Earth-rock engineering transport vehicle access registration system
The earthmoving and rock excavation vehicle entry and exit registration system utilizes a main control device and identification and capture devices to achieve automatic vehicle information identification and gate control, solving the problem of incomplete information, improving management efficiency and information transmission and sharing, and reducing safety hazards.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SHENZHEN ZHIYUNBAO TECHNOLOGY CO LTD
- Filing Date
- 2025-05-20
- Publication Date
- 2026-05-08
AI Technical Summary
The current registration of information for earthmoving and rock excavation transport vehicles is not accurate, standardized, or comprehensive enough, resulting in cumbersome procedures, low traffic efficiency, and obstacles to information transmission and sharing.
The system employs a main control unit, an exit and entry registration unit, a network module, and a barrier gate. Combined with exit and entry identification and capture devices, it achieves automatic identification of vehicle information and automatic control of the barrier gate. The network module enables real-time transmission and sharing of information.
It improved the efficiency of vehicle entry and exit management, enabled detailed recording and real-time transmission of information, enhanced management level and the scientific nature of decision-making, and reduced violations and safety hazards.
Smart Images

Figure CN224217121U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of engineering control technology, and more specifically to an entry and exit registration system for earthwork transportation vehicles. Background Technology
[0002] Current technologies suffer from incomplete registration of entry and exit information for earthmoving transport vehicles. They typically only record basic vehicle identification information, lacking detailed records of the vehicle's status upon entry and exit, cargo carried, and other relevant details. Vehicle entry and exit registration relies on manual operation, is cumbersome, and results in prolonged vehicle dwell times at entrances and exits, impacting traffic efficiency. Furthermore, there is a risk of vehicles not being registered, or vehicles being present but not registered. Information regarding earthmoving transport vehicles may be scattered across different departments or stages, hindering information transmission and sharing, and resulting in a lack of timely and accurate data support for management decisions.
[0003] Therefore, how to propose an entry and exit registration system for earthmoving and rock excavation vehicles, how to avoid situations where the information registration of earthmoving and rock excavation vehicles is not accurate, not standardized, or comprehensive, how to avoid the current situation of cumbersome procedures and low traffic efficiency, and how to achieve the effective transmission and sharing of relevant information of earthmoving and rock excavation vehicles are problems that urgently need to be solved by those skilled in the art. Utility Model Content
[0004] In view of this, the present invention provides an entry and exit registration system for earthmoving and rock excavation transport vehicles. To address the issues of inaccurate, substandard, or incomplete registration of information for earthmoving and rock excavation transport vehicles, to avoid cumbersome procedures and low efficiency, and to achieve effective transmission and sharing of relevant information for earthmoving and rock excavation transport vehicles, the present invention adopts the following technical solution:
[0005] A vehicle entry and exit registration system for earthmoving and rock excavation projects includes: a main control device, an exit registration device, an entry registration device, a network module, and a barrier gate device. The main control device is signal-connected to the exit registration device, the entry registration device, the network module, and the barrier gate device. The exit registration device includes an exit identification device and an exit capture device, and the entry registration device includes an entry identification device and an entry capture device. The exit identification device, the exit capture device, the entry identification device, and the entry capture device are all signal-connected to the main control device.
[0006] Optionally, the entry recognition device includes: a first light source module, an entry recognition camera, a first power conversion module, a PoE splitter, and a first 4G wireless router. The first light source module is connected to the entry recognition camera via signal. The 4G wireless router is connected to the first power conversion module and the entry recognition camera via the PoE splitter. The first 4G wireless router is connected to the main control device via signal.
[0007] Optionally, the entry capture device includes: an entry capture camera and a second light source module, wherein the entry capture camera is signal-connected to the first power conversion module and the second light source module respectively, and the entry capture camera is signal-connected to the first 4G wireless router.
[0008] Optionally, the exit identification device includes: a circuit breaker, a power module, a second power conversion module, an exit identification camera, a third light source module, and a second 4G wireless router. The circuit breaker, power module, second power conversion module, and exit identification camera are connected in sequence. One end of the exit identification camera is connected to the signal of the second 4G wireless router, and the other end is connected to the signal of the third light source module.
[0009] Optionally, it also includes: an uninterruptible power supply module, which is electrically connected to the power module and the second 4G wireless router, and is signal-connected to the main control device.
