Sanitation vehicle operation safety management vehicle machine
By combining a central control system with various sensor modules on sanitation vehicles, the problems of difficult management and high safety requirements of various sanitation vehicles have been solved, realizing systematic and unified management of sanitation vehicles and drivers, and improving the safety and stability of operations.
Patent Information
- Application Number
- CN202520094393.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-15
- Publication Date
- 2026-01-09
- Estimated Expiration
- 2035-01-15
AI Technical Summary
When multiple sanitation vehicles operate simultaneously in a city, management becomes difficult and safety requirements are high. In the event of an accident, it can easily lead to loss of life and property.
It adopts a structure that allows the central control system to communicate with GPS positioning modules, cameras and image acquisition modules, alarm buttons and call modules, QR code area modules, and vehicle condition perception acquisition modules. Combined with AI active safety protection and driver one-click alarm passive safety protection, it achieves systematic, unified, and real-time management of all sanitation vehicles and drivers.
This has enabled real-time management of sanitation vehicles and drivers, strengthened systematic and unified real-time management, enhanced overall management, and improved the safety and stability of sanitation vehicle operations.
Smart Images

Figure CN223778316U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the technical field of sanitation vehicle management systems, and in particular to a vehicle-mounted machine for sanitation vehicle operation safety management. Background Technology
[0002] Currently, sanitation vehicles, including common urban garbage trucks, road sweepers, and water sprinkler trucks, are all large special vehicles. Due to their different functions, multiple sanitation vehicles must be operating in the city at the same time, which poses a challenge to the management of sanitation operating companies. Furthermore, since sanitation vehicles are all large special vehicles, the safety requirements for these vehicles should be extremely high. Once an accident occurs, it will have a significant impact on the city and can easily cause loss of life and property. Utility Model Content
[0003] The purpose of this application is to provide a vehicle-mounted machine for the safety management of sanitation vehicles, in order to solve the problem that multiple sanitation vehicles are always operating in the city at the same time, which makes the management of sanitation operation companies difficult. Since sanitation vehicles are all large special vehicles, the safety requirements for the vehicles should be extremely high. Once an accident occurs, the impact on the city is huge, and it is very easy to cause loss of life and property.
[0004] The technical solution provided in this application for a vehicle-mounted safety management system for sanitation vehicles is as follows:
[0005] A vehicle-mounted machine for safety management of sanitation vehicles includes a central control system and vehicle-mounted hardware that is connected to the central control system for transmission and communication. The vehicle-mounted hardware includes a GPS positioning module, a camera and image acquisition module, an alarm button and call module, a QR code area module, and a vehicle condition perception and acquisition module.
[0006] The GPS positioning module is connected to the central control system for transmission and communication.
[0007] The camera and image acquisition module are connected to the central control system for transmission and communication.
[0008] The alarm button and the intercom module are connected to the central control system for transmission and communication.
[0009] The QR code area module is connected to the central control system for transmission and communication.
[0010] The vehicle condition perception and data collection module is connected to the central control system for transmission and communication.
[0011] Furthermore, the GPS positioning module communicates with the central control system via the 4G signal from the SIM card built into the vehicle's infotainment system.
[0012] Furthermore, the camera and image acquisition module are connected to the central control system via the 4G signal of the SIM card built into the vehicle's infotainment system.
[0013] Furthermore, the camera and image acquisition module includes an infrared camera facing the driver's seat and front and rear cameras of the sanitation vehicle. The infrared camera facing the driver's seat and the front and rear cameras of the sanitation vehicle are respectively connected to the central control system for transmission and communication.
[0014] Furthermore, the alarm button and call module are connected to the central control system via the 4G signal of the SIM card built into the vehicle's infotainment system.
[0015] Furthermore, the alarm button and communication module includes a one-button alarm button and a communication device. The one-button alarm button and the communication device are respectively connected to the central control system for transmission communication. The communication device is also connected to the central control system via radio.
[0016] Furthermore, the infrared camera facing the driver's seat is connected to the communication device through the central control system.
[0017] Furthermore, the vehicle condition perception and acquisition module uses the electrical signals of the in-vehicle control wiring harness signal lines to collect vehicle condition data, and transmits the collected data to the central control system via the 4G signal of the SIM card built into the vehicle.
[0018] Compared with the prior art, the beneficial effects of this application are as follows: by setting up a structure in which the central control system, GPS positioning module, camera and image acquisition module, alarm button and call module, QR code area module and vehicle condition perception acquisition module transmit and communicate with each other, it is possible to systematically and uniformly manage all sanitation vehicles and all drivers in operation, thereby strengthening overall management.
