A portable monitoring device mounting device
By designing a monitoring equipment placement device that is easy to disassemble and transport, the problems of poor versatility and resource waste in existing monitoring equipment placement devices are solved. This enables efficient disassembly and reuse, enhances the strength and safety of the structure, and is suitable for extreme field conditions.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- CHINESE RES ACAD OF ENVIRONMENTAL SCI
- Filing Date
- 2023-04-20
- Publication Date
- 2026-07-21
AI Technical Summary
The existing monitoring equipment installation devices have poor versatility, and their one-piece molding structure cannot be disassembled, resulting in resource waste and increased costs.
A convenient disassembly and transportation device for monitoring equipment was designed, including a power supply box, a continuous monitoring equipment fixing module, an external equipment suspension module, a UAV landing/LiDAR installation platform, and a fixing structure between modules. It adopts mortise and tenon joints and screws for fixing, internal wiring, integrated power supply design, multiple power access modes, and reusable modules.
It enables efficient disassembly, assembly, and reuse of monitoring equipment, reduces costs, enhances structural strength and safety, reduces resource waste, is suitable for extreme field conditions, and has short-duration battery life and multi-mode power access capabilities.
Smart Images

Figure CN117082770B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of mounting devices, and more particularly to a monitoring equipment mounting device that is easy to disassemble and transport. Background Technology
[0002] The "One City, One Policy" project for air pollution control tracking research is gaining increasing favor from local governments because it provides targeted assistance for improving urban air quality and proposes feasible and specific governance solutions based on local air quality characteristics. This has effectively improved local air quality management levels. Meanwhile, for research institutions, local research work is in full swing, with air quality monitoring being a crucial component. Monitoring stations (including air quality monitoring silos, super stations, and PM2.5 monitoring stations) are typically selected based on air quality characteristics. 2.5 While equipment such as manual sampling and lidar are used, the selected monitoring sites often have issues such as unsuitable locations and power supply due to various factors. These are key problems encountered in the current urban research process of selecting sites and deploying monitoring equipment.
[0003] Currently, some research teams and institutes have developed specialized equipment mounting structures for different monitoring needs. However, these structures are often designed for specific purposes, offering high specialization but poor versatility. Furthermore, because the structures are molded in one piece and cannot be disassembled, most of these structures are simply discarded after a project ends and cannot be used in other cities, increasing costs and wasting resources. In contrast, this module has multiple uses, maximizing the functionality of a single structure and contributing to a complete monitoring solution.
[0004] Therefore, those skilled in the art are dedicated to developing a convenient disassembly and transportation device for installing monitoring equipment to address the shortcomings of the prior art. Summary of the Invention
[0005] In view of the above-mentioned defects of the prior art, the technical problem to be solved by the present invention is that the existing monitoring equipment placement devices have poor versatility and are not disassembled due to their one-piece molding structure, which increases costs and wastes resources.
[0006] To achieve the above objectives, the present invention provides a convenient disassembly and transportation device for monitoring equipment, comprising a power supply box, a continuous monitoring equipment fixing module, an external equipment suspension module, a UAV landing / LiDAR mounting platform, and an inter-module fixing structure; the power supply box is located at the bottom of the device, and the top of the power supply box is connected to the continuous monitoring equipment fixing module; the top of the continuous monitoring equipment fixing module is connected to the UAV landing / LiDAR mounting platform; the side of the continuous monitoring equipment fixing module includes an external equipment suspension module; the top of the external equipment suspension module is connected to the continuous monitoring equipment fixing module; the modules are connected through the inter-module fixing structure.
[0007] Furthermore, the power supply box includes a distribution box, an emergency battery, an electronic control component box, and a heat dissipation component box. The emergency battery is located at the bottom and is used to provide power to the equipment during emergency periods. The bottom of the emergency battery includes multiple support rods, which are at a certain height and the distance from the ground meets the requirements for wading. The top of the emergency battery is connected to the bottom of the electronic control component box and the heat dissipation component box. The electronic control component box and the heat dissipation component box are installed close to each other. The distribution box is installed on the side of the electronic control component box. The top of the electronic control component box includes a power slot. The power slot is used to connect to other modules. The lower right side of the distribution box includes an external socket to provide power to other devices. The distribution box includes one terminal and multiple outgoing terminals, and the terminal can be directly connected to the power supply cable. The heat dissipation component box includes a heat sink. The electronic control component box includes functional modules such as wiring, power control, and power management, which are used for power control, power distribution, and power outage response for the entire system.
