Positioning electronic boundary post
By integrating positioning electronic devices into boundary markers, the problem of improper installation of traditional boundary markers has been solved, enabling real-time monitoring and remote transmission of boundary marker positions, thereby improving the management efficiency and safety of water conservancy projects.
Patent Information
- Application Number
- CN202520232569.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-14
- Publication Date
- 2026-02-06
- Estimated Expiration
- 2035-02-14
AI Technical Summary
Improper installation of traditional concrete boundary markers in water conservancy projects can lead to coordinate errors, improper positioning, and non-compliance with spacing requirements. This makes it difficult to achieve large-scale, long-term, stable monitoring and timely feedback. Furthermore, they are susceptible to natural or human-caused damage, affecting the safety of water conservancy projects and the ecological environment of rivers and lakes.
Design an electronic boundary marker for positioning, integrating a square tube boundary marker body, waterproof box, main unit housing, positioning module, power module, communication module and various sensors. It adopts a combination of solar power supply and battery storage to realize real-time monitoring and remote transmission of boundary marker position, and is equipped with temperature, humidity, attitude and water immersion sensors as well as vibration monitoring to ensure stable system operation.
It enables real-time monitoring and remote transmission of boundary marker locations, improving management efficiency and accuracy, providing reliable boundary management support, and enhancing the level of refined water conservancy management.
Smart Images

Figure CN223883774U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to water conservancy engineering technical field, concretely is the positioning electronic boundary stake for water conservancy engineering land demarcation. BACKGROUND
[0002] The water conservancy engineering land demarcation work is the important measure for protecting water resources, water environment and water engineering according to law. In water conservancy engineering, boundary stake is not only the important statutory marker of the real position of the management and protection range boundary, but also the discrimination of important control lines such as reservoir characteristic water level and river red line.
[0003] In the installation process of traditional concrete boundary stake, due to the negligence of staff, coordinate error, improper installation position, installation spacing not meeting the requirements and the like are easily generated.
[0004] Such problems make water conservancy boundary stake become the weak link in water conservancy fine management, and it is difficult to effectively eradicate by manpower alone, thereby affecting water conservancy safety, destroying river and lake water ecological environment and causing water dispute.
[0005] Firstly, boundary stake is usually distributed in remote areas, and manual patrol is time-consuming and laborious and difficult to find problems in time; secondly, boundary stake may be displaced, inclined or damaged due to natural factors or human damage, but effective detection means are lacked; thirdly, the number of boundary stake is huge, how to realize large-scale, long-term and stable monitoring and timely feedback of monitoring results to control center is also a problem to be solved.
[0006] Therefore, we propose a positioning electronic boundary stake to solve the above problems. SUMMARY
[0007] The utility model aims at the problem that traditional concrete boundary stake is improperly installed, leading to difficult land boundary operation and maintenance management of water conservancy engineering, and provides a positioning electronic boundary stake to provide guarantee for boundary management and operation safety.
[0008] To achieve the above object, the utility model provides the following technical scheme:
[0009] A positioning electronic boundary stake, including square tube boundary stake main part, the upper side of square tube boundary stake main part is fixed with waterproof box, the waterproof box is equipped with mainframe box and power module, the mainframe box is equipped with positioning module and treater in, the positioning module is used for obtaining the position of square tube boundary stake main part, and is transmitted to control center.
[0010] Further, the power module includes a solar power supply unit and a lithium ion battery pack, and the solar power supply unit is located in the waterproof box near the top.
[0011] Further, the solar power supply unit comprises a solar photovoltaic panel, a storage battery and a battery charging management module, an electric energy output end of the solar photovoltaic panel is connected with an input end of the battery charging management module, the battery charging management module is connected with the storage battery, and an output end of the battery charging management module is connected with a power supply end of the main box body.
[0012] Further, the solar photovoltaic panel is equivalent in size to the top of the square tube boundary pile body.
[0013] Further, the positioning module comprises a Beidou GPS positioning antenna and a Beidou GPS positioning module.
[0014] Further, the main box body is provided with a communication module, the communication module comprises a 4G communication module, a Rola communication module and a Bluetooth communication module; the 4G communication module and the Rola communication module are used for transmitting the position of the square tube boundary pile body to a control center, and the Bluetooth communication module is used for communicating with a user end app to realize installation and debugging of the boundary pile.
[0015] Further, the main box body is provided with a vibration monitoring module, the vibration monitoring module adopts an XYZ three-axis monitoring sensor and is used for monitoring whether the boundary pile abnormally vibrates or tilts in real time.
[0016] Further, the main box body is provided with a vibration monitoring module, the vibration monitoring module adopts an XYZ three-axis monitoring sensor and is used for monitoring whether the boundary pile abnormally vibrates or tilts in real time.
[0017] Compared with the prior art, the positioning electronic boundary pile has the beneficial effects that:
[0018] The positioning electronic boundary pile of the utility model realizes real-time monitoring and remote transmission of the position of the boundary pile, has simple structure, is easy to install and produce, and achieves the purpose of controlling cost.
[0019] The main box body of the utility model integrates the positioning module, the processor and the communication module, can acquire the position of the boundary pile and transmit the position to the control center, adopts the combination of solar power supply and storage battery to ensure long-term stable operation of the system, is provided with the temperature and humidity sensor, the attitude sensor and the water immersion sensor to comprehensively monitor the working state of the boundary pile, and adopts the three-axis acceleration sensor to monitor whether the boundary pile abnormally vibrates in real time, and help users and management departments to timely find problems such as damage of the boundary pile.
