Vehicle key cabinet based on driver health examination and using method thereof
Through the multimodal verification and health detection module combined with the vehicle key cabinet of the key sensing module, the problems of manual operation errors and insufficient health monitoring are solved, the safety and health of key management are achieved, and the risk of drunk driving is eliminated.
Patent Information
- Application Number
- CN202510432483.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-08
- Publication Date
- 2025-07-08
AI Technical Summary
In the management of existing vehicle keys, there are manual operations that are prone to missed recordings and missed copies, paper records are prone to damage and loss, lack of driver health status monitoring, and it is difficult to prevent dangerous driving behaviors such as drunk driving.
The multi-modal verification module is used for identity verification, the health detection module is integrated for physiological indicator monitoring, the key sensing module is used for automatic key control, and the RFID-bound key and Hall sensor are used for real-time monitoring.
Effectively prevent key embezzlement and theft, monitor drivers' health status in real time, eliminate drunk driving and fatigue driving, traceable operation, and realize automated management of key status and abnormal alarms.
Smart Images

Figure CN120279634A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of vehicle management equipment, and particularly to a vehicle key cabinet based on driver health examination and its usage method. Background Art
[0002] In the existing vehicle key management process, there are various problems in manual management. For example, the issuance and collection of keys require manual control, and after the keys are retrieved or returned, manual paper records need to be filled out. Inevitably, situations such as key omission and wrong issuance will occur in this process. At the same time, regarding the access to vehicle keys, the health of the driver is also particularly important. Drunk driving is a very important issue at the present stage. In case of drunk driving, it will cause immeasurable losses to the enterprise.
[0003] The current vehicle key management mainly adopts the manual registration mode, and there are the following technical defects:
[0004] The key issuance / return depends on manual operation, and human errors such as omission and wrong issuance are likely to occur;
[0005] Paper records are easily damaged and lost, and it is difficult to trace the usage status of keys in real time;
[0006] There is a lack of a driver health status monitoring mechanism, and it is difficult to prevent dangerous driving behaviors such as drunk driving in advance.
[0007] Therefore, the present application proposes a vehicle key cabinet based on driver health examination and its usage method. Summary of the Invention
[0008] Aiming at the deficiencies of the prior art, the present invention provides a vehicle key cabinet based on driver health examination and its usage method, which solves the problems that the key issuance / return depends on manual operation, and human errors such as omission and wrong issuance are likely to occur; paper records are easily damaged and lost, and it is difficult to trace the usage status of keys in real time; there is a lack of a driver health status monitoring mechanism, and it is difficult to prevent dangerous driving behaviors such as drunk driving in advance.
[0009] To achieve the above purposes, the present invention is realized through the following technical solutions: A vehicle key cabinet based on driver health examination, comprising:
[0010] A vehicle key cabinet unit, which includes:
[0011] A key cabinet main body;
[0012] Key placement grids, which are optionally opened on the front of the key cabinet main body, and the interior of the key placement grids is used for placing vehicle keys;
[0013] A touch operation screen, which is installed on the front of the key cabinet main body;
[0014] A multimodal verification module, which is installed on the front of the key cabinet body and is used for verifying the identity of the driver;
[0015] A health detection module, which is installed on the front of the key cabinet body and is used for detecting the health status of the driver;
[0016] A key sensing module, which is installed inside the key placement grid and is used for sensing whether the key is in place.
[0017] Preferably, the key placement grid includes:
[0018] A placement cavity, which is opened on the front of the key cabinet body;
[0019] A sealing door, which is rotatably placed on the front of the placement cavity, and an electronic lock is provided between the sealing door and the inner wall of the placement cavity;
[0020] A placement seat, which is arranged inside the placement cavity.
[0021] Preferably, a key slot is opened on the front of the placement seat, the key slot is used for inserting the vehicle key, and the key sensing module is arranged in the key slot.
[0022] Preferably, a slide rail is fixedly installed on the inner wall of the placement cavity, a slide bar is slidably arranged on the slide rail, the slide bar is fixedly connected to the placement seat, and a handle is fixedly connected to the end of the slide bar.
