Radar device capable of being movably deployed
By designing a mobile radar device, which employs a transport module, cabin, chassis module, and rain-measuring radar, and utilizing a hydraulic lift and central control module, the problems of inflexible movement and high maintenance costs of existing radar devices are solved, achieving flexible deployment and stable monitoring, and reducing resource waste and maintenance costs.
Patent Information
- Application Number
- CN202422906344.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-27
- Publication Date
- 2025-11-18
- Estimated Expiration
- 2034-11-27
AI Technical Summary
Existing weather radar devices cannot be moved flexibly, resulting in wasted resources and high maintenance costs. They are also unable to adapt to changes in the monitoring area and still require high-cost maintenance after the flood season.
Design a mobile radar device comprising a transport module, a cabin, a chassis module, and a rain-measuring radar. Employ a hydraulic lift and a central control module to achieve flexible radar deployment and data transmission. Equipped with a power supply module and a backup power supply to ensure stable operation.
It enables flexible and rapid deployment of radar devices, reduces monitoring costs, improves security and data accuracy, is suitable for stable use in temporary scenarios, and reduces equipment wear and tear.
Smart Images

Figure CN223565888U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to radar equipment field, especially a kind of movable deployment radar device. BACKGROUND
[0002] All the time, meteorological measurement has this extremely important effect in production and life.In recent years, the research on weather radar at home and abroad has made great progress;But if the area of key detection is adjusted or flood season ends, the radar that cannot move can only stay in place, thereby causing the waste of resources.If measurement is carried out using the car installed with radar, the maintenance cost is too high. UTILITY MODEL CONTENT
[0003] In order to solve the problems in the background art, the utility model provides a movable deployment radar device which is flexible, saves manpower, has high safety and is easy to maintain.
[0004] Therefore, the utility model adopts the following technical solutions:
[0005] A movable deployment radar, comprising: a carrying module, a vehicle cabin, a chassis module and a rain measuring radar;Wherein, the carrying module and the vehicle cabin are arranged on the chassis module, and the rain measuring radar is installed on the carrying module;
[0006] The carrying module comprises a radar fixed platform and a hydraulic elevator;The hydraulic elevator is installed on the chassis module, for lifting the radar fixed platform installed thereon to a specified height;The rain measuring radar is fixedly arranged on the radar fixed platform;
[0007] The vehicle cabin comprises a shell and a power supply module and a central control module arranged inside the shell, wherein:
[0008] The power supply module is used to supply power to the central control module, the rain measuring radar and the hydraulic elevator by connecting external power supply;
[0009] The central control module is connected with the rain measuring radar and the hydraulic elevator, for receiving network signals and controlling the rain measuring radar, and uploading the data received by the rain measuring radar to the upper computer, and the central control module is also used to control the lifting of the hydraulic elevator.
[0010] Preferably, the power supply module further comprises a backup power supply, which continuously supplies power to the power supply module, the central control module, the rain measuring radar and the hydraulic elevator after the external power supply is disconnected.
[0011] Preferably, the chassis module comprises a towing unit, a wheel unit and a chassis; the hydraulic lift is installed on the chassis, and the towing unit is used to tow the whole radar device including the towing unit after being connected with a vehicle.
[0012] Preferably, the carrying module further comprises a detachable fence plate module, the fence plate module and the outer wall of the vehicle cabin near the side of the carrying module jointly form a carrying area on the chassis module, and the hydraulic lift is installed in the carrying area.
[0013] Preferably, an in-cabin lighting system and a temperature control system are further installed in the outer shell of the vehicle cabin, and the in-cabin lighting system and the temperature control system are connected with the power supply module and the central control module; the temperature control system is used to adjust the temperature in the outer shell.
[0014] Preferably, a monitoring system and a positioning system are further arranged on the carrying module, and the monitoring system and the positioning system are connected with the power supply module and the central control module.
[0015] The monitoring system is used to detect the surrounding environment, and when there is an abnormal situation, the monitoring system sends an alarm to an upper computer through the central control module; and the positioning system is used to determine the geographical position of the radar device and transmit the geographical position to the central control module.
[0016] Preferably, the safety system comprises a lightning rod module, a vehicle fixing module and a vehicle leveling module.
[0017] The lightning rod module is arranged on the radar fixing platform, the vehicle fixing module comprises a retainer and a wind rope, and is used to prevent the radar device from moving under natural conditions; and the vehicle leveling module is installed on the bottom surface of the chassis module, and is used to make the rain measuring radar horizontal.
[0018] Preferably, the carrying module further comprises a boss, and the boss is arranged in the carrying area; before measurement, a test personnel stands on the boss to debug the rain measuring radar.