[0020] The utility model discloses a variety of sensor's cooperation work has realized the all -round intelligent monitoring of boundary stake, has improved the efficiency and accuracy of boundary stake management greatly, and organic combination of the application scheme of boundary stake, boundary line management and operation safety guarantee is proposed to water conservancy business, the research and development of intelligent boundary stake will help to promote the fine management level and efficiency of water conservancy, also can be widely applied to other industry reconnaissance boundary demarcation work. BRIEF DESCRIPTION OF DRAWINGS
[0021] Figure 1 It is the principle diagram of the utility model. DETAILED DESCRIPTION
[0022] The technical scheme in the embodiments of the utility model will be apparently and completely described in combination with the drawings in the embodiments of the utility model, and obviously, the described embodiments are only part of the embodiments of the utility model, not all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by the ordinary skill in the art without creative labor belong to the range of protection of the utility model.
[0023] Please refer to Figure 1 The utility model provides a kind of positioning electronic boundary stake, including square tube boundary stake main body, waterproof box is fixed in the upper of square tube boundary stake main body, host box and power module are equipped in waterproof box, positioning module and processor are equipped in host box, the position of square tube boundary stake main body is obtained by positioning module, and is transmitted to control center;
[0024] The positioning module includes a Beidou GPS positioning antenna and a Beidou GPS positioning module.
[0025] In the embodiment, the positioning electronic boundary stake is installed with waterproof box on the square tube boundary stake main body, contains host box and power module, host box is integrated with positioning module, processor and communication module, simple structure, easy to install, convenient to manage, positioning module obtains the position information of square tube boundary stake main body, and stores the position information to the database of control center, realizes the real-time monitoring and remote transmission of boundary stake position, for subsequent business application uses.
[0026] In one example, the power module includes a solar power unit and a lithium ion battery pack, and the solar power unit is located in the waterproof box near the top;
[0027] The solar power unit includes a solar photovoltaic panel, a storage battery and a battery charging management module, the power output end of the solar photovoltaic panel is connected with the input end of the battery charging management module, the battery charging management module is connected with the storage battery, and the output end of the battery charging management module is connected with the power supply end of the host box.
[0028] The size of the solar photovoltaic panel is equivalent to the size of the top of the square tube boundary stake body.
[0029] In the embodiment, the power module adopts a combination of solar power supply and storage battery, so as to ensure long-term stable operation of the system, reduce cost while ensuring system reliability.
[0030] In one example, the host box is provided with a communication module, which includes a 4G communication module, a Rola communication module and a Bluetooth communication module; the 4G communication module and the Rola communication module are used to transmit the position of the square tube boundary stake body to the control center, and the Bluetooth communication module is used to communicate with the user end app to realize installation and debugging of the boundary stake.
[0031] In one example, the host box is provided with a temperature and humidity sensor, an attitude sensor and a water immersion sensor, which are used to monitor the working state of the host, the attitude of the boundary stake and whether the water level around the boundary stake reaches the position of the boundary stake host.
[0032] The host box is provided with a vibration monitoring module, which adopts an XYZ three-axis monitoring sensor, can monitor whether the boundary stake abnormally vibrates in real time, and helps users and management departments to find problems such as damage of the boundary stake in time.
[0033] In the embodiment, through the cooperative work of various sensors, omnibearing intelligent monitoring of the boundary stake is realized, the efficiency and accuracy of boundary stake management are greatly improved, the Internet of Things sensing technology and water conservancy business application are organically combined, and reliable technical support is provided for boundary management.
[0034] Although the embodiments of the utility model have been shown and described, it can be understood by those skilled in the art that various changes, modifications, replacements and variations can be made to the embodiments without departing from the principles and spirits of the utility model, the scope of the utility model is defined by the appended claims and their equivalents.
Claims
1. A positioning electronic boundary post, characterized by The utility model relates to a square tube boundary stake, which comprises a square tube boundary stake body, a waterproof box fixed above the square tube boundary stake body, a main box body and a power module arranged in the waterproof box, a positioning module and a processor arranged in the main box body, the positioning module is used to obtain the position of the square tube boundary stake body and transmit the position to a control center, and the processor is used to process the position data. The main box body is provided with a temperature and humidity sensor, an attitude sensor and a water immersion sensor, which are used to monitor the working state of the main machine, the attitude of the boundary stake and whether the water level around the boundary stake reaches the position of the boundary stake main machine. The main box body is provided with a vibration monitoring module, which adopts an XYZ three-axis monitoring sensor and is used to monitor whether the boundary stake abnormally vibrates or tilts in real time.
2. The electronic boundary marker of claim 1, wherein, The power module comprises a solar power supply unit and a lithium ion battery pack, and the solar power supply unit is arranged in the waterproof box and located close to the top.
3. The electronic boundary marker of claim 2, wherein, The solar power supply unit comprises a solar photovoltaic panel, a storage battery and a battery charging management module, the power output end of the solar photovoltaic panel is connected with the input end of the battery charging management module, the battery charging management module is connected with the storage battery, and the output end of the battery charging management module is connected with the power supply end of the main box body.
4. The electronic boundary marker of claim 3, wherein, The size of the solar photovoltaic panel is equivalent to the size of the top of the square tube boundary stake body.
5. The electronic boundary marker of claim 1, wherein, The positioning module comprises a Beidou GPS positioning antenna and a Beidou GPS positioning module.
6. The electronic boundary marker of claim 1, wherein, The main box body is provided with a communication module, which comprises a 4G communication module, a Rola communication module and a Bluetooth communication module; the 4G communication module and the Rola communication module are used to transmit the position of the square tube boundary stake body to the control center, and the Bluetooth communication module is used to communicate with a user terminal app to realize the installation and debugging of the boundary stake.