[0023] Preferably, the multimodal verification module consists of an integrated live detection face machine, fingerprint and card recognition sensors.
[0024] Preferably, the health detection module includes:
[0025] An infrared thermometer, which is embedded in the front of the key cabinet body and is used for detecting the body temperature of the driver;
[0026] An electrochemical alcohol sensor, which is installed on the front of the key cabinet body and is used for detecting the alcohol content in the driver's body;
[0027] A sphygmomanometer, which is placed on the front of the key cabinet body and is used for detecting the blood pressure of the driver.
[0028] Preferably, a placement table is fixedly installed on the front of the key cabinet body, a receiving groove is opened on the front of the key cabinet body, and the sphygmomanometer is placed between the placement table and the receiving groove.
[0029] Preferably, the key sensing module is set as a Hall sensor, and each vehicle key is bound with a unique RFID chip, and the Hall sensor detects the RFID chip in the vehicle key to realize the identification of the in-place state of the vehicle key.
[0030] A method for using a vehicle key cabinet based on driver health check, the method comprising the following steps:
[0031] Step 1, authentication request: The driver initiates an authentication request by touching the operation screen. The operation screen sends an authentication instruction to the multi-modal verification module. Facial recognition is preferentially used, and fingerprint and card verification are automatically switched in case of failure. The multi-modal verification module sends the verification result to the operation screen. If the verification is passed, the next step is carried out; otherwise, it returns to the authentication request.
[0032] Step 2, start blood pressure detection: The operation screen sends a blood pressure detection instruction to the sphygmomanometer. The driver can then measure blood pressure using the sphygmomanometer. The sphygmomanometer transmits the detection data to the operation screen in real time. If the blood pressure detection is normal, the next step is carried out; otherwise, a blood pressure abnormality alarm is given and the process is terminated.
[0033] Step 3, start alcohol detection: The operation screen sends an alcohol detection instruction to the electro-chemical alcohol sensor. The driver can then detect the alcohol content in the human body using the electro-chemical alcohol sensor. The electro-chemical alcohol sensor transmits the detection data to the operation screen in real time. If the alcohol content in the body is less than 0.02%, the next step is carried out; otherwise, a drunk driving warning is given and a no-entry record is made.
[0034] Step 4, start body temperature detection: The operation screen sends a body temperature detection instruction to the infrared thermometer. The driver can then detect the body temperature using the infrared thermometer. The infrared thermometer transmits the detection data to the operation screen in real time. If the body temperature is between 36 - 37.5 °C, the next step is carried out; otherwise, a body temperature abnormality alarm is given and medical advice is provided.
[0035] Step 5, allow opening of the key cabinet: The operation screen opens the electronic lock of the sealed door of the corresponding key placement compartment. The driver can then take out the vehicle key inserted in the key slot. At this time, the key sensing module records the vehicle key removal time and sends the data to the operation screen. If the sealed door cannot be opened, a cabinet door abnormality alarm is issued.
[0036] The present invention discloses a vehicle key cabinet based on driver health check and its using method, and the beneficial effects thereof are as follows:
[0037] 1. The vehicle key cabinet based on driver health check uses a multi-modal verification module for three-modal redundant verification of face, fingerprint, and card, effectively preventing security risks such as misappropriation and theft, with a high recognition accuracy. It uses a health detection module for real-time monitoring of the health status, integrating an infrared thermometer, an electrochemical alcohol sensor, and a sphygmomanometer, eliminating dangerous driving behaviors such as drunk driving and fatigue driving from the source of physiological indicators. At the same time, the entire operation process is traceable, and the touch operation screen records a complete operation log including time, personnel, and health data. Moreover, it uses a key sensing module for automated key control, and the RFID-bound key cooperates with a Hall sensor to achieve real-time monitoring of the key status, automatically triggering an alarm in case of non-return and abnormal removal.
