Wind power plant intelligent early warning monitoring device integrated with multi-source sensing information
By integrating multi-source sensor information and using a rotating structure to adjust the monitoring angle, the intelligent early warning and monitoring device for wind farms solves the problem of data bias in traditional wind farm monitoring technology. It enables accurate and comprehensive monitoring and timely early warning of the wind farm's operating status, ensuring the stability and economic benefits of the wind farm.
Patent Information
- Application Number
- CN202520527720.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-25
- Publication Date
- 2026-01-27
- Estimated Expiration
- 2035-03-25
AI Technical Summary
Traditional wind farm monitoring technologies mainly rely on single-type sensors or combinations of a small number of sensors, which makes it difficult to fully capture subtle changes under the complex operating conditions of wind farms. This results in biased and incomplete monitoring data, making it impossible to detect potential faults in a timely manner. It is also prone to missed or false alarms, which affects the stability of equipment operation and economic benefits.
The intelligent early warning and monitoring device for wind farms integrates multi-source sensor information. It collects data on wind speed, wind direction, temperature, humidity, and other aspects through the monitor, and uses a rotating structure to adjust the monitoring angle to achieve all-round monitoring. Combined with the data processing module, it performs comprehensive analysis and provides accurate early warning information.
It enables precise and comprehensive monitoring of the wind farm's operating status, avoids overlooking potential faults, provides timely and accurate early warning information, and ensures the stable operation and efficient power generation of the wind farm.
Smart Images

Figure CN223841220U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of intelligent early warning and monitoring technology, specifically to an intelligent early warning and monitoring device for wind farms that integrates multi-source sensor information. Background Technology
[0002] As an important production base for clean energy, the safe, stable, and efficient operation of wind farms is crucial for energy supply and sustainable development. The operating environment of wind farms is complex and variable, involving the monitoring and analysis of various physical quantities, such as wind speed, wind direction, temperature, humidity, and equipment vibration. Multi-source sensor information can comprehensively reflect the operating status of wind farms from different dimensions. By integrating this information, a more accurate and comprehensive operation monitoring system can be built, thereby detecting potential risks in advance, realizing intelligent early warning, and ensuring the reliable operation of wind farms. This is of great significance for improving power generation efficiency, reducing operation and maintenance costs, and ensuring grid stability.
[0003] Traditional wind farm monitoring technologies mainly rely on single-type sensors or simple combinations of a few sensors, making it difficult to comprehensively capture the various subtle changes under the complex operating conditions of wind farms. This limitation leads to one-sided and incomplete monitoring data, making it impossible to detect some potential faults in a timely manner. Under complex operating conditions such as sudden wind speed changes and initial wear of equipment components, traditional technologies are prone to missed or false alarms. Not only can they fail to provide effective early warnings, but inaccurate information may also mislead operation and maintenance decisions, further delaying fault handling, increasing equipment downtime, and ultimately affecting the overall power generation and economic benefits of the wind farm. To address this, we propose an intelligent early warning and monitoring device for wind farms that integrates multi-source sensor information. Utility Model Content
[0004] (a) Technical problems to be solved
[0005] To address the shortcomings of existing technologies, this invention provides an intelligent early warning and monitoring device for wind farms that integrates multi-source sensor information, thus solving the aforementioned problems.
[0006] (II) Technical Solution
[0007] To achieve the above-mentioned objectives, this utility model provides the following technical solution: an intelligent early warning and monitoring device for wind farms integrating multi-source sensor information, comprising a base plate, a line mounting rod fixedly installed on the top of the base plate, a line mounting structure provided on the line mounting rod, a data processing box fixedly installed on the top of the line mounting structure, a data processing module fixedly installed inside the data processing box, a processing box side door rotatably installed on the side of the data processing box, a connecting structure provided on the top of the data processing box, an installation box fixedly installed on the top of the connecting structure, a control panel fixedly installed on the outer side of the installation box, an alarm structure provided on the top of the installation box, a support frame fixedly installed at the bottom inside the installation box, a monitoring structure fixedly installed on the top of the support frame, and a rotating structure provided below the support frame corresponding to the bottom inside the installation box.
[0008] Preferably, the line installation structure includes a line inlet / outlet and an installation platform. The line installation pole has a line inlet / outlet on its side. A dust cover is movably installed on the outside of the line inlet / outlet. An installation platform is fixedly installed on the top of the line installation pole. A data processing box is fixedly installed on the top of the installation platform.
[0009] Preferably, the connection structure includes a first connecting rod, a connecting plate, a connecting bolt, and a second connecting rod. The first connecting rod is fixedly installed at the top center of the data processing box. The top of the first connecting rod and the bottom of the second connecting rod are both fixedly connected to the connecting plate. The first connecting rod and the connecting plate are fixedly connected by the connecting bolt. The top of the second connecting rod is fixedly connected to a mounting box.
[0010] Preferably, the warning device structure includes a warning device and a canopy. The warning device is fixedly installed on both sides of the top of the mounting box, and the canopy is fixedly installed on the top of the mounting box.