[0008] Furthermore, the continuous monitoring equipment fixing module is a closed structure with an internal cavity; the continuous monitoring equipment fixing module is rectangular; the inner wall of the continuous monitoring equipment fixing module is lined with thermal insulation material; the outer wall of the continuous monitoring equipment fixing module includes an installed heat dissipation module to ensure the optimal operating temperature of the equipment; the heat dissipation module is a radiator; the continuous monitoring equipment fixing module has a socket inside to supply the power needs of the equipment; power supply modules 35 are provided on the upper and lower left rear sides of the continuous monitoring equipment fixing module; the continuous monitoring equipment fixing module has an installation port on its periphery; the installation port adopts a pull-out tenon and mortise structure for installing an external equipment suspension structure module; the front end of the continuous monitoring equipment fixing module is semi-closed, leaving an opening in front of the module to facilitate observation of the equipment's operating status at any time;
[0009] Furthermore, the external equipment suspension module has a frame structure, including a hanging rod, connecting and fixing feet, and a channel for the air intake pipe of the monitoring equipment; the hanging rod can suspend fixing plates of different specifications as needed to meet the fixing requirements of different external equipment; the external equipment includes external monitoring equipment such as anemometers, meteorological sensors, and miniature monitoring sensors;
[0010] Furthermore, the UAV landing / LiDAR mounting platform is a dual-purpose platform for placing both the UAV and the LiDAR; the UAV landing / LiDAR mounting platform has a two-layer design, with the upper layer being the UAV take-off and landing platform and the lower layer being the LiDAR mounting platform, connected by a hinge design and secured with snap-fit at the other end; the use of the UAV and the LiDAR is designed to be either one or the other.
[0011] Furthermore, the fixing structure between the modules is a screw + tenon joint connection, with the inner end designed as a tenon and tenon slot, the outer end designed as a connecting bearing, and the inner end designed with screw holes;
[0012] Furthermore, the mounting device can also provide power support for other integrally molded devices;
[0013] Furthermore, the installation device includes built-in monitoring equipment such as conventional pollutant six parameters and small online VOCs monitoring equipment, which are installed in the fixed module of the continuous monitoring equipment;
[0014] Furthermore, all structures of the mounting device employ internal wiring;
[0015] Furthermore, all parts of the mounting device are waterproof, and the exterior includes a waterproof coating;
[0016] Furthermore, the mounting device may include multiple continuous monitoring equipment fixing modules, external equipment suspension modules, UAV landing / LiDAR mounting platform, and inter-module fixing structure;
[0017] Furthermore, the mounting device can support equipment including meteorological monitoring equipment, miniature atmospheric sensors, continuous monitoring equipment, and small monitoring equipment; each device can be installed on the horizontal suspension rod of the external equipment suspension module of the device;
[0018] In a specific embodiment of the present invention, the bottom of the emergency battery includes four support rods located at the four corners;
[0019] By adopting the above solution, the convenient disassembly and transportation monitoring equipment placement device disclosed in this invention has the following advantages:
[0020] (1) The monitoring equipment placement device of the present invention, which is easy to disassemble and transport, maximizes the utilization of functions, saves space and reduces costs, and plays a greater role in extreme conditions and harsh environments in the field.
[0021] (2) The monitoring equipment placement device of the present invention with convenient disassembly and transportation adopts an integrated design for the power supply box, which has the advantages of multiple power access methods, short-term battery life and external expansion, thus increasing the expandability of the module.
[0022] (3) The monitoring equipment placement device of the present invention, which is convenient to disassemble and transport, has a built-in power connection, which enhances the stability of the system.
