Automatic monitoring acquisition box convenient to move

By using an modular base and stainless steel enclosure design, combined with solar panels and a wireless intelligent data acquisition terminal, the problems of mobility and stability of the automated monitoring and data acquisition box at the construction site are solved, enabling efficient and convenient construction and management.

CN122084010APending Publication Date: 2026-05-26TIANJIN POLY SHUNXIN TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
TIANJIN POLY SHUNXIN TECH CO LTD
Filing Date
2026-03-06
Publication Date
2026-05-26

AI Technical Summary

Technical Problem

The existing automated monitoring and data acquisition boxes are difficult to move on the construction site, resulting in construction difficulties, high labor intensity, high costs and instability, and complicated key management.

Method used

It adopts an assembled base, stainless steel box, solar panel, battery and wireless intelligent data acquisition terminal, combined with combination lock and expansion bolts to achieve easy movement and stable installation, and uses on-site materials to increase weight and simplify operation.

Benefits of technology

It reduced the labor intensity of construction workers, improved labor efficiency, enhanced the stability and management convenience of the data collection box, and reduced transportation and installation costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses an automatic monitoring acquisition box convenient to move. The device comprises a solar panel, a coded lock, a box body, an assembled base, a solar panel bracket, a storage battery, a controller and a collector. The automatic monitoring acquisition box convenient to move has the following beneficial effects: 1, the automatic monitoring acquisition box can be moved back and forth according to field requirements, so that the risk of being damaged is greatly reduced; 2, the labor intensity of constructors is reduced, and the labor efficiency is improved; and 3, the skill requirements on construction workers are met, the assembly is simple and easy, and the operation is simple, convenient and quick. And 4, filling soil or waste sand and gravel in a construction site can be used as filler, so that the weight of the assembled base is increased, the overall weight of the collection box after weight increase can reach more than 200 kilograms, and the collection box can be completely stabilized. In areas where strong wind frequently occurs, the device can be fixed to the foundation ground through expansion bolts to be protected.
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Description

Technical Field

[0001] This invention belongs to the field of automated monitoring equipment technology, and specifically relates to an automated monitoring and data acquisition box that is easy to move. Background Technology

[0002] In recent years, my country's construction engineering field has been undergoing rapid changes. With the needs of development, construction technology is constantly innovating, but all projects rely on engineering surveying. Engineering surveying mainly includes settlement measurement and displacement measurement.

[0003] With the rapid development of measurement technology, in addition to manual monitoring devices such as total stations and levels, automated monitoring methods are becoming increasingly advanced and widely used at construction sites, especially settlement monitoring perpendicular to the earth's surface and displacement monitoring parallel to the earth's surface.

[0004] Automated settlement monitoring often involves facilities such as buildings, mines, foundation pits, building foundations, railway subgrades, highways, and high slopes. Among these, automated monitoring using level gauges is widely used, while automated monitoring processes are also completed using equipment such as total stations.

[0005] Automated high slope displacement monitoring mainly involves places or facilities such as buildings, mines, foundation pits, building foundations, railway subgrades, highways, and high slopes, and usually uses omnidirectional array displacement meters, GNSS, radar and other means.

[0006] Regardless of the type of automated monitoring method, it is necessary to collect the digital or analog signals obtained from various sensors through a dedicated data acquisition device. The data acquisition device uses the mobile data card of the mobile company to transmit the relevant data to the corresponding IP address on the Internet through the mobile network of the mobile phone signal. The server then processes the data and displays the final measurement results of the automated monitoring on the data platform for querying and analysis.

[0007] In addition, warning values ​​can be set based on the measurement results of automated monitoring. Once the measured value exceeds the warning value, an alarm will be sent to the technician via SMS. Alternatively, an alarm bell can be connected to issue a corresponding alarm signal.

[0008] Data acquisition devices typically operate in two states: active and dormant, and both require a power source. Furthermore, the acquisition device needs to send command signals to the sensors during data acquisition, which also requires a power source. Battery power is commonly used.