[0038] 2. The vehicle key cabinet based on driver health check uses the set slide rails and slide bars, in cooperation with the handle fixedly connected to the end of the slide bar, to facilitate pulling out the placement seat outward, and further facilitate the taking and placing of the vehicle keys inserted into the key slots. BRIEF DESCRIPTION OF THE DRAWINGS
[0039] In order to more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the following will briefly introduce the drawings required for the description of the embodiments or the prior art. Obviously, the following drawings are only some embodiments of the present invention. For those of ordinary skill in the art, other drawings can be obtained based on these drawings without creative efforts.
[0040] Figure 1 Schematic diagram of the overall structure of the present invention;
[0041] Figure 2 Schematic diagram of a partial structure of the present invention;
[0042] Figure 3 Schematic diagram of the structure of the key cabinet body of the present invention;
[0043] Figure 4 Schematic diagram of the placement cavity and the placement seat of the present invention;
[0044] Figure 5 Schematic diagram of the placement seat and the slide rails of the present invention;
[0045] Figure 6 Schematic diagram of the architecture composition of the present invention;
[0046] Figure 7 Flowchart of the usage method of the present invention.
[0047] In the figure: 1. Vehicle key cabinet unit; 11. Key cabinet main body; 12. Key placement grid; 121. Placement cavity; 122. Sealing door; 123. Placement seat; 124. Key slot; 125. Slide rail; 126. Slide bar; 13. Placement table; 14. Accommodation groove; 2. Touch operation screen; 3. Multimodal verification module; 4. Health detection module; 41. Infrared thermometer; 42. Electrochemical alcohol sensor; 43. Sphygmomanometer; 5. Key sensing module. Specific implementation mode
[0048] To make the objectives, technical solutions and advantages of the embodiments of the present invention clearer, the technical solutions in the embodiments of the present invention are clearly and completely described below. Apparently, the described embodiments are some, but not all, of the embodiments of the present invention. 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.
[0049] By providing a vehicle key cabinet based on driver health check and its usage method in the embodiments of the present application, the problems that key collection / return depends on manual operation, which is prone to human errors such as omission and misdelivery; paper records are easily damaged and lost, and it is difficult to trace the key usage status in real time; and there is a lack of a driver health status monitoring mechanism, and dangerous driving behaviors such as drunk driving are difficult to prevent in advance are solved.
[0050] It is realized to use the multimodal verification module 3 for three-mode redundant verification of face, fingerprint and card, effectively preventing the security risks of misappropriation and theft, with high recognition accuracy. The health detection module 4 is used for real-time monitoring of the health status, integrating the infrared thermometer 41, the electrochemical alcohol sensor 42 and the sphygmomanometer 43, eliminating dangerous driving behaviors such as drunk driving and fatigue driving from the source of physiological indicators. At the same time, the whole operation process is traceable. The touch operation screen 2 records a complete operation log including time, personnel and health data, and the key sensing module 5 is used for automatic key control. The RFID-bound key cooperates with the Hall sensor to realize real-time monitoring of the key status. If the key is not returned or abnormally taken out, an alarm will be automatically triggered.
[0051] To better understand the above technical solutions, the above technical solutions will be described in detail below in conjunction with the specification drawings and specific implementation modes.
[0052] Embodiment 1
[0053] An embodiment of the present invention discloses a vehicle key cabinet based on driver health check.
[0054] According to the appendix Figure 1-7 As shown, it includes:
[0055] The vehicle key cabinet unit 1, which includes:
[0056] Key cabinet main body 11;
[0057] Key placement grid 12, which is optionally opened on the front of the key cabinet main body 11, and the inside of the key placement grid 12 is used to place vehicle keys;
[0058] Touch operation screen 2, which is installed on the front of the key cabinet main body 11;
[0059] Multi-modal verification module 3, which is installed on the front of the key cabinet main body 11 and is used for verifying the driver's identity;
[0060] Health detection module 4, which is installed on the front of the key cabinet main body 11 and is used for detecting the driver's health status;
[0061] Key sensing module 5, which is installed inside the key placement grid 12 and is used to sense whether the key is in place.
[0062] Specifically disclosed, the key placement grid 12 includes:
[0063] Placement cavity 121, which is opened on the front of the key cabinet main body 11;
[0064] Sealing door 122, which is rotatably placed on the front of the placement cavity 121, and an electronic lock is provided between the sealing door 122 and the inner wall of the placement cavity 121;
[0065] Placement seat 123, which is arranged inside the placement cavity 121.