[0023] (4) The convenient disassembly and transportation monitoring equipment placement device of the present invention structurizes and integrates UAV / LiDAR, continuous monitoring and external monitoring equipment, so as to achieve the compactness of the structure and reduce the space occupation;
[0024] (5) The convenient disassembly and transportation monitoring equipment placement device of the present invention sets the module fixing structure as mortise and tenon + screw fixing, which enhances the strength and impact resistance of the structure.
[0025] (6) The monitoring equipment placement device of the present invention with convenient disassembly and transportation adopts internal wiring and concealed wiring in all structures to avoid direct contact between circuits and air circuits with air, and the power connection adopts internal plug-in type, which enhances the safety of the structure and avoids safety accidents caused by easy damage and aging of the lines.
[0026] (7) The monitoring equipment placement device of the present invention is easy to disassemble and transport. The equipment as a whole has a certain degree of waterproofness and can be used in rainy or snowy weather, thus reducing costs.
[0027] (8) The monitoring equipment placement device of the present invention is easy to disassemble and transport. Each module can be reused and is highly versatile, avoiding the waste of costs and resources caused by non-universal structural components. The power connection is built-in, which enhances the stability of the system.
[0028] In summary, the convenient disassembly and transportation monitoring equipment placement device disclosed in this invention maximizes the utilization of its functions, saves space, reduces costs, and plays a greater role in extreme field conditions and harsh environments. The power supply box adopts an integrated design, featuring multiple power access modes, short-duration battery life, and external expansion capabilities, increasing the module's expandability. It structures and integrates UAVs / LiDAR, continuous monitoring, and external monitoring equipment, achieving a compact structure and reducing space occupation. The module fixing structure uses mortise and tenon joints and screws, enhancing the structure's strength and impact resistance. All structures use internal wiring, concealing the wiring to prevent direct contact between circuits and air circuits with the air. The power connection uses an internal plug-in type, enhancing structural safety and preventing safety accidents caused by easily damaged or aged wiring. The device as a whole has a certain degree of waterproofing, allowing for exposed use in rainy or snowy weather, reducing costs. Each module is reusable and highly versatile, avoiding cost and resource waste caused by non-interchangeable structural components. The internal power connection enhances system stability.
[0029] The following will further explain the concept, specific technical solution and technical effects of the present invention in conjunction with specific embodiments, so as to fully understand the purpose, features and effects of the present invention. Attached Figure Description
[0030] Figure 1 This is a schematic diagram of the structure of a monitoring equipment placement device for convenient disassembly and transportation according to the present invention;
[0031] Figure 2 This is a schematic diagram of the power box structure of a monitoring equipment placement device for convenient disassembly and transportation according to the present invention;
[0032] Figure 3 This is a schematic diagram of the structure of a convenient disassembly and transportation monitoring equipment placement device and a continuous monitoring equipment fixing module according to the present invention;
[0033] Figure 4 This is a schematic diagram of the external equipment suspension module structure of a monitoring equipment mounting device for convenient disassembly and transportation according to the present invention;
[0034] Figure 5 This is a schematic diagram of the structure of a dual-purpose platform for drone landing / laser radar installation on the top of a monitoring equipment mounting device for convenient disassembly and transportation according to the present invention;
[0035] Figure 6 This is a schematic diagram of the modular assembly and fixing structure of a monitoring equipment placement device for convenient disassembly and transportation according to the present invention;
[0036] In the diagram: 1. Power supply box; 2. Continuous monitoring equipment fixing module; 3. External equipment suspension module; 4. UAV landing / LiDAR mounting platform; 5. Module fixing structure; 31. Distribution box; 32. Emergency battery; 33. Electrical control components; 34. Heat dissipation component box; 35. Power supply slot; 36. External socket; 41. Insulation material; 42. Heat dissipation module; 43. Mounting port; 51. Hanging pole; 52. Fixing foot; 53. Monitoring equipment air intake pipe routing channel; 61. UAV take-off and landing platform; 62. LiDAR mounting platform; 63. Buckle; 71. Tenon and mortise slot; 72. Connecting bracket; 73. Screw hole. Detailed Implementation
[0037] The following describes several preferred embodiments of the present invention to make its technical content clearer and easier to understand. The present invention can be embodied in many different forms of embodiments, which are described exemplarily, and the scope of protection of the present invention is not limited to the embodiments mentioned herein.