[0019] Compared with the prior art, the utility model has the following beneficial effects:
[0020] 1. The utility model can be flexibly and quickly deployed, is suitable for scenes of temporary use, has high safety, and can be repeatedly used; and monitoring cost and equipment loss are reduced.
[0021] 2. The utility model solves the problems that a traditional monitoring vehicle needs to be placed outdoors for use, has high loss cost and insufficient flexibility; the radar device is in the form of a trailer, can be directly towed to a monitoring point in a flood season, and can be operated outdoors for several months.
[0022] 3. The utility model discloses strong stability, data accuracy is high. BRIEF DESCRIPTION OF DRAWINGS
[0023] Figure 1 It is the three-dimensional structure schematic diagram of the utility model;
[0024] Figure 2 It is another angle's three-dimensional structure schematic diagram of the utility model;
[0025] Figure 3 It is the structure schematic diagram of the upward view angle of the utility model.
[0026] In the drawing, 1. Carrying module, 2. Car cabin, 3. Chassis module, 4. Rain measurement radar, 1-1. Fence board module, 1-2. Radar fixed platform, 1-3. Hydraulic elevator, 1-4. Boss, 3-1. Trailer unit, 3-2. Wheel unit, 3-3. Chassis. DETAILED DESCRIPTION
[0027] The technical scheme of the utility model will be further explained in detail in connection with the drawings and embodiments.
[0028] Embodiment one
[0029] As Figure 1 Indicated, the movable deployment's radar device of the utility model includes carrying module 1, car cabin 2, chassis module 3 and rain measurement radar 4;Among them, carrying module 1 and car cabin 2 are set on chassis module 3, and rain measurement radar 4 is installed on carrying module 1.
[0030] As Figure 2 Indicated, carrying module 1 includes fence board module 1-1, radar fixed platform 1-2 and hydraulic elevator 1-3;Fence board module 1-1 and the outer wall of car cabin 2 are collectively enclosed on chassis module 3 to form a carrying area, and hydraulic elevator 1-3 is installed in the carrying area on chassis module 3, for lifting the radar fixed platform 1-2 installed thereon;Rain measurement radar 4 is fixedly arranged on radar fixed platform 1-2;
[0031] Car cabin 2 includes an outer shell and a power supply module and a central control module located inside the outer shell, the power supply module is connected with the central control module, rain measurement radar 4 and hydraulic elevator 1-3 and supplies power for them.
[0032] The central control module is connected with rain measurement radar 4 and hydraulic elevator 1-3, for receiving network signals and controlling rain measurement radar 4, and then uploading the data received by rain measurement radar 4 to the upper computer, and the central control module is also used to control the lifting of hydraulic elevator 1-3.
[0033] The power supply module transmits electric energy to other parts of the radar device by connecting external power supply, and the power supply module further comprises a backup power supply for continuously supplying power to other parts of the radar device after the external power supply is disconnected.
[0034] The chassis module 3 comprises a towing unit 3-1, a wheel unit 3-2 and a chassis 3-3; the towing unit 3-1 and the wheel unit 3-2 are both mounted on the bottom surface of the chassis 3-3, and the towing unit 3-1 is used for towing the whole radar device including the towing unit 3-1 after being connected with the automobile.
[0035] In use, the radar device is towed to the area to be measured, the central control module is used to control the hydraulic lift to lift the rain measuring radar, and then the rain measuring radar is controlled to measure and transmit data to the upper computer.
[0036] Embodiment two
[0037] As shown in Figure 2 on the basis of embodiment one, the carrying module 1 further comprises a boss 1-4, the boss 1-4 is arranged in the carrying area, the boss 1-4 does not affect the extension and contraction of the hydraulic lift 1-3; before measurement, the tester stands on the boss 1-4 to debug the rain measuring radar 4.
[0038] The shell on the side of the vehicle cabin 2 away from the carrying module 1 is provided with a ladder for the maintenance of the rain measuring radar 4. The fence plate module 1-1 is a detachable structure, facilitating the maintenance of the hydraulic lift 1-3 by the tester.
[0039] Embodiment three
[0040] On the basis of embodiment two, the shell of the vehicle cabin 2 is further provided with an in-cabin lighting system and a temperature control system, and the in-cabin lighting system and the temperature control system are connected with the power supply module and the central control module. The temperature control system is used for adjusting the temperature in the shell, prolonging the service life of the components in the shell.
[0041] The carrying module 1 is further provided with a monitoring system and a positioning system, and the monitoring system and the positioning system are connected with the power supply module and the central control module; wherein the monitoring system is used for detecting the surrounding environment, and when someone illegally intrudes or destroys, the monitoring system sends an alarm to the upper computer through the central control module to prevent property loss. The positioning system is used for determining the geographical position of the radar device and transmitting it to the central control module.