[0009] To maintain a continuous supply of power to the battery, solar panels or small wind turbines are needed to charge it. The charging process is controlled by a controller.

[0010] The aforementioned solar panels, controller, data collector, and battery constitute the basic configuration for data collection on construction sites. Typically, a data collection box is needed to house and install these components. Depending on the power generation method, solar panels can also be powered by small wind turbines or a combination of solar panels and wind turbines. Currently, wind turbines are not commonly used.

[0011] In addition, in order to meet the requirements of preventing the collection box from tipping over and resisting wind, it must be fixed in place to make it stable.

[0012] Automated monitoring data acquisition boxes are the core nodes connecting the front-end sensors and back-end monitoring systems of automated monitoring. They undertake the key functions of data acquisition, temporary storage, preprocessing, and transmission. The rationality of their design and the standardization of their installation directly determine the stability, data accuracy, and operation and maintenance efficiency of the entire monitoring system. For example, there are data acquisition boxes for automated slope monitoring using automatic telemetry omnidirectional displacement sensors or data acquisition boxes for roadbed settlement monitoring using level gauges. However, due to the constantly changing construction progress, the places where these data acquisition boxes can be placed often need to become construction sites. In other words, it is impossible to find a long-term stable location for the data acquisition boxes on the construction site. Therefore, whether the data acquisition boxes can be moved at any time becomes a core issue.

[0013] At the same time, since automated monitoring often involves not just one monitoring point, but many monitoring points, if ordinary padlocks are used, many keys and key identification are required, which makes storage troublesome and increases the management workload.

[0014] Currently, most automated monitoring and data acquisition boxes are constructed with bricks and cement, resulting in a massive workload, high transportation costs, and high labor intensity. Furthermore, materials often require significant manual labor to move uphill, further increasing labor intensity, reducing efficiency, and wasting time and effort; additionally, heavy items are difficult to move uphill.

[0015] Current automated monitoring and data acquisition boxes also include column-mounted types, but these require separate battery installation devices, as well as digging pits and pouring cement to fix anchor bolts, resulting in high costs, low efficiency, and high labor intensity. In addition, if the overall weight of the acquisition box is too light, it will be unstable and may be blown over by strong winds. Summary of the Invention

[0016] To address the aforementioned problems, the present invention aims to provide an automated monitoring and data acquisition box that is easy to move.

[0017] To achieve the above objectives, the present invention provides a portable automated monitoring and data acquisition box comprising a solar panel, a combination lock, a box body, an assembled base, a solar panel bracket, a storage battery, a controller, and a data acquisition unit. The assembled base is a rectangular structure with its lower end fixed to the foundation ground. The lower end of the box body is fixed to the top surface of the assembled base, and a door is provided on one side. The storage battery, controller, and data acquisition unit are housed inside, and latches are provided at corresponding locations on the door and its opening. The combination lock is mounted on the latches. The lower end of the solar panel bracket is mounted on the top surface of the box body. The solar panel is mounted at an angle on the solar panel bracket. The controller is electrically connected to the solar panel, data acquisition unit, and storage battery, and wirelessly connected to a remote terminal.

[0018] The data acquisition device uses the HC-M610 wireless intelligent data acquisition terminal.

[0019] The assembled base is a modular structure, comprising an upper frame, four side support plates, a lower frame, a base plate, and filler material. The upper and lower frames are arranged horizontally, one above the other. The upper and lower ends of the four side support plates are respectively connected to the lower frame and its four sides. The base plate is mounted on the lower frame. The filler material is placed within the space enclosed by the four side support plates and the base plate for weight increase.

[0020] The upper and lower frames are both made of angle steel welded together; the side support plates and the bottom plate are both made of galvanized steel plates; and the filling material is soil or waste sand and gravel from the construction site.

[0021] The upper and lower ends of the side support plate are bolted to the upper and lower frames.

[0022] The assembled base is fixed to the foundation ground by expansion bolts and right-angle brackets through its lower frame.