[0011] Preferably, the monitoring structure includes a monitor, a support base, and a support rod. The support rod is fixedly installed on the top of the support frame, and a rotating shaft is rotatably installed between the support rod and the center of the support frame. The support base is fixedly installed on the rotating shaft. The support base is concave, and a set of meshing bevel gears is rotatably installed inside the concave shape of the support base. The monitor is fixedly installed on the top of the concave shape of the support base.
[0012] Preferably, the rotating structure includes a rotary motor, a worm gear, and a worm wheel. The rotary motor is fixedly mounted on the bottom surface inside the mounting box via a motor mounting bracket. The output shaft of the rotary motor is fixedly connected to the worm gear, which meshes with the worm wheel. The worm wheel is fixedly mounted on one bottom end of the rotating shaft, and the other end of the worm gear is fixedly connected to the bottom surface inside the mounting box via a bearing seat.
[0013] (III) Beneficial Effects
[0014] Compared with the prior art, this utility model provides an intelligent early warning and monitoring device for wind farms that integrates multi-source sensor information, and has the following beneficial effects:
[0015] 1. This intelligent early warning and monitoring device for wind farms integrates multi-source sensor information. Through the monitor, it can collect data on wind speed, wind direction, temperature, humidity, equipment vibration, and other aspects, which can comprehensively reflect the operating status of the wind farm from different dimensions. It can quickly sense and detect data. The bevel gear in the monitoring structure works with the rotating shaft to drive the monitor to collect data from multiple angles, making the data more accurate and comprehensive. This effectively avoids the omission of potential faults and provides accurate information to operation and maintenance personnel in advance, ensuring the stable operation of the wind farm.
[0016] 2. This intelligent early warning and monitoring device for wind farms, integrating multi-source sensor information, uses a rotating motor to drive a worm gear, which in turn drives a worm wheel to rotate. This causes the monitoring structure fixed on the shaft to rotate, allowing the monitor to flexibly adjust the monitoring angle and achieve all-round monitoring. For example, in wind farms, the operating status of equipment in different areas may vary, which traditional monitoring equipment may not be able to cover. According to actual needs, the rotating structure can be used to adjust the monitoring angle, expand the monitoring range, better adapt to the complex terrain and equipment layout of wind farms, comprehensively grasp the operating status of wind farms, provide more sufficient data support for intelligent early warning, and ensure the safe and efficient operation of wind farms. Attached Figure Description
[0017] Figure 1 This is a schematic diagram of the structure of this utility model;
[0018] Figure 2 This is a schematic diagram of the line entrance and exit of this utility model;
[0019] Figure 3 for Figure 2 A magnified view of part A in the diagram;
[0020] Figure 4 This is a schematic diagram of the side door of the processing box of this utility model;
[0021] Figure 5 for Figure 3 A magnified view of part B in the diagram.
[0022] In the diagram: 1. Base plate; 2. Line mounting pole; 3. Line inlet / outlet; 4. Mounting platform; 5. Data processing box; 6. Side door of the processing box; 7. Connecting rod one; 8. Connecting plate; 9. Connecting bolt; 10. Connecting rod two; 11. Mounting box; 12. Control panel; 13. Early warning device; 14. Canopy; 15. Monitor; 16. Support base; 17. Support rod; 18. Support frame; 19. Motor mounting base; 20. Rotary motor; 21. Worm gear; 22. Worm wheel; 23. Bearing seat; 24. Bevel gear; 25. Shaft. Detailed Implementation
[0023] 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.
[0024] Please see Figure 1-5 A wind farm intelligent early warning and monitoring device integrating multi-source sensor information includes a base plate 1, a line mounting pole 2 fixedly installed on the top of the base plate 1, a line mounting structure set on the line mounting pole 2, a data processing box 5 fixedly installed on the top of the line mounting structure, a data processing module fixedly installed inside the data processing box 5, a processing box side door 6 rotatably installed on the side of the data processing box 5, a connection structure set on the top of the data processing box 5, an installation box 11 fixedly installed on the top of the connection structure, a control panel 12 fixedly installed on the outer side of the installation box 11, an alarm structure set on the top of the installation box 11, a support frame 18 fixedly installed at the bottom inside the installation box 11, a monitoring structure fixedly installed on the top of the support frame 18, and a rotating structure set below the support frame 18 corresponding to the bottom inside the installation box 11.
[0025] Furthermore, the line installation structure includes line inlet / outlet 3 and mounting platform 4. The line inlet / outlet 3 is located on the side of the line mounting pole 2. A dust cover is movably installed on the outside of the line inlet / outlet 3. The mounting platform 4 is fixedly installed on the top of the line mounting pole 2. A data processing box 5 is fixedly installed on the top of the mounting platform 4. In the wind farm environment, the line inlet / outlet 3 is not only a channel for data transmission lines, ensuring that cables of different thicknesses and types can enter and exit in an orderly manner. The dust cover is made of sealed rubber material, which fits tightly against the edge of the line inlet / outlet 3, effectively blocking impurities such as wind, sand, and rainwater, preventing them from entering the interior of the line mounting pole 2, and avoiding problems such as short circuits or signal interference caused by moisture and dust accumulation. The mounting platform 4 has a certain shock absorption function, and adopts a design that combines rubber pads and a metal frame, which can reduce the impact of wind farm equipment vibration or external environmental vibration on the data processing box 5, ensuring the stable operation of the data processing module inside the data processing box 5.