[0042] Embodiment four
[0043] On the basis of embodiment three, the radar device of the utility model further comprises a safety system and a trailer assembly, the safety system comprises a lightning rod module, a vehicle fixing module and a vehicle leveling module. The trailer assembly is arranged on the chassis module 3 to meet the requirements of traffic regulations for trailers.
[0044] The lightning rod module is arranged on the radar fixing platform 1-2, and the vehicle fixing module comprises a retainer and a wind rope, and is used for preventing the radar device from moving under natural conditions. The vehicle leveling module is installed on the bottom surface of the chassis module 3 and is used for leveling the rain measuring radar 4. The rain measuring radar can use a single-polarization or double-polarization mechanical radar.
[0045] In use, the radar device of the utility model is towed to a place to be tested by a car, and the radar fixing platform 1-2 is lifted to the height of the top surface of the car cabin. Since the distance between the top surface of the car cabin and the top surface of the chassis module is 1.56 m, a tester standing on the convex platform can conveniently transfer the protective cover of the rain measuring radar to the top surface of the car cabin, then remove the fixing assembly in the rain measuring radar, and make the rain measuring radar reach a state to be tested. Then the rain measuring radar is further lifted to a testing height by using the hydraulic lift, and the central control system is debugged to make the rain measuring radar measure.
Claims
1. A mobilely deployable radar device, characterized in that, include: The vehicle includes a transport module (1), a cabin (2), a chassis module (3), and a rain measuring radar (4); wherein the transport module (1) and the cabin (2) are mounted on the chassis module (3), and the rain measuring radar (4) is mounted on the transport module (1). The transport module (1) includes a radar fixed platform (1-2) and a hydraulic lift (1-3); the hydraulic lift (1-3) is installed on the chassis module (3) and is used to lift the radar fixed platform (1-2) installed on it to a specified height; the rain measuring radar (4) is fixedly installed on the radar fixed platform (1-2); The vehicle cabin (2) includes an outer shell and a power supply module and a central control module disposed inside the outer shell, wherein: The power supply module is used to supply power to the central control module, the rain measuring radar (4) and the hydraulic lift (1-3) by connecting to an external power supply; The central control module is connected to the rain measuring radar (4) and the hydraulic lift (1-3), and is used to receive network signals and control the rain measuring radar (4), and then upload the data received by the rain measuring radar (4) to the host computer. The central control module is also used to control the lifting of the hydraulic lift (1-3).
2. The mobile-deployable radar device according to claim 1, characterized in that: The power supply module also includes a backup power supply, which continuously supplies power to the power supply module, the central control module, the rain measuring radar (4) and the hydraulic lift (1-3) after the external power supply is disconnected.
3. The mobile-deployable radar device according to claim 1, characterized in that: The chassis module (3) includes a towing unit (3-1), a wheel unit (3-2), and a chassis (3-3); the hydraulic lift (1-3) is mounted on the chassis (3-3), and the towing unit (3-1) is used to tow the entire radar device, including the towing unit (3-1), after being connected to a vehicle.
4. The mobile-deployable radar device according to claim 1, characterized in that: The transport module (1) also includes a detachable fence module (1-1). The fence module (1-1) and the outer wall of the cabin (2) near the transport module (1) together form a transport area on the chassis module (3). The hydraulic lift (1-3) is installed in the transport area.
5. The mobile-deployable radar device according to claim 1, characterized in that: The cabin (2) is also equipped with an interior lighting system and a temperature control system. The interior lighting system and the temperature control system are both connected to the power supply module and the central control module. The temperature control system is used to regulate the temperature inside the cabin.
6. The mobilely deployable radar device according to claim 1, characterized in that: The transport module (1) is also equipped with a monitoring system and a positioning system, both of which are connected to the power supply module and the central control module. The monitoring system is used to detect the surrounding environment. When there is an abnormality, the monitoring system sends an alarm to the host computer through the central control module. The positioning system is used to determine the geographical location of the radar device and transmit it to the central control module.
7. The mobile-deployable radar device according to claim 1, characterized in that: It also includes a safety system, which includes a lightning rod module, a vehicle fixing module, and a vehicle leveling module; The lightning rod module is mounted on the radar mounting platform (1-2). The vehicle mounting module includes a backstop and a windproof rope to prevent the radar device from moving under natural conditions. The vehicle leveling module is mounted on the bottom surface of the chassis module (3) to make the rain measuring radar (4) level.
8. The mobile-deployable radar device according to claim 4, characterized in that: The transport module (1) also includes a boss (1-4), which is set in the transport area. Before measurement, the tester stands on the boss (1-4) to debug the rain measuring radar (4).