[0066] Furthermore, a key slot 124 is opened on the front of the placement seat 123. The key slot 124 is used for inserting the vehicle key, and the key sensing module 5 is arranged in the key slot 124.
[0067] Furthermore, the multi-modal verification module 3 consists of an integrated living body detection face machine and fingerprint and card recognition sensors.
[0068] Specifically disclosed, the health detection module 4 includes:
[0069] Infrared thermometer 41, which is embedded in the front of the key cabinet main body 11 and is used for detecting the driver's body temperature;
[0070] Electrochemical alcohol sensor 42, which is installed on the front of the key cabinet main body 11 and is used for detecting the alcohol content in the driver's body;
[0071] Sphygmomanometer 43, which is placed on the front of the key cabinet main body 11 and is used for detecting the driver's blood pressure.
[0072] Furthermore, a placement table 13 is fixedly installed on the front of the key cabinet main body 11. A receiving groove 14 is opened on the front of the key cabinet main body 11, and the sphygmomanometer 43 is placed between the placement table 13 and the receiving groove 14.
[0073] Furthermore, the key sensing module 5 is set as a Hall sensor, and each vehicle key is bound with a unique RFID chip. The Hall sensor detects the RFID chip in the vehicle key to identify the in-place state of the vehicle key.
[0074] The multi-modal verification module 3 performs three-mode redundant verification through face, fingerprint, and card, effectively preventing security risks such as misappropriation and theft, with a high recognition accuracy. The health detection module 4 conducts real-time monitoring of the health status, integrating an infrared thermometer 41, an electrochemical alcohol sensor 42, and a sphygmomanometer 43, eliminating dangerous driving behaviors such as drunk driving and fatigue driving from the source of physiological indicators. At the same time, the entire operation process is traceable. The touch operation screen 2 records a complete operation log including time, personnel, and health data. Moreover, the key sensing module 5 conducts automated key control, and the RFID-bound key cooperates with the Hall sensor to achieve real-time monitoring of the key status. If the key is not returned or abnormally taken out, an alarm is automatically triggered.
[0075] A usage method of a vehicle key cabinet based on driver health check, the usage method comprising the following steps:
[0076] Step 1, identity verification request. The driver initiates an identity verification request through the touch operation screen 2. The touch operation screen 2 sends an identity verification instruction to the multi-modal verification module 3. Facial recognition is preferentially used, and fingerprint and card verification are automatically switched in case of failure. The multi-modal verification module 3 sends a verification result to the touch operation screen 2. If the verification is passed, the next step is carried out; otherwise, it returns to the identity verification request.
[0077] Step 2, start blood pressure detection. The touch operation screen 2 sends a blood pressure detection instruction to the sphygmomanometer 43. At this time, the driver can use the sphygmomanometer 43 to measure blood pressure. The sphygmomanometer 43 transmits the detection data to the touch operation screen 2 in real time. If the blood pressure detection is normal, the next step is carried out; otherwise, a blood pressure abnormality alarm is given and the process is terminated.
[0078] Step 3, start alcohol detection. The touch operation screen 2 sends an alcohol detection instruction to the electrochemical alcohol sensor 42. At this time, the driver can use the electrochemical alcohol sensor 42 to detect the alcohol content in the human body. The electrochemical alcohol sensor 42 transmits the detection data to the touch operation screen 2 in real time. If the alcohol content in the body is less than 0.02%, the next step is carried out; otherwise, a drunk driving warning is given and a no-entry record is made.
[0079] Step 4, start body temperature detection. The touch operation screen 2 sends a body temperature detection instruction to the infrared thermometer 41. At this time, the driver can use the infrared thermometer 41 to detect the human body temperature. The infrared thermometer 41 transmits the detection data to the touch operation screen 2 in real time. If the body temperature is between 36 - 37.5 °C, the next step is carried out; otherwise, a body temperature abnormality alarm is given and medical advice is provided.