[0019] At the same time, AI-powered active safety protection and driver-activated one-click alarm passive safety protection are added, enabling sanitation vehicles to be alerted, taken over, and rescued immediately in case of emergencies, thus improving the stability of operational safety. Attached Figure Description
[0020] Figure 1 This is a schematic diagram of the vehicle-mounted machine for managing the safety of sanitation vehicle operations according to an embodiment of this application. Detailed Implementation
[0021] The following is in conjunction with the appendix Figure 1 This application will be described in further detail.
[0022] This application discloses a vehicle-mounted machine for managing the safety of sanitation vehicle operations, referring to... Figure 1In this embodiment, the vehicle-mounted safety management system for sanitation vehicles includes a central control system and vehicle-mounted hardware. The central control system is located in the control room of the sanitation operation company; the vehicle-mounted hardware communicates with the central control system, enabling systematic, unified, and real-time management of all sanitation vehicles and drivers in operation, thus strengthening overall management.
[0023] Specifically, refer to Figure 1 In this embodiment, the vehicle hardware includes a GPS positioning module, a camera and image acquisition module, an alarm button and call module, a QR code area module, and a vehicle condition perception and acquisition module.
[0024] The GPS positioning module communicates with the central control system via the 4G signal from the SIM card built into the vehicle's infotainment system. The GPS positioning module also works in conjunction with the camera and image acquisition module.
[0025] By setting up the GPS positioning module, the following three main functions can be achieved:
[0026] ① The central control system's AI automatically identifies alarms for serious deviations from the work route: Each sanitation vehicle is set with a daily work location route; when the GPS positioning module transmits a location that seriously deviates from the daily work route, it will automatically identify the deviation and issue a pop-up warning on the central control system.
[0027] ② Automatic speeding alarm: Each sanitation vehicle is equipped with a daily operating speed limit; when the driving speed calculated by the GPS positioning module in real time exceeds the speed limit, the speeding event and location will be recorded in the driver's file of the central control system; and the personnel in the central control room can remotely notify the driver of the speeding.
[0028] ③ Emergency rescue location display: When a sanitation vehicle experiences an emergency, such as the AI face recognition missing alarm or the driver's one-click alarm mentioned later, the GPS positioning module will immediately display the vehicle's emergency location on the central control system, facilitating rescue.
[0029] Meanwhile, the camera and image acquisition module collects image data in real time to communicate with the central control system via the 4G signal of the SIM card built into the vehicle. Specifically, the camera and image acquisition module includes an infrared camera facing the driver's seat and front and rear cameras of the sanitation vehicle. The infrared camera facing the driver's seat and the front and rear cameras of the sanitation vehicle are respectively connected to the central control system for transmission and communication.
[0030] By setting up a camera and image acquisition module, the following three main functions can be achieved:
[0031] ① AI Face Recognition Missing Alarm: When the vehicle is in motion (GPS positioning indicates vehicle speed): If the AI-powered infrared camera facing the driver's seat fails to recognize a face, the central control system will pop up an alarm, indicating a potential emergency for the driver. Since AI face recognition missing may indicate a driver medical emergency, this alarm pop-up has the highest priority.
[0032] ② Dangerous driving behavior alarm record: When the vehicle is in motion (GPS positioning determines the vehicle speed): if the infrared camera AI facing the driver's seat or the personnel in the central control room discover that the driver is engaging in dangerous driving behavior, such as smoking, drowsiness, or using a mobile phone, the central control system will pop up an alarm and record the image of the dangerous driving behavior into the driver's file as a basis for driver performance evaluation.
[0033] ③ Road monitoring: The front and rear cameras of the vehicle record the entire process after the vehicle starts, which serves as a record for judgment in case of an accident.
[0034] In addition, the alarm button and call module communicate with the central control system via a 4G signal from the vehicle's built-in SIM card. Specifically, the alarm button and call module includes a one-button alarm and a call device; both the one-button alarm and the call device are connected to the central control system, and the call device also communicates with the central control system wirelessly.
[0035] More specifically, a one-button alarm is prominently displayed on the vehicle's infotainment system, serving as a passive safety feature. In the event of an accident or other emergency, the driver can trigger an alarm with a single button. The central control system will then display a high-priority pop-up message, and the alarm information will also be sent to management via SMS. Furthermore, because 4G signals may experience delays due to environmental factors, a wireless communication module is used to ensure minimal call quality, allowing personnel in the control room to communicate directly with the driver.