[0010] Optionally, it also includes a display screen, which is connected to the exit recognition camera and the main control device respectively.
[0011] Optionally, it also includes a streamer connected to the second 4G wireless router signal.
[0012] Optionally, the exit capture device includes: an exit capture camera and a fourth light source module. The exit capture camera is connected to the second power conversion module and the fourth light source module respectively, and the exit capture camera is connected to the second 4G wireless router signal.
[0013] Optionally, the barrier gate device includes: a barrier gate main board, a barrier gate arm, and a vehicle detector. The barrier gate main board is controlled and connected to the barrier gate arm. The barrier gate main board is signal connected to the vehicle detector. The vehicle detector is a ground inductive coil, and the ground inductive coil is electrically connected to a 220V power supply.
[0014] As can be seen from the above technical solution, compared with the prior art, this utility model discloses a registration system for the entry and exit of earthmoving and rock transport vehicles, which has the following beneficial effects:
[0015] This utility model proposes an entry and exit registration system for earthmoving and rock excavation transport vehicles, comprising: a main control device, an exit registration device, an entry registration device, a network module, and a barrier gate device. The main control device is signal-connected to the exit registration device, the entry registration device, the network module, and the barrier gate device. The exit registration device includes an exit identification device and an exit capture device, and the entry registration device includes an entry identification device and an entry capture device. All three devices are signal-connected to the main control device. By setting up exit and entry capture devices, this utility model can photograph and record the appearance of vehicles and cargo loading during vehicle entry and exit, supplementing vehicle status information and making vehicle information registration more comprehensive. Through the signal connection between the main control device and the exit registration device, the entry registration device, and the barrier gate device, automatic vehicle information identification and automatic barrier gate control are achieved. When a vehicle arrives at the entrance / exit, the exit and entry identification devices quickly identify the vehicle information and transmit it to the main control device. The main control device then controls the gate opening and closing based on the information, improving the management efficiency of vehicle entry and exit. The network module in the system can transmit vehicle entry / exit information, captured images, and other data to a remote server or other relevant department's terminal equipment, achieving real-time information transmission and sharing. This allows managers to monitor vehicle dynamics at any time, improving overall management and the scientific nature of decision-making. Through detailed recording and real-time transmission of vehicle entry / exit information, managers can monitor and analyze vehicle transportation times, promptly identify anomalies, strengthen supervision of the transportation process, and help standardize transportation behavior, reducing violations and safety hazards. Attached Figure Description
[0016] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on the provided drawings without creative effort.
[0017] Figure 1 A schematic diagram of the structure of an earthmoving and rock excavation vehicle entry and exit registration system provided by this utility model. Detailed Implementation
[0018] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0019] This utility model discloses an entry and exit registration system for earthmoving and rock excavation transport vehicles, such as... Figure 1 As shown, it includes: a main control device, an exit registration device, an entry registration device, a network module, and a barrier gate device. The main control device is connected to the exit registration device, the entry registration device, the network module, and the barrier gate device by signals. The exit registration device includes an exit identification device and an exit capture device. The entry registration device includes an entry identification device and an entry capture device. The exit identification device, the exit capture device, the entry identification device, and the entry capture device are all connected to the main control device by signals.
[0020] Furthermore, the entry recognition device includes: a first light source module, an entry recognition camera, a first power conversion module, a PoE splitter, and a first 4G wireless router. The first light source module is connected to the entry recognition camera via signal. The 4G wireless router is connected to the first power conversion module and the entry recognition camera via the PoE splitter. The first 4G wireless router is connected to the main control device via signal.
[0021] Furthermore, the entrance capture device includes: an entrance capture camera and a second light source module. The entrance capture camera is connected to the first power conversion module and the second light source module respectively, and the entrance capture camera is connected to the first 4G wireless router signal.
[0022] Specifically, the entrance recognition device has a built-in recognition algorithm that compares the license plate information captured by the entrance recognition camera with pre-stored license plate information. Upon successful recognition, the entrance capture camera captures two images. The recognition algorithm is a publicly available image recognition algorithm in the prior art. The captured images are transmitted to the main control device or other receiving devices via a first 4G wireless router.
