Multi-screen lock status prompt system and method
By designing a multi-screen lock status prompt system, the auxiliary analysis module is used to generate auxiliary solutions and the clock synchronization module to record the lock status, solving the problems of low detection efficiency and poor management reliability in the existing technology, and achieving efficient lock status detection and management.
Patent Information
- Application Number
- CN202111491657.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2021-12-08
- Publication Date
- 2025-09-02
- Estimated Expiration
- 2041-12-08
AI Technical Summary
The existing multi-screen lock status prompts the system to be unable to effectively detect abnormal information, resulting in large data collection and low detection and analysis efficiency, making it difficult to record the lock status and abnormal status, affecting the system management reliability and abnormal processing efficiency.
A multi-screen lock status prompt system is designed, including a status detection module, a central processing module, a status prompt module, anomaly analysis module and a background data module. The auxiliary analysis module is set up to generate auxiliary solutions, combined with the clock synchronization module to generate lock work and abnormal status records, and the lock status is prompted through images and voice.
It reduces the labor intensity of abnormal inspection of staff members, improves the efficiency of abnormal lock processing, and enhances the reliability of system management and the efficiency of state detection and analysis.
Smart Images

Figure CN114385100B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of multi-screen lock management systems, and in particular to a multi-screen lock status prompt system and method. Background Art
[0002] With the continuous development of the information age, people have put forward more advanced application requirements for PCs. Multi-screen display cards are designed for current graphic and image applications, especially for the development, design, editing and control of multiple operating parameters under Windows. They can enable a PC to support multiple VGA monitors, TVs, BSV LCD splicing screens or DVI digital flat-panel displays. They are widely used in monitoring, command, dispatching systems, public security, fire protection, military, meteorological, railway, aviation and other monitoring systems. In order to ensure the tight connection of multi-screen display cards, the connector is fixed in the lock by using a lock. However, the existing multi-screen lock status prompt system cannot perform specific detection data collection for abnormal information. During status detection, all data transmitted by the sensor is collected, thereby increasing the system's data collection volume and reducing the efficiency of status detection and analysis. At the same time, the system can only prompt abnormal locks and it is difficult to record and store the lock's operating status and abnormal status, which affects the subsequent retrieval and analysis of data, thereby affecting the reliability of system management. The system is also unable to analyze and generate auxiliary solutions, thereby increasing the labor intensity of staff for abnormality investigation and affecting the efficiency of abnormality handling. Therefore, it is very necessary to design a multi-screen lock status prompt system and method. Summary of the Invention
[0003] The purpose of the present invention is to provide a multi-screen lock status prompt system and method to solve the problems raised in the above background technology.
[0004] To achieve the above-mentioned purpose, the present invention provides the following technical solution: a multi-screen lock status prompt system, including a status detection module, a central processing module, a status prompt module, an abnormality analysis module and a background data module, the output end of the status detection module respectively controls the input ends connected to the central processing module and the abnormality analysis module, and the output end of the central processing module respectively controls the input ends connected to the status prompt module, the background data module and the abnormality analysis module, the output end of the abnormality analysis module controls the input end connected to the status prompt module, and the output end of the abnormality analysis module controls the input end connected to the background data module, and the output end of the background data module controls the input end connected to the central processing module.
[0005] Preferably, the state detection module is composed of a data receiving module, a feedback instruction module, a state analysis module and a state output module. The output end of the feedback instruction module controls the input end of the data receiving module, and the output end of the data receiving module controls the input ends of the state analysis module and the feedback instruction module respectively. The output end of the state analysis module controls the input end of the state output module.
[0006] Preferably, the status prompt module is composed of a detection receiving module, an abnormality receiving module, a voice interaction module, a display layout module and an image output module. The output ends of the detection receiving module and the abnormality receiving module are both controlled and connected with the input ends of the voice interaction module and the display layout module, and the output end of the display layout module is controlled and connected with the input end of the image output module.
[0007] Preferably, the abnormality analysis module is composed of an abnormality feedback module, a feedback receiving module, an information receiving module, a comparison analysis module, an auxiliary analysis module, an abnormality output module and a visual receiving module. The output end of the abnormality feedback module is controlled to be connected to the input end of the feedback receiving module, and the output end of the feedback receiving module is controlled to be connected to the input end of the comparison analysis module.