[0036] Preferably, in this embodiment, the infrared camera facing the driver's seat is interconnected with the communication device through the central control system; when the AI of the infrared camera facing the driver's seat cannot recognize the driver's face, the communication device can also be controlled through the central control system, so that the personnel in the central control room can try to contact the driver through the communication device in order to confirm the driver's real-time status.
[0037] In addition, the QR code area module communicates with the central control system via the 4G signal of the SIM card built into the vehicle's infotainment system, and the QR code area module is installed on the vehicle's infotainment system. By setting up the QR code area module, the driver needs to scan the code before getting into the vehicle to work, thus binding the driver and the vehicle together. During the operation of the vehicle, any behavior that occurs, such as dangerous driving records and speeding records, will be recorded in the driver's file.
[0038] Specifically, the driver's file is the driver's work file, which is managed by the central control system. It is used to evaluate the driver's working hours, mileage, and safe driving performance. After the work is completed, the driver also needs to scan a code to disconnect the driver from the vehicle.
[0039] Secondly, the vehicle condition sensing and acquisition module uses electrical signals from the in-vehicle control wiring harness to collect vehicle condition data, and then transmits the collected data to the central control system via a 4G signal from the vehicle's built-in SIM card. Specifically, the vehicle condition data to be collected includes braking, steering, engine shutdown, and mileage. By setting up the vehicle condition sensing and acquisition module, the central control system can display the vehicle's braking, steering, engine shutdown, and mileage in real time.
[0040] Therefore, by setting up a structure in which the central control system, GPS positioning module, camera and image acquisition module, alarm button and call module, QR code area module, and vehicle condition perception acquisition module transmit and communicate with each other, it is possible to systematically and uniformly manage all sanitation vehicles and all drivers in operation, thereby strengthening overall management.
[0041] Meanwhile, the addition of AI-powered proactive safety protection and driver-activated one-click alarm passive safety protection enables sanitation vehicles to be alerted, taken over, and rescued immediately in case of emergencies, thus improving the stability of operational safety.
[0042] The above description is merely an embodiment of this utility model and does not limit the patent scope of this utility model. Any equivalent structural or procedural transformations made based on the description and drawings of this utility model, or direct or indirect applications in other related technical fields, are similarly included within the patent protection scope of this utility model.
Claims
1. A vehicle-mounted machine for managing the safety of sanitation vehicle operations, characterized in that: The system includes a central control system and vehicle hardware that is connected to the central control system for transmission and communication. The vehicle hardware includes a GPS positioning module, a camera and image acquisition module, an alarm button and call module, a QR code area module, and a vehicle condition perception and acquisition module. The GPS positioning module is connected to the central control system for transmission and communication. The camera and image acquisition module are connected to the central control system for transmission and communication. The alarm button and the intercom module are connected to the central control system for transmission and communication. The QR code area module is connected to the central control system for transmission and communication. The vehicle condition perception and data collection module is connected to the central control system for transmission and communication.
2. The vehicle-mounted machine for managing the safety of sanitation vehicle operations according to claim 1, characterized in that: The GPS positioning module communicates with the central control system via the 4G signal from the SIM card built into the vehicle.
3. The vehicle-mounted machine for managing the safety of sanitation vehicle operations according to claim 1, characterized in that: The camera and image acquisition module communicate with the central control system via the 4G signal from the SIM card built into the vehicle's infotainment system.
4. The vehicle-mounted machine for managing the safety of sanitation vehicle operations according to claim 3, characterized in that: The camera and image acquisition module includes an infrared camera facing the driver's seat and front and rear cameras of the sanitation vehicle. The infrared camera facing the driver's seat and the front and rear cameras of the sanitation vehicle are respectively connected to the central control system for transmission and communication.
5. The vehicle-mounted machine for managing the safety of sanitation vehicle operations according to claim 4, characterized in that: The alarm button and call module are connected to the central control system via the 4G signal from the SIM card built into the vehicle.
6. The vehicle-mounted machine for managing the safety of sanitation vehicle operations according to claim 5, characterized in that: The alarm button and communication module includes a one-button alarm button and a communication device. The one-button alarm button and the communication device are respectively connected to the central control system for transmission and communication. The communication device is also connected to the central control system via radio.
7. The vehicle-mounted machine for managing the safety of sanitation vehicle operations according to claim 6, characterized in that: The infrared camera facing the driver's seat is connected to the communication device through the central control system.
8. The vehicle-mounted machine for managing the safety of sanitation vehicle operations according to claim 1, characterized in that: The vehicle condition perception and acquisition module uses the electrical signals of the in-vehicle control wiring harness signal lines to collect vehicle condition data, and transmits the collected data to the central control system via the 4G signal of the SIM card built into the vehicle.