[0023] Furthermore, the exit identification device includes: a circuit breaker, a power module, a second power conversion module, an exit identification camera, a third light source module, and a second 4G wireless router. The circuit breaker, power module, second power conversion module, and exit identification camera are connected in sequence. One end of the exit identification camera is connected to the signal of the second 4G wireless router, and the other end is connected to the signal of the third light source module.
[0024] Furthermore, the exit identification camera is connected to the main control device via a second 4G wireless router or via RS485.
[0025] Specifically, the power module is model WCT-NRS-36S and supports AC100-264V, 50 / 60HZ.
[0026] Furthermore, the exit capture device includes an exit capture camera and a fourth light source module. The exit capture camera is connected to the second power conversion module and the fourth light source module respectively, and the exit capture camera is connected to the second 4G wireless router signal.
[0027] Furthermore, the exit recognition device also includes a voice module for broadcasting pre-stored voice information.
[0028] Specifically, the exit recognition device has a built-in recognition algorithm that compares the license plate information captured by the exit recognition camera with pre-stored license plate information. Upon successful recognition, it plays a pre-stored voice message, such as: "Please open the hood." The exit capture camera then captures two images. The recognition algorithm is a publicly available image recognition algorithm. The captured images are transmitted to the main control device or other receiving devices via a second 4G wireless router.
[0029] Furthermore, the barrier gate device includes: a barrier gate main board, a barrier gate arm, and a vehicle detector. The barrier gate main board is controllably connected to the barrier gate arm and signallably connected to the vehicle detector. The vehicle detector is an inductive loop, which is electrically connected to a 220V power supply. Specifically, after the main control device receives the captured image, it sends a signal to the barrier gate main board to raise the barrier gate arm, which in turn controls the barrier gate main board to raise the arm.
[0030] Furthermore, before the main control device receives the captured image, the presence of a vehicle is detected by the inductive loop of the vehicle detector.
[0031] Specifically, the entrance recognition camera, entrance capture camera, exit recognition camera, and exit capture camera are all 5-megapixel vehicle identification smart cameras, model number: R5L-VTCC52A-1 (4mm).
[0032] Furthermore, it also includes: an uninterruptible power supply module, which is electrically connected to the power module and the second 4G wireless router, and is signal-connected to the main control device.
[0033] Furthermore, it also includes a display screen, which is connected to the exit recognition camera and the main control device respectively.
[0034] Furthermore, it also includes a streamer, which is connected to the second 4G wireless router signal.
[0035] In a specific implementation, a registration system for earthmoving and rock excavation transport vehicles operates on the following principle:
[0036] Entry Mode: The first light source module and the entry recognition camera work together, while the entry capture camera and the second light source module work together to provide illumination for shooting. A first power conversion module provides power to the first light source module, the entry recognition camera, the entry capture camera, and the second light source module. The power input of the first power conversion module and the signal input of the entry recognition camera are combined and input into the first 4G wireless router via a PoE splitter. The entry capture camera is connected to the first 4G wireless router. It is also connected to the main control device via the first 4G wireless router. The entry recognition device has a built-in recognition algorithm that compares the license plate information captured by the entry recognition camera with pre-stored license plate information. Upon successful recognition, the entry capture camera captures two images. The recognition algorithm is a publicly available image recognition algorithm. The captured images are transmitted via the first 4G wireless router to the main control device or other receiving devices for uploading or storage.
[0037] Exit Mode: Power is supplied to the power module via a circuit breaker to ensure equipment safety. An exit recognition camera and a third light source module work together, while an exit capture camera and a fourth light source module work together to provide illumination for shooting. A second power conversion module provides power to the exit recognition camera, third light source module, exit capture camera, and fourth light source module. Both the exit recognition camera and the exit capture camera are connected to the second 4G wireless router signal, which is connected to the main control device signal. The main control device is connected to the barrier gate main board signal, and the barrier gate main board is connected to the barrier gate arm control. The barrier gate main board is connected to the vehicle detector signal; the vehicle detector is an inductive loop, placed below ground level, its size and location adapted to the vehicle to be detected. The inductive loop is electrically connected to a 220V power supply. Before the main control device receives the captured image, the presence of a vehicle is detected by the inductive loop of the vehicle detector. After a vehicle is detected, the exit recognition device uses a built-in recognition algorithm to compare the license plate information captured by the exit recognition camera with pre-stored license plate information. Upon successful recognition, the voice module plays a pre-stored voice message, such as: "Please open the hood." The exit capture camera captures two images. The recognition algorithm is a publicly available image recognition algorithm. The captured images are transmitted to the main control device via a second 4G wireless router, or sent to a streamer via the second 4G wireless router for display. After receiving the captured images, the main control device sends a signal to the barrier gate motherboard to raise the barrier arm.