[0008] Preferably, the input end of the comparison and analysis module controls the output ends of the visual receiving module and the information receiving module respectively, and the output end of the comparison and analysis module controls the input end of the auxiliary analysis module, the output end of the auxiliary analysis module controls the input end of the abnormal output module, and the input end of the abnormal output module controls the output end of the comparison and analysis module. The comparison and analysis module consists of a lock detection module, a card detection module and a foreign object detection module.
[0009] Preferably, the background data module is composed of an application preparation module, a lock registration module, an information storage module, a clock synchronization module, an operation recording module and an exception recording module. The output end of the lock registration module controls the input end of the information storage module, and the output end of the information storage module controls the input end of the clock synchronization module. The output end of the clock synchronization module controls the input ends of the operation recording module and the exception recording module respectively.
[0010] The multi-screen lock status prompt method includes the following steps: step 1, background establishment; step 2, status detection; step 3, status reminder;
[0011] In the above step 1, first, all the lock information is entered in the lock registration module in the background data module, and then the lock information is transferred to the information storage module for storage. Then, the lock required for work is registered in the application preparation module, and then the application preparation module transfers the lock information to the central processing module.
[0012] In the above step 2, the data receiving module in the state detection module receives the data information transmitted by the sensor tea, and then transmits the data information to the state analysis module. The state analysis module determines the state of the lock based on the data information, and then transmits the lock state to the state output module. The state output module then transmits the lock state to the central processing module;
[0013] In the above step 3, the central processing module determines the state of the lock by combining the lock state and the lock information used. If it is determined to be normally engaged, the lock state and lock information are transmitted to the detection receiving module in the status prompt module, and the lock state and lock information are transmitted to the clock synchronization module. The clock synchronization module generates a lock work record based on the time and stores the lock work record in the operation record module. If it is determined to be abnormally engaged, the lock state and lock information are transmitted to the abnormal analysis module, and the abnormal feedback module transmits the abnormal lock information to the abnormal receiving module. The abnormality receiving module transmits the detection instruction to the data receiving module, and then the data receiving module collects detailed detection data and transmits the detection data to the feedback instruction module. After that, the abnormal feedback module transmits the detection data to the feedback receiving module. At the same time, the visual receiving module retrieves the corresponding visual image according to the abnormal lock information. The information receiving module sends a call application to the central processing module according to the abnormal lock information, and then transmits the call application to the information storage module. The central processing module then transmits the detailed information of the corresponding lock to the information receiving module. Then the information receiving module and the feedback receiving module The receiving module and the visual receiving module respectively transmit the detailed information, detection data and visual image of the corresponding lock port to the comparison and analysis module. Then, the lock detection module, the engagement detection module, and the foreign object detection module respectively perform comparison and analysis based on the detection data. Then, the comparison and analysis results are respectively transmitted to the auxiliary analysis module and the abnormality output module. The auxiliary analysis module then generates an auxiliary solution through analysis and transmits the solution to the abnormality output module. Then, the abnormality output module transmits the comparison and analysis results and the auxiliary solution to the clock synchronization module. The clock synchronization module generates a lock abnormality status record based on the time and stores the lock abnormality status record in the abnormality record module. At the same time, the abnormality output module transmits the comparison and analysis results and the auxiliary solution to the abnormality receiving module. Then, the detection receiving module and the abnormality receiving module respectively transmit the interface status and abnormality analysis to the display layout module. The display layout module generates a multi-screen lock status display diagram and an abnormal lock analysis diagram based on the display template. Then, the image output module displays the multi-screen lock status display diagram and the abnormal lock analysis diagram. At the same time, the received interface status and abnormality analysis are transmitted to the voice interaction module for voice prompts.