[0038] The device includes a power supply box 1, a continuous monitoring equipment mounting module 2, an external equipment suspension module 3, a UAV landing / LiDAR mounting platform 4, and an inter-module fixing structure 5. The power supply box 1 is located at the bottom of the device, and the top of the power supply box 1 is connected to the continuous monitoring equipment mounting module 2. The top of the continuous monitoring equipment mounting module 2 is connected to the UAV landing / LiDAR mounting platform 4. The side of the continuous monitoring equipment mounting module 2 includes the external equipment suspension module 3. The top of the external equipment suspension module 3 is connected to the continuous monitoring equipment mounting module 2. All modules are connected through the inter-module fixing structure 5.
[0039] The power supply box 1 includes a distribution box 31, an emergency battery 32, an electronic control component box, and a heat dissipation component box 34. The emergency battery 32 is located at the bottom and is used to provide power to the equipment during emergency periods. The bottom of the emergency battery 32 includes multiple support rods, which have a certain height and are positioned at a distance from the ground to meet water wading requirements. The top of the emergency battery 32 is connected to the bottom of the electronic control component box and the heat dissipation component box 34. The electronic control component box and the heat dissipation component box 34 are installed close together. The distribution box 31 is installed on the side of the electronic control component box. The top of the electronic control component box 33 includes... Power slot 35; the power slot 35 is used to connect with other modules; the lower right side of the distribution box 31 includes an external socket, and the lower part of the distribution box 31 includes an external socket 36 to provide power to other devices; the distribution box 31 includes a terminal block and multiple outgoing terminals, the terminal block can be directly connected to power supply cables; the heat dissipation component box 34 includes a heat sink; the electrical control component box includes functional modules such as wiring, power control, and power management, used for system-wide power control, power distribution, and power outage response; the electrical control component box
[0040] The continuous monitoring equipment fixing module 2 is a closed structure with an internal cavity; the continuous monitoring equipment fixing module 2 is rectangular; the inner wall of the continuous monitoring equipment fixing module 2 is lined with thermal insulation material 41; the outer wall of the continuous monitoring equipment fixing module 2 includes a heat dissipation module 42 to ensure the optimal operating temperature of the equipment; the heat dissipation module 42 is a radiator; the continuous monitoring equipment fixing module 2 has a socket inside to supply the power needs of the equipment; power supply modules 35 are provided on the upper and lower left rear sides of the continuous monitoring equipment fixing module; power supply modules 35 are provided on the upper and lower sides of the continuous monitoring equipment fixing module 2; the continuous monitoring equipment fixing module 2 has an installation port 43 on its periphery; the installation port 43 adopts a pull-out tenon and mortise structure for installing an external equipment suspension structure module; the front end of the continuous monitoring equipment fixing module 2 is semi-enclosed, including an opening, to facilitate observation of the equipment's operating status at any time;
[0041] The external equipment suspension module 3 is a frame structure, including a hanging rod 51, connecting and fixing feet 52, and a monitoring equipment air inlet pipe routing channel 53; the hanging rod 51 can suspend fixing plates of different specifications as needed to meet the fixing requirements of different external equipment; the external equipment includes external monitoring equipment such as anemometers, meteorological sensors, and miniature monitoring sensors;
[0042] The UAV landing / LiDAR mounting platform 4 is a dual-purpose platform used for placing UAVs and LiDARs. The UAV landing / LiDAR mounting platform 4 has a two-layer design, with the upper layer being the UAV take-off and landing platform 61 and the lower layer being the LiDAR mounting platform 62. The two layers are connected by a hinge design, and the other end is fixed by a buckle 63. The use of the UAV and LiDAR is designed to be either one or the other.
