the central processing module 33. The central processing module 33 then outputs the information to the human-computer interaction module 31 after processing, realizing real-time feedback of the test results and facilitating the test personnel to understand and analyze the test results in a timely manner.
[0042] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the application, and are not intended to limit the scope of protection of the application. Although the application has been described in detail with reference to the preferred embodiments, those skilled in the art should understand that the technical solutions of the application can be modified or replaced by equivalents without departing from the essence and scope of the technical solutions of the application.
Claims
1. A human body induction based storage product safety testing system, characterized in that, The application relates to a human body sensing module, a test module and a test host computer. The application relates to a human body sensing module, a test module and a test host computer. The application relates to a human body sensing module, a test module and a test host computer. The application relates to a human body sensing module, a test module and a test host computer.
2. The body induction based stored product security testing system of claim 1, wherein, The application relates to a human body sensing module, a test module and a test host computer.
3. The body induction based stored product security testing system of claim 2, wherein, The application relates to a human body sensing module, a test module and a test host computer.
4. The body induction based stored product security testing system of claim 3, wherein, The application relates to a human body sensing module, a test module and a test host computer.
5. The body induction based stored product security testing system of claim 3, wherein, The application relates to a human body sensing module, a test module and a test host computer.
6. The body induction based stored product security testing system of claim 5, wherein, The application relates to a human body sensing module, a test module and a test host computer.
7. The body induction based stored product security testing system of claim 1, wherein, The application relates to a human body sensing module, a test module and a test host computer.
8. The body induction based stored product security testing system of claim 7, wherein, The application relates to a human body sensing module, a test module and a test host computer. The application relates to a human body sensing module, a test module and a test host computer. The application relates to a human body sensing module, a test module and a test host computer. The application relates to a human body sensing module, a test module and a test host computer. The application relates to a human body sensing module, a test module and a test host computer. The application relates to a human body sensing module, a test module and a test host computer. The application relates to a human body sensing module, a test module and a test host computer. The application relates to a human body sensing module, a test module and a test host computer. The application relates to a human body sensing module, a test module and a test host computer. The application relates to a human body sensing module, a test module and a test host computer. The application relates to a human body sensing module, a test module and a test host computer. The application relates to a human body sensing module, a test module and a test host computer. The application relates to a human body sensing module, a test module and a test host computer. The application relates to a human body sensing module, a test module and a test host computer. The application relates to a human body sensing module, a test module and a test host computer. The application relates to a human body sensing module, a test module and a test host computer. The application relates to a human body sensing module, a test module and a test host computer. The application relates to a human body sensing module, a test module and a test host computer. The application relates to a human body sensing module, a test module and a test host computer. The application relates to a human body sensing module, a test module and a test host computer. The application relates to a human body sensing module, a test module and a test host computer. The application relates to a human body sensing module, a test module and a test host computer. The application relates to a human body sensing module, a test module and a test host computer. The application relates to a human body sensing module, a test module and a test host computer. The application relates to a human body sensing module, a test module and a test host computer. The application relates to a human body sensing module, a test module and a test host computer. The application relates to a human body sensing module, a test module and a test host computer. The application relates to a human body sensing module, a test module and a test host computer. The application relates to a human body sensing module, a test module and a test host computer. The application relates to a human body sensing module, a test module and a test host computer. The application relates to a human body sensing module, a test module and a test host computer. The application relates to a human body sensing module, a test module and a test host computer. The application relates to a human body sensing module, a test module and a test host computer. The application relates to a human body sensing module, a test module and a test host computer. The application relates to a human body sensing module, a test module and a test host computer. The application relates to a human body sensing module, a test module and a test host computer. The application relates to a human body sensing module, a test module and a test host computer. The application relates to a human body sensing module, a test module and a test host computer. The application relates to a human body sensing module, a test module and a test host computer. The application relates to a human body sensing module, a test module and a test host computer. The application relates to a human body sensing module, a test module and a test host computer. The application relates to a human body sensing module, a test module and a test host computer. The application relates to a human body sensing module,