[0014] Compared with the prior art, the beneficial effects of the present invention are as follows: the multi-screen lock status prompt system and method generates an auxiliary solution through the set auxiliary analysis module combined with the comparison analysis results, and then the image output module presents the auxiliary solution to the staff, which reduces the labor intensity of the staff's abnormal investigation and improves the efficiency of handling abnormal locks. The detection time is combined with the received lock status through the set clock synchronization module to generate a lock working record and a lock abnormal status record respectively. The lock working record and the lock abnormal status record are then stored by the operation recording module and the abnormal recording module respectively, which is convenient for later retrieval and analysis, thereby improving the reliability of system management. The abnormal lock information is transmitted to the abnormal receiving module through the set abnormal feedback module, and then the abnormal receiving module transmits the detection instruction to the data receiving module. The data receiving module then collects detailed detection data, collects detailed detection data for abnormal status, reduces the amount of data collection during status detection, and thus improves the efficiency of status detection analysis. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 is a system flow chart of the present invention;
[0016] Figure 2 It is a system framework diagram of the present invention;
[0017] Figure 3 is a flow chart of the method of the present invention;
[0018] In the figure: 1. Status detection module; 2. Central processing module; 3. Status prompt module; 4. Abnormal analysis module; 5. Background data module; 11. Data receiving module; 12. Feedback instruction module; 13. Status analysis module; 14. Status output module; 31. Detection receiving module; 32. Abnormal receiving module; 33. Voice interaction module; 34. Display layout module; 35. Image output module; 41. Abnormal feedback module; 42. Feedback receiving module; 43. Information receiving module; 44. Comparison and analysis module; 45. Auxiliary analysis module; 46. Abnormal output module; 47. Visual reception module; 51. Application preparation module; 52. Lock registration module; 53. Information storage module; 54. Clock synchronization module; 55. Operation record module; 56. Abnormal record module; 441. Lock detection module; 442. Engagement detection module; 443. Foreign object detection module. DETAILED DESCRIPTION
[0019] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the 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.
[0020] See also Figure 1-2The present invention provides an embodiment: a multi-screen lock status prompt system, including a status detection module 1, a central processing module 2, a status prompt module 3, an abnormality analysis module 4 and a background data module 5. The output end of the status detection module 1 controls the input ends connected to the central processing module 2 and the abnormality analysis module 4 respectively, and the output end of the central processing module 2 controls the input ends connected to the status prompt module 3, the background data module 5 and the abnormality analysis module 4 respectively. The output end of the abnormality analysis module 4 controls the input end connected to the status prompt module 3, and the output end of the abnormality analysis module 4 controls the input end connected to the background data module 5. The output end of the background data module 5 controls the input end connected to the central processing module 2. The status detection module 1 is composed of a data receiving module 11, The feedback instruction module 12, the state analysis module 13 and the state output module 14 are composed of the output end of the feedback instruction module 12 controlling the input end of the data receiving module 11, and the output end of the data receiving module 11 respectively controls the input end of the connection state analysis module 13 and the feedback instruction module 12, and the output end of the state analysis module 13 controls the input end of the connection state output module 14. The state detection module 1 is provided to facilitate the detection of the locking state of the lock. The state prompt module 3 is composed of a detection receiving module 31, an abnormality receiving module 32, a voice interaction module 33, a display layout module 34 and an image output module 35. The output ends of the detection receiving module 31 and the abnormality receiving module 32 are connected to the voice interaction module 33 and the display layout module 34. The input end of the display typesetting module 34 is controlled and connected, and the output end of the display typesetting module 34 is controlled and connected to the input end of the image output module 35. Through the voice interaction module 33, it is beneficial to combine the detection results for voice prompts, thereby improving the practicality of the system. The abnormality analysis module 4 is composed of an abnormality feedback module 41, a feedback receiving module 42, an information receiving module 43, a comparison analysis module 44, an auxiliary analysis module 45, an abnormality output module 46 and a visual receiving module 47. The output end of the abnormality feedback module 41 is controlled and connected to the input end of the feedback receiving module 42, and the output end of the feedback receiving module 42 is controlled and connected to the input end of the comparison analysis module 44. Through the comparison analysis module 44, it is beneficial to combine the collected detailed data to compare the abnormality of the lock. Analysis, the input end of the comparison and analysis module 44 controls the output ends of the visual receiving module 47 and the information receiving module 43 respectively, and the output end of the comparison and analysis module 44 controls the input end of the auxiliary analysis module 45, the output end of the auxiliary analysis module 45 controls the input end of the abnormality output module 46, and the input end of the abnormality output module 46 controls the output end of the comparison and analysis module 44. The comparison and analysis module 44 is composed of a lock detection module 441, a card detection module 442 and a foreign matter detection module 443. The auxiliary analysis module 45 is set up to combine the comparison and analysis results to generate an auxiliary solution, and then the image output module 35 presents the auxiliary solution to the staff, which reduces the labor intensity of the staff in abnormality investigation.At the same time, the efficiency of handling abnormal locks is improved. The background data module 5 consists of an application preparation module 51, a lock registration module 52, an information storage module 53, a clock synchronization module 54, a running record module 55, and an abnormality record module 56. The output of the lock registration module 52 controls the connection to the input of the information storage module 53, and the output of the information storage module 53 controls the connection to the input of the clock synchronization module 54. The output of the clock synchronization module 54 controls the connection to the input of the running record module 55 and the abnormality record module 56 respectively. All lock information is entered through the set lock registration module 52 and then transmitted to the information storage module 53 for storage, making it easier to access detailed lock information later, thereby improving the reliability of system management.