[0023] The enclosure is made of stainless steel and is bolted to the upper frame of the assembled base.

[0024] The edges of the base plate are fixed to the four sides of the lower frame with bolts.

[0025] The portable automated monitoring and data acquisition box provided by this invention has the following beneficial effects:

[0026] 1. It can be moved back and forth as needed on site, greatly reducing the risk of damage.

[0027] 2. It reduced the labor intensity of construction workers and improved labor efficiency;

[0028] 3. It solves the skill requirements for construction workers, and the assembly is simple and easy, and the operation is simple and quick.

[0029] 4. Backfill soil or waste sand and gravel from the construction site can be used as filler to increase the weight of the assembled base. The overall weight of the collection box can reach over 200 kg, which is sufficient to stabilize the collection box. In areas prone to strong winds, expansion bolts can be used to secure it to the foundation for protection. Attached Figure Description

[0030] Figure 1 The rear view of the assembled base section of the mobile automated monitoring and acquisition box provided by the present invention is shown in the figure.

[0031] Figure 2 Side view of the mobile automated monitoring and data acquisition box provided by the present invention.

[0032] Figure 3 The present invention provides a rear view of an easily movable automated monitoring and data acquisition box that displays the internal structure of the box.

[0033] Figure 4 This is a schematic diagram of the lower frame of the mobile automated monitoring and data acquisition box provided by the present invention.

[0034] Figure 5 This is a schematic diagram of the upper frame of the mobile automated monitoring and data acquisition box provided by the present invention. Detailed Implementation

[0035] The present invention will now be described in detail with reference to the accompanying drawings and specific embodiments.

[0036] like Figures 1-5 As shown, the mobile automated monitoring and data acquisition box provided by the present invention includes a solar panel 1, a combination lock 2, a box body 3, an assembled base 4, a solar panel bracket 9, a storage battery 15, a controller 13, and a data acquisition device 14. The assembled base 4 is a rectangular structure with its lower end fixed to the foundation ground. The lower end of the box body 3 is fixed to the top surface of the assembled base 4, and a door is provided on one side. The storage battery 15, controller 13, and data acquisition device 14 are located inside, and latches are provided at corresponding locations on the door and its opening. The combination lock 2 is mounted on the latches. The lower end of the solar panel bracket 9 is mounted on the top surface of the box body 3. The solar panel 1 is mounted on the solar panel bracket 9 at an angle. The controller 13 is electrically connected to the solar panel 1, the data acquisition device 14, and the storage battery 15, and is also wirelessly connected to a remote terminal.

[0037] The data acquisition device 14 is an HC-M610 wireless intelligent data acquisition terminal.

[0038] The assembled base 4 is a modular structure, including an upper frame 5, four side support plates 6, a lower frame 11, a base plate 12, and filler 10. The upper frame 5 and the lower frame 11 are arranged horizontally. The upper and lower ends of the four side support plates 6 are respectively connected to the lower frame 11 and its four sides. The base plate 12 is installed on the lower frame 11. The filler 10 is placed in the space enclosed by the four side support plates 6 and the base plate 12 for adding weight.

[0039] The upper frame 5 and the lower frame 11 are both made of angle steel welded together; the side support plate 6 and the bottom plate 12 are both made of galvanized steel plate; the filling material 10 is soil or waste sand and gravel from the construction site.

[0040] The upper and lower ends of the side support plate 6 are bolted to the upper frame 5 and the lower frame 11.

[0041] The assembled base 4 is fixed to the foundation ground by expansion bolts 7 and right-angle brackets 8 through its lower frame 11.

[0042] The housing 3 is made of stainless steel and its lower end is fixed to the upper frame 5 of the assembled base 4 with bolts.

[0043] The edges of the base plate 12 are fixed to the four sides of the lower frame 11 with bolts.