[0038] Protection Mode: The uninterruptible power supply (UPS) module is electrically connected to the power module, the second 4G wireless router, and the main control device. Before a power outage occurs, the UPS module is charged via its electrical connection to the power module. In the event of a power outage, the UPS module utilizes its stored energy to continuously power the second 4G wireless router and the main control device, ensuring continued operation of the devices.
[0039] The various embodiments in this specification are described in a progressive manner, with each embodiment focusing on its differences from other embodiments. Similar or identical parts between embodiments can be referred to interchangeably. For the apparatus disclosed in the embodiments, since they correspond to the methods disclosed in the embodiments, the description is relatively simple; relevant parts can be referred to in the method section.
[0040] The above description of the disclosed embodiments enables those skilled in the art to make or use the present invention. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the general principles defined herein may be implemented in other embodiments without departing from the spirit or scope of the present invention. Therefore, the present invention is not to be limited to the embodiments shown herein, but is to be accorded the widest scope consistent with the principles and novel features disclosed herein.
Claims
1. A registration system for earthmoving and rock excavation transport vehicles, characterized in that, include: The system includes a main control device, an exit registration device, an entry registration device, a network module, and a barrier gate device. The main control device is signal-connected to the exit registration device, the entry registration device, the network module, and the barrier gate device, respectively. The exit registration device includes an exit identification device and an exit capture device, and the entry registration device includes an entry identification device and an entry capture device. The exit identification device, the exit capture device, the entry identification device, and the entry capture device are all signal-connected to the main control device. The entry recognition device includes: a first light source module, an entry recognition camera, a first power conversion module, a PoE splitter, and a first 4G wireless router. The first light source module is connected to the entry recognition camera via signal. The 4G wireless router is connected to the first power conversion module and the entry recognition camera via the PoE splitter. The first 4G wireless router is connected to the main control device via signal.
2. The earthmoving and rock excavation transport vehicle entry and exit registration system according to claim 1, characterized in that, The entry capture device includes an entry capture camera and a second light source module. The entry capture camera is connected to the first power conversion module and the second light source module respectively. The entry capture camera is also connected to the first 4G wireless router signal.
3. The earthmoving and rock excavation transport vehicle entry and exit registration system according to claim 1, characterized in that, The exit identification device includes: a circuit breaker, a power module, a second power conversion module, an exit identification camera, a third light source module, and a second 4G wireless router. The circuit breaker, power module, second power conversion module, and exit identification camera are connected in sequence. One end of the exit identification camera is connected to the signal of the second 4G wireless router, and the other end is connected to the signal of the third light source module.
4. The earthmoving and rock excavation transport vehicle entry and exit registration system according to claim 3, characterized in that, Also includes: An uninterruptible power supply (UPS) module is electrically connected to the power supply module and the second 4G wireless router, and is signal-connected to the main control device.
5. The earthmoving and rock excavation transport vehicle entry and exit registration system according to claim 3, characterized in that, Also includes: The display screen is connected to the exit recognition camera and the main control device respectively.
6. The earthmoving and rock excavation transport vehicle entry and exit registration system according to claim 3, characterized in that, Also includes: A streamer, which is connected to the second 4G wireless router signal.
7. The earthmoving and rock excavation transport vehicle entry and exit registration system according to claim 3, characterized in that, The exit capture device includes an exit capture camera and a fourth light source module. The exit capture camera is connected to the second power conversion module and the fourth light source module respectively. The exit capture camera is also connected to the second 4G wireless router signal.
8. The earthmoving and rock excavation transport vehicle entry and exit registration system according to claim 1, characterized in that, The barrier gate device includes: a barrier gate main board, a barrier gate arm, and a vehicle detector. The barrier gate main board is controlled and connected to the barrier gate arm. The barrier gate main board is signal connected to the vehicle detector. The vehicle detector is a ground inductive coil, which is electrically connected to a 220V power supply.