[0021] See also Figure 3 The present invention provides an embodiment: a multi-screen lock status prompt method, comprising the following steps: step 1, background establishment; step 2, status detection; step 3, status reminder;
[0022] In the above step 1, first, all the lock information is entered in the lock registration module 52 in the background data module 5, and then the lock information is transmitted to the information storage module 53 for storage. Then, the lock required for the work is registered in the application preparation module 51, and then the application preparation module 51 transmits the lock information to the central processing module 2;
[0023] In the above step 2, the data receiving module 11 in the state detection module 1 receives the data information transmitted by the sensor tea, and then transmits the data information to the state analysis module 13. The state analysis module 13 determines the state of the lock based on the data information, and then transmits the lock state to the state output module 14. The state output module 14 then transmits the lock state to the central processing module 2;
[0024] Among them, in the above step three, the central processing module 2 combines the lock state and the lock information used to determine the state of the lock. If it is determined to be normally engaged, the lock state and lock information are transmitted to the detection receiving module 31 in the status prompt module 3, and the lock state and lock information are transmitted to the clock synchronization module 54. The clock synchronization module 54 generates a lock work record based on the time, and stores the lock work record in the operation record module 55. If it is determined to be abnormally engaged, the lock state and lock information are transmitted to the abnormal analysis module 4, and the abnormal feedback module 41 transmits the abnormal lock information to the abnormal receiving module 32. Then the abnormal receiving module Block 32 transmits the detection instruction to the data receiving module 11, and then the data receiving module 11 collects detailed detection data and transmits the detection data to the feedback instruction module 12. Then the abnormal feedback module 41 transmits the detection data to the feedback receiving module 42. At the same time, the visual receiving module 47 retrieves the corresponding visual image according to the abnormal lock information. The information receiving module 43 sends a call application to the central processing module 2 according to the abnormal lock information, and then transmits the call application to the information storage module 53. Then the central processing module 2 transmits the detailed information of the corresponding lock to the information receiving module 43. Then the information receiving module 43 and the feedback receiving module 47 receive the corresponding visual image according to the abnormal lock information. 2 and the visual receiving module 47 respectively transmit the detailed information, detection data and visual image of the corresponding lock to the comparison and analysis module 44, and then the lock detection module 441, the engagement detection module 442, and the foreign matter detection module 443 respectively perform comparison and analysis based on the detection data, and then transmit the comparison and analysis results to the auxiliary analysis module 45 and the abnormality output module 46 respectively. The auxiliary analysis module 45 then generates an auxiliary solution by analysis and transmits the solution to the abnormality output module 46. The abnormality output module 46 then transmits the comparison and analysis results and the auxiliary solution to the clock synchronization module 54, which generates a lock by combining the time. The abnormal status record of the lock is recorded and stored in the abnormal status record module 56. At the same time, the abnormal output module 46 transmits the comparison analysis results and auxiliary solutions to the abnormal receiving module 32. Then the detection receiving module 31 and the abnormal receiving module 32 transmit the interface status and abnormal analysis to the display layout module 34 respectively. The display layout module 34 combines the display template to generate a multi-screen lock status display diagram and an abnormal lock analysis diagram. Subsequently, the image output module 35 displays the multi-screen lock status display diagram and the abnormal lock analysis diagram, and transmits the received interface status and abnormal analysis to the voice interaction module 33 for voice prompts.