[0044] The installation and disassembly method of the portable automated monitoring and data acquisition box provided by this invention is described below:

[0045] When installing the mobile automated monitoring and data acquisition box provided by this invention, the construction personnel first assemble the modular base 4 at the construction site according to the above method. Then, the lower frame 11 is fixed to the foundation ground using expansion bolts 7 and right-angle brackets 8. Next, the lower end of the box body 3 is fixed to the upper frame 5 of the modular base 4. Then, the controller 13, data acquisition unit 14, and battery 15 are installed inside the box body 3. The lower end of the solar panel bracket 9 is installed on the top surface of the box body 3. The solar panel 1 is installed on the solar panel bracket 9 at an angle, and the cables of each electrical component are connected. Finally, the combination lock 2 is locked, thus completing the entire installation process. In addition, if multiple operating condition monitoring points need to be set, the combination lock 2 on each automated monitoring and data acquisition box can be set to a unified password, or different passwords can be set according to the project number.

[0046] During use, under the control of the controller 13, the data acquisition device 14 collects monitoring data from various connected sensors. The controller 13 then wirelessly uploads the data in real time to remote terminals, including computers and mobile phones, via the Internet, so that relevant personnel can query the actual monitoring data in real time or at regular intervals.

[0047] When it is necessary to disassemble the automated monitoring and acquisition box, simply follow the reverse order of the above installation. Then, quickly transfer all disassembled parts to the next monitoring point and reinstall them, which is very convenient.

Claims

1. An automated monitoring collection kit for ease of movement, characterized by: The movable automatic monitoring collection box comprises a solar panel (1), a password lock (2), a box body (3), an assembled base (4), a solar panel support (9), a storage battery (15), a controller (13) and a collector (14); the assembled base (4) is a cuboid structure and is fixed at the bottom of the base ground; the bottom of the box body (3) is fixed on the top surface of the assembled base (4), one side surface is provided with a box door, the inside is provided with the storage battery (15), the controller (13) and the collector (14), and the box door and the corresponding position of the box door opening are both provided with a lock buckle; the password lock (2) is installed on the lock buckle; the bottom of the solar panel support (9) is installed on the top surface of the box body (3); the solar panel (1) is installed on the solar panel support (9) in an inclined manner; the controller (13) is electrically connected with the solar panel (1), the collector (14) and the storage battery (15) respectively, and is wirelessly connected with a remote terminal.

2. The mobile automated monitoring collection kit of claim 1, wherein: The collector (14) is an HC-M610 type wireless intelligent collection terminal.

3. The mobile automated monitoring collection kit of claim 1, wherein: The assembled base (4) is a spliced structure and comprises an upper frame (5), four side support plates (6), a lower frame (11), a bottom plate (12) and a filler (10); the upper frame (5) and the lower frame (11) are arranged in a horizontal manner; the upper and lower ends of the four side support plates (6) are connected to the four edges of the lower frame (11); the bottom plate (12) is installed on the lower frame (11); the filler (10) is arranged in the space surrounded by the four side support plates (6) and the bottom plate (12) and is used for weight increase.

4. The mobile automated monitoring collection kit of claim 3, wherein: The upper frame (5) and the lower frame (11) are both made of angle steel welding; the side support plates (6) and the bottom plate (12) are both made of galvanized steel plate; and the filler (10) is made of soil or waste sand and stone on the construction site.

5. The mobile automated monitoring collection kit of claim 3, wherein: The upper and lower ends of the side support plates (6) are connected to the upper frame (5) and the lower frame (11) by bolts.

6. The mobile automated monitoring collection kit of claim 3, wherein: The assembled base (4) is fixed on the base ground by the lower frame (11) on the assembled base (4) through expansion bolts (7) and right-angle corner brackets (8).

7. The mobile automated monitoring collection kit of claim 3, wherein: The edges of the bottom plate (12) are fixed on the four edges of the lower frame (11) by bolts.

8. The mobile automated monitoring collection kit of claim 1, wherein: The box body (3) is made of stainless steel and is fixed on the upper frame (5) of the assembled base (4) by bolts.