[0080] Step 5: Allow the key cabinet to be opened. Touch the operation screen 2 to unlock the electronic lock of the sealing door 122 on the corresponding key placement grid 12. At this time, the driver can take out the vehicle key inserted in the key slot 124. At this time, the key sensing module 5 records the time when the vehicle key is taken out and sends the data to the operation screen 2. If the sealing door 122 cannot be opened, an abnormal cabinet door alarm is issued.
[0081] Embodiment 2
[0082] An embodiment of the present invention discloses a vehicle key cabinet based on driver health check.
[0083] According to the attached Figure 1-7 As shown, it includes:
[0084] The vehicle key cabinet unit 1, which includes:
[0085] The key cabinet main body 11;
[0086] The key placement grid 12, which is selectively opened on the front of the key cabinet main body 11, and the inside of the key placement grid 12 is used to place the vehicle key;
[0087] The touch operation screen 2, which is installed on the front of the key cabinet main body 11;
[0088] The multi-modal verification module 3, which is installed on the front of the key cabinet main body 11 and is used for verifying the driver's identity;
[0089] The health detection module 4, which is installed on the front of the key cabinet main body 11 and is used for detecting the driver's health status;
[0090] The key sensing module 5, which is installed inside the key placement grid 12 and is used for sensing whether the key is in place.
[0091] Specifically disclosed, the key placement grid 12 includes:
[0092] The placement cavity 121, which is opened on the front of the key cabinet main body 11;
[0093] The sealing door 122, which is rotatably placed on the front of the placement cavity 121, and an electronic lock is provided between the sealing door 122 and the inner wall of the placement cavity 121;
[0094] The placement seat 123, which is arranged inside the placement cavity 121.
[0095] Furthermore, a key slot 124 is opened on the front of the placement seat 123. The key slot 124 is used for inserting the vehicle key, and the key sensing module 5 is arranged in the key slot 124.
[0096] Further, a slide rail 125 is fixedly installed on the inner wall of the placement cavity 121. A slide bar 126 is slidably arranged on the slide rail 125. The slide bar 126 is fixedly connected to the placement seat 123, and a handle is fixedly connected to the end of the slide bar 126.
[0097] By using the provided slide rail 125 and slide bar 126, and cooperating with the handle fixedly connected to the end of the slide bar 126, it is convenient to pull the placement seat 123 outwards, and thus it is convenient to take and place the vehicle key inserted in the key slot 124.
[0098] The above shows and describes the basic principles, main features and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited by the above embodiments. What is described in the above embodiments and the specification only illustrates the principle of the present invention. Without departing from the spirit and scope of the present invention, the present invention will have various changes and improvements, and these changes and improvements all fall within the scope of the present invention claimed. The scope of the present invention claimed is defined by the appended claims and their equivalents.
Claims
1. A vehicle key cabinet based on driver health check, characterized in that, Comprising: A vehicle key cabinet unit (1), which includes: A key cabinet main body (11); A key placement compartment (12), which is optionally opened on the front of the key cabinet main body (11), and the inside of the key placement compartment (12) is used for placing vehicle keys; A touch operation screen (2), which is installed on the front of the key cabinet main body (11); A multi-modal verification module (3), which is installed on the front of the key cabinet main body (11) and is used for verifying the driver's identity; A health detection module (4), which is installed on the front of the key cabinet main body (11) and is used for detecting the driver's health status; A key sensing module (5), which is installed inside the key placement compartment (12) and is used for sensing whether the key is in place.
2. The vehicle key cabinet based on driver health check according to claim 1, wherein The key placement compartment (12) includes: A placement cavity (121), which is opened on the front of the key cabinet main body (11); A sealing door (122), which is rotatably placed on the front of the placement cavity (121), and an electronic lock is provided between the sealing door (122) and the inner wall of the placement cavity (121); A placement seat (123), which is arranged inside the placement cavity (121).
3. The vehicle key cabinet based on driver health check according to claim 2, characterized in that, A key slot (124) is opened on the front of the placement seat (123), the key slot (124) is used for plugging in the vehicle key, and the key sensing module (5) is arranged in the key slot (124).