[0025] Based on the above, the advantage of the present invention is that when the invention is used, an auxiliary analysis module 45 is set up to combine the comparison analysis results to generate an auxiliary solution, which reduces the labor intensity of the staff's abnormal investigation and improves the efficiency of handling abnormal locks. The detection time is combined with the received lock status through the set clock synchronization module 54 to generate a lock working record and a lock abnormal status record respectively, which are then stored by the operation record module 55 and the abnormal record module 56 respectively, which is convenient for later retrieval and analysis, thereby improving the reliability of system management. The abnormal lock information is transmitted to the abnormal receiving module 32 through the set abnormal feedback module 41, and then the abnormal receiving module 32 transmits the detection instruction to the data receiving module 11, and then the data receiving module 11 collects the detailed detection data of the corresponding lock, reducing the amount of data collection during status detection, thereby improving the efficiency of status detection analysis.
[0026] It will be apparent to those skilled in the art that the present invention is not limited to the details of the exemplary embodiments described above and that the invention can be embodied in other specific forms without departing from the spirit or essential characteristics of the invention. Therefore, the embodiments should be considered in all respects as illustrative and non-restrictive, and the scope of the invention is defined by the appended claims, not the foregoing description, and all variations within the meaning and range of equivalents of the claims are intended to be included therein. Any reference sign in a claim should not be construed as limiting the claim to which it relates.
Claims
1. A multi-screen lock status prompt system, comprising a status detection module (1), a central processing module (2), a status prompt module (3), an abnormality analysis module (4) and a background data module (5), characterized in that: The output end of the state detection module (1) controls the input end of the central processing module (2) and the abnormality analysis module (4) respectively, and the output end of the central processing module (2) controls the input end of the connection state prompt module (3), the background data module (5) and the abnormality analysis module (4) respectively, the output end of the abnormality analysis module (4) controls the input end of the connection state prompt module (3), and the output end of the abnormality analysis module (4) controls the input end of the connection background data module (5), and the output end of the background data module (5) controls the input end of the connection central processing module (2); The multi-screen lock status prompt method includes the following steps: step 1, background establishment; step 2, status detection; step 3, status reminder; the characteristics are: In the above step 1, firstly, all the lock information is entered in the lock registration module (52) in the background data module (5), and then the lock information is transmitted to the information storage module (53) for storage, and then the lock required for use in the work is registered in the application preparation module (51), and then the application preparation module (51) transmits the lock information to the central processing module (2); In the above step 2, the data receiving module (11) in the state detection module (1) receives the data information transmitted by the sensor, and then transmits the data information to the state analysis module (13). The state analysis module (13) determines the state of the lock according to the data information, and then transmits the lock state to the state output module (14). The state output module (14) then transmits the lock state to the central processing module (2); In the above step 3, the central processing module (2) determines the state of the lock by combining the lock state and the lock information used. If it is determined that the lock is normally engaged, the lock state and the lock information are transmitted to the detection receiving module (31) in the status prompt module (3), and the lock state and the lock information are transmitted to the clock synchronization module (54). The clock synchronization module (54) generates a lock work record based on the time, and stores the lock work record in the operation record module (55). If it is determined that the lock is abnormally engaged, the lock state and the lock information are transmitted to the abnormal analysis module (4), and the abnormal feedback module (41) transmits the abnormal lock information to the abnormal receiving module (32). Then the abnormal receiving module (32) ) transmits the detection instruction to the data receiving module (11), and then the data receiving module (11) collects detailed detection data and transmits the detection data to the feedback instruction module (12), and then the abnormal feedback module (41) transmits the detection data to the feedback receiving module (42), and at the same time the visual receiving module (47) retrieves the corresponding visual image according to the abnormal lock information, and the information receiving module (43) sends a call application to the central processing module (2) according to the abnormal lock information, and then transmits the call application to the information storage module (53), and then the central