[0043] The module fixing structure 5 is a screw + tenon joint connection, with the inner end designed as a tenon slot 71, the outer end designed as a connecting bearing 72, and the inner end designed as a screw hole 73.
[0044] The mounting device can also provide power support for other one-piece molded devices;
[0045] The installation device includes built-in monitoring equipment such as six parameters of conventional pollutants and a small online VOCs monitoring device, which are installed in the fixed module 2 of the continuous monitoring equipment;
[0046] All structures of the mounting device use internal wiring;
[0047] All parts of the mounting device are waterproof, and the exterior includes a waterproof coating.
[0048] The mounting device may include multiple continuous monitoring equipment fixing modules 2, external equipment suspension modules 3, UAV landing / LiDAR mounting platform 4, and inter-module fixing structure 5;
[0049] The emergency battery 32 includes four support rods at its bottom, located at the four corners;
[0050] Example 1: A convenient disassembly and transportation device for placing monitoring equipment.
[0051] During installation, the power supply box is installed first, followed by the continuous monitoring equipment fixing module. The UAV landing / LiDAR mounting platform and the external equipment suspension module can be installed simultaneously.
[0052] During disassembly, first remove the external equipment suspension module, then the UAV landing / LiDAR mounting platform, then the continuous monitoring equipment fixing module and power supply box, and remove them sequentially from top to bottom.
[0053] When in use, the monitoring equipment, including the continuous monitoring equipment fixed module of lidar and UAV detection equipment installation and device, can be fixedly placed; the external equipment suspension module of meteorological monitoring equipment, miniature atmospheric sensor, continuous monitoring equipment, and small monitoring equipment installation and device can be fixedly placed.
[0054] In summary, this patented technical solution maximizes the utilization of functionality, saves space, reduces costs, and plays a greater role in extreme outdoor conditions and harsh environments. The power supply box adopts an integrated design, offering advantages such as multiple power access modes, short-duration battery life, and external expansion capabilities, increasing the module's expandability. It structurally integrates drones / LiDAR, continuous monitoring, and external monitoring equipment, achieving a compact structure and reducing space occupation. The module fixing structure uses mortise and tenon joints and screws, enhancing structural strength and impact resistance. All structures employ internal, concealed wiring, preventing direct contact between circuits and air passages with the air. The power connection uses an internal plug-in design, enhancing structural safety and preventing safety accidents caused by easily damaged or aged wiring. The device as a whole has a certain degree of waterproofing, allowing for exposed use in rain and snow, reducing costs. Each module is reusable and highly interchangeable, avoiding cost and resource waste caused by non-interchangeable structural components. The internal power connection enhances system stability.
[0055] The preferred embodiments of the present invention have been described in detail above. It should be understood that those skilled in the art can make numerous modifications and variations based on the concept of the present invention without creative effort. Therefore, all technical solutions that can be obtained by those skilled in the art based on the concept of the present invention through logical analysis, reasoning, or limited experimentation on the basis of existing technology should be within the scope of protection defined by the claims.