4. The vehicle key cabinet based on driver health check according to claim 2, characterized in that, A slide rail (125) is fixedly installed on the inner wall of the placement cavity (121), a slide bar (126) is slidably arranged on the slide rail (125), the slide bar (126) is fixedly connected to the placement seat (123), and a handle is fixedly connected to the end of the slide bar (126).
5. A vehicle key cabinet based on driver health check according to claim 1, characterized in that, The multi-modal verification module (3) consists of an integrated live body detection face machine, fingerprint, and card recognition sensor.
6. The vehicle key cabinet based on driver health check according to claim 1, characterized in that, The health detection module (4) includes: An infrared thermometer (41), which is embedded in the front of the key cabinet main body (11) and is used for detecting the driver's body temperature; An electro-chemical alcohol sensor (42), which is installed on the front of the key cabinet main body (11) and is used for detecting the alcohol content in the driver's body; A sphygmomanometer (43), which is placed on the front of the key cabinet main body (11) and is used for detecting the driver's blood pressure.
7. The vehicle key cabinet based on driver health check according to claim 6, characterized in that, A placement table (13) is fixedly installed on the front of the key cabinet main body (11), a receiving groove (14) is opened on the front of the key cabinet main body (11), and the sphygmomanometer (43) is placed between the placement table (13) and the receiving groove (14).
8. A vehicle key cabinet based on driver health check according to claim 1, characterized in that, The key sensing module (5) is set as a Hall sensor, and each vehicle key is bound with a unique RFID chip. The Hall sensor detects the RFID chip in the vehicle key to realize the identification of the in-place state of the vehicle key.
9. A method for using a vehicle key cabinet based on driver health check, which uses the vehicle key cabinet based on driver health check according to any one of claims 1-8, characterized in that, The usage method includes the following steps: Step 1. Identity verification request. The driver initiates an identity verification request through the touch operation screen (2). The touch operation screen (2) sends an identity verification instruction to the multi-modal verification module (3). Facial recognition is preferentially used, and when it fails, fingerprint and card verification are automatically switched. The multi-modal verification module (3) sends a verification result to the touch operation screen (2). If the verification is passed, the next step is carried out; otherwise, it returns to the identity verification request. Step 2: Start blood pressure detection. The touch screen (2) sends a blood pressure detection instruction to the sphygmomanometer (43). At this time, the driver can use the sphygmomanometer (43) to measure blood pressure. The sphygmomanometer (43) transmits the detection data to the touch screen (2) in real time. If the blood pressure detection is normal, proceed to the next step; otherwise, give a blood pressure abnormality warning and terminate the process. Step 3: Start alcohol detection. The touch screen (2) sends an alcohol detection instruction to the electro-chemical alcohol sensor (42). At this time, the driver can use the electro-chemical alcohol sensor (42) to detect the alcohol content in the human body. The electro-chemical alcohol sensor (42) transmits the detection data to the touch screen (2) in real time. If the alcohol content in the body is less than 0.02%, proceed to the next step; otherwise, give a drunk driving warning and record the prohibition of driving. Step 4: Start body temperature detection. The touch screen (2) sends a body temperature detection instruction to the infrared thermometer (41). At this time, the driver can use the infrared thermometer (41) to detect the body temperature. The infrared thermometer (41) transmits the detection data to the touch screen (2) in real time. If the body temperature is between 36 - 37.5 °C, proceed to the next step; otherwise, give a body temperature abnormality warning and give medical advice. Step 5: Allow the key cabinet to be opened. The touch screen (2) opens the electronic lock of the sealed door (122) on the corresponding key placement grid (12). At this time, the driver can take out the vehicle key inserted in the key slot (124). At this time, the key sensing module (5) records the vehicle key removal time and sends the data to the touch screen (2). If the sealed door (122) cannot be opened, give a cabinet door abnormality warning.
Citation Information
Patent Citations
Intelligent key cabinet
CN112884949A
Intelligent key cabinet of motor train unit
CN210295229U
Public transport driver pre-post health monitoring management system
CN218938995U
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