processing module (2) transmits the detailed information of the corresponding lock to the information receiving module (43), and then the information receiving module (43) and the feedback receiving module (42) and the visual receiving module (47) transmit the detailed information, detection data and visual image of the corresponding lock port to the comparison and analysis module (44), and then the lock detection module (441), the engagement detection module (442) and the foreign matter detection module (443) respectively perform comparison and analysis in combination with the detection data, and then transmit the comparison and analysis results to the auxiliary analysis module (45) and the abnormality output module (46), respectively. The auxiliary analysis module (45) then generates an auxiliary solution through analysis and transmits the solution to the abnormality output module (46), and then the abnormality output module (46) transmits the comparison and analysis results and the auxiliary solution to the clock synchronization module (54), which is combined with the clock synchronization module (54) to generate the auxiliary solution. The abnormal state record of the lock buckle is generated and stored in the abnormal state record module (56). At the same time, the abnormal output module (46) transmits the comparison analysis result and the auxiliary solution to the abnormal receiving module (32). Then, the detection receiving module (31) and the abnormal receiving module (32) transmit the interface state and the abnormal analysis to the display layout module (34). The display layout module (34) generates a state display diagram of the multi-screen lock buckle and an analysis diagram of the abnormal lock buckle in combination with the display template. Then, the image output module (35) displays the state display diagram of the multi-screen lock buckle and the analysis diagram of the abnormal lock buckle. At the same time, the received interface state and abnormal analysis are transmitted to the voice interaction module (33) for voice prompting.
2. The multi-screen lock status prompt system according to claim 1, characterized in that: The state detection module (1) is composed of a data receiving module (11), a feedback instruction module (12), a state analysis module (13) and a state output module (14); the output end of the feedback instruction module (12) controls the input end of the data receiving module (11), and the output end of the data receiving module (11) controls the input ends of the state analysis module (13) and the feedback instruction module (12), respectively; and the output end of the state analysis module (13) controls the input end of the state output module (14).
3. The multi-screen lock status prompt system according to claim 1, characterized in that: The status prompt module (3) is composed of a detection receiving module (31), an abnormality receiving module (32), a voice interaction module (33), a display typesetting module (34) and an image output module (35). The output ends of the detection receiving module (31) and the abnormality receiving module (32) are both controlled and connected to the input ends of the voice interaction module (33) and the display typesetting module (34), and the output end of the display typesetting module (34) is controlled and connected to the input end of the image output module (35).
4. The multi-screen lock status prompt system according to claim 1, characterized in that: The abnormality analysis module (4) is composed of an abnormality feedback module (41), a feedback receiving module (42), an information receiving module (43), a comparison analysis module (44), an auxiliary analysis module (45), an abnormality output module (46) and a visual receiving module (47). The output end of the abnormality feedback module (41) is controlled to be connected to the input end of the feedback receiving module (42), and the output end of the feedback receiving module (42) is controlled to be connected to the input end of the comparison analysis module (44).
5. The multi-screen lock status prompt system according to claim 4, characterized in that: The input end of the comparison and analysis module (44) controls the output end of the visual receiving module (47) and the information receiving module (43), and the output end of the comparison and analysis module (44) controls the input end of the auxiliary analysis module (45). The output end of the auxiliary analysis module (45) controls the input end of the abnormality output module (46), and the input end of the abnormality output module (46) controls the output end of the comparison and analysis module (44). The comparison and analysis module (44) is composed of a lock detection module (441), a locking detection module (442) and a foreign matter detection module (443).
6. The multi-screen lock status prompt system according to claim 1, characterized in that: The background data module (5) is composed of an application preparation module (51), a lock registration module (52), an information storage module (53), a clock synchronization module (54), an operation record module (55) and an abnormality record module (56). The output end of the lock registration module (52) controls the input end of the information storage module (53), and the output end of the information storage module (53) controls the input end of the clock synchronization module (54). The output end of the clock synchronization module (54) controls the input ends of the operation record module (55) and the abnormality record module (56).
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