Claims
1. A convenient disassembly and transportation device for placing monitoring equipment, characterized in that, The device includes a power supply box (1), a continuous monitoring equipment fixing module (2), an external equipment suspension module (3), a UAV landing / LiDAR mounting platform (4), and an inter-module fixing structure (5). The power supply box (1) is located at the bottom of the device, and the top of the power supply box (1) is connected to the continuous monitoring equipment fixing module (2). The top of the continuous monitoring equipment fixing module (2) is connected to the UAV landing / LiDAR mounting platform (4). The side of the continuous monitoring equipment fixing module (2) includes an external equipment suspension module (3). The top of the external equipment suspension module (3) is connected to the continuous monitoring equipment fixing module (2). The modules are connected through the inter-module fixing structure (5). The power supply box (1) includes a distribution box (31), an emergency battery (32), an electrical control component box, and a heat dissipation component box (34); the emergency battery (32) is located at the bottom and is used to provide energy to the equipment during emergency periods; the bottom of the emergency battery (32) includes multiple support rods, the support rods have a certain height, and the distance from the ground meets the requirements for wading; the top of the emergency battery (32) is connected to the bottom of the electrical control component box and the heat dissipation component box (34); the electrical control component box and the heat dissipation component box (34) are installed close together; the distribution box (31) is installed on the side of the electrical control component box; the electrical control component box (32) is installed on the side of the distribution box (31); the electrical control component box (32) is installed on the bottom of the distribution box (32). 33) The top includes a power slot (35); the power slot (35) is used to connect with other modules; the lower right side of the distribution box (31) includes an external socket, and the lower part of the distribution box (31) includes an external socket (36) to provide energy for other devices; the distribution box (31) includes a terminal block and multiple outlet terminals, and the terminal block can be directly connected to the power supply cable; the heat dissipation component box (34) includes a heat sink; the electrical control component box includes functional modules such as wiring, power control, and power management, which are used for the power control, power distribution, and power outage response of the entire system. The continuous monitoring equipment fixing module (2) is a closed structure with an internal cavity; the continuous monitoring equipment fixing module (2) is rectangular; the inner wall of the continuous monitoring equipment fixing module (2) is lined with thermal insulation material (41); the outer wall of the continuous monitoring equipment fixing module (2) includes a heat dissipation module (42) to ensure the optimal operating temperature of the equipment; the heat dissipation module (42) is a radiator; the continuous monitoring equipment fixing module (2) has a socket inside to supply the power needs of the equipment; power supply modules (35) are provided on the left rear side of the upper and lower surfaces of the continuous monitoring equipment fixing module; power supply modules (35) are provided on the upper and lower surfaces of the continuous monitoring equipment fixing module (2); the continuous monitoring equipment fixing module (2) has an installation port (43) on its periphery; the installation port (43) adopts a pull-out tenon structure for installing an external equipment suspension structure module; the front end of the continuous monitoring equipment fixing module (2) is semi-closed, including a gap, so as to observe the operating status of the equipment at any time; The external equipment suspension module (3) is a frame structure, including a hanging rod (51), connecting fixing feet (52) and a monitoring equipment air inlet pipe routing channel (53); the hanging rod (51) can suspend fixing plates of different specifications as needed to meet the fixing requirements of different external equipment; the external equipment includes anemometers, meteorological sensors, miniature monitoring sensors and other external monitoring equipment; The UAV landing / LiDAR mounting platform (4) is a dual-purpose platform used for placing UAVs and LiDARs; the UAV landing / LiDAR mounting platform (4) has a two-layer design, with the upper layer being the UAV take-off and landing platform (61) and the lower layer being the LiDAR mounting platform (62), and the two are connected by a hinge design, with the other end fixed by a buckle (63); the use design of the UAV and LiDAR is in an OR relationship; The inter-module fixing structure (5) is a screw + tenon joint connection, with the inner end designed as a tenon slot (71) and the outer end designed as a connecting support (72), and the inner end designed with screw holes (73).
2. The monitoring equipment placement device for convenient disassembly and transportation as described in claim 1, characterized in that, The mounting device can also provide power support for other one-piece molded devices.
3. The monitoring equipment placement device for convenient disassembly and transportation as described in claim 1, characterized in that, The placement device includes built-in monitoring equipment such as conventional pollutant six parameters and small online VOCs monitoring equipment, which are installed in the fixed module (2) of the continuous monitoring equipment.
4. The monitoring equipment placement device for convenient disassembly and transportation as described in claim 1, characterized in that, All structures of the mounting device use internal wiring.
5. The monitoring equipment placement device for convenient disassembly and transportation as described in claim 1, characterized in that, All parts of the mounting device are waterproof, and the exterior includes a waterproof coating.
6. The monitoring equipment placement device for convenient disassembly and transportation as described in claim 1, characterized in that, The mounting device may include multiple continuous monitoring equipment fixing modules (2), external equipment suspension modules (3), UAV landing / LiDAR mounting platform (4), and inter-module fixing structure (5).
7. The monitoring equipment placement device for convenient disassembly and transportation as described in claim 1, characterized in that, The emergency battery (32) has four support rods at the bottom, located at the four corners.