[0026] Furthermore, the connection structure includes a first connecting rod 7, a connecting plate 8, a connecting bolt 9, and a second connecting rod 10. The first connecting rod 7 is fixedly installed at the top center of the data processing box 5. The top of the first connecting rod 7 and the bottom of the second connecting rod 10 are both fixedly connected to the connecting plate 8. The first connecting rod 7 and the connecting plate 8 are fixedly connected by the connecting bolt 9. The top of the second connecting rod 10 is fixedly connected to the mounting box 11. The first connecting rod 7 and the second connecting rod 10 of the connection structure are made of high-strength aluminum alloy, which reduces the overall weight of the device while ensuring structural strength. The length of the first connecting rod 7 and the second connecting rod 10 ensures that the distance between the data processing box 5 and the mounting box 11 meets the requirements of the line connection without causing mutual interference due to excessive distance. The connecting bolt 9 has an anti-loosening function and adopts a special thread design and anti-loosening washers. In the long-term vibration environment of the wind farm, it can effectively prevent the connection from loosening, ensure the stability of the connection between the data processing box 5 and the mounting box 11, and avoid data transmission or component damage due to loose connection.
[0027] Furthermore, the warning device structure includes a warning device 13 and a canopy 14. The warning device 13 is fixedly installed on both sides of the top of the mounting box 11, and the canopy 14 is fixedly installed on the top of the mounting box 11. The warning device 13 has multiple warning modes. In addition to the common audible and visual alarms, it can also send warning information to the mobile phones or monitoring terminals of maintenance personnel through a wireless communication module, ensuring that maintenance personnel can receive the alarm in a timely manner under any circumstances. Its light uses high-brightness LED lights, which can be clearly seen in strong light or in bad weather. The sound alarm has multiple frequency and volume adjustment functions, which can be adjusted according to the environmental noise of the wind farm. The canopy 14 adopts a tilted design, which allows rainwater to slide off quickly and avoid water accumulation from damaging the warning device 13. At the same time, the surface of the canopy 14 is coated with an anti-ultraviolet coating, which can effectively resist aging caused by long-term exposure to sunlight and extend its service life.
[0028] Furthermore, the monitoring structure includes a monitor 15, a support base 16, and a support rod 17. The support rod 17 is fixedly installed on the top of the support frame 18. A rotating shaft 25 is rotatably installed between the support rod 17 and the support frame 18. The support base 16 is fixedly installed on the rotating shaft 25. The support base 16 is concave. A set of meshing bevel gears 24 is rotatably installed inside the concave shape of the support base 16. The monitor 15 is fixedly installed on the top of the concave shape of the support base 16. The monitor 15 adopts a high-precision sensor array, which can quickly and accurately collect various operating data of the wind farm. The concave design of the support base 16 not only provides installation space for the bevel gears 24, but also protects the internal structure. The inner wall of the concave shape is made of smooth wear-resistant material to reduce friction loss when the bevel gears 24 rotate. The bevel gears 24 have the characteristics of smooth transmission and strong load-bearing capacity, which can ensure that the monitor 15 moves smoothly when adjusting the angle and ensure the accuracy of data acquisition.
[0029] Furthermore, the rotating structure includes a rotary motor 20, a worm gear 21, and a worm wheel 22. The rotary motor 20 is fixedly mounted on the bottom surface inside the mounting box 11 via a motor mounting base 19. The output shaft of the rotary motor 20 is fixedly connected to the worm gear 21, which meshes with the worm wheel 22. The worm wheel 22 is fixedly mounted on one end of the bottom of the rotating shaft 25. The other end of the worm gear 21 is fixedly connected to the bottom surface inside the mounting box 11 via a bearing seat 23. The rotary motor 20 can provide stable power output to ensure smooth rotation of the monitoring structure. The motor mounting base 19 adopts an anti-vibration design and is connected to the bottom of the mounting box 11 via rubber shock-absorbing pads to reduce the impact of vibrations generated by the rotary motor 20 during operation on other components. The helix angle of the worm gear 21 and the tooth ratio of the worm wheel 22 achieve a large transmission ratio, enabling the rotary motor 20 to drive the monitoring structure at a lower speed for precise angle adjustment, meeting the requirements for high-precision control of the monitoring angle in the complex environment of wind farms.
[0030] Structural Description:
[0031] Base Plate 1: Base Plate 1 is the basic support structure of the entire device, providing a stable mounting surface to ensure the device is placed firmly in the wind farm environment; Line Mounting Pole 2: Line Mounting Pole 2 is used to install lines and support the data processing box 5. It has line inlets / outlets on its side and a mounting platform on top, making it a key component for line layout and equipment installation; Line Inlets / Outlets 3: Line Inlets / Outlets 3 are the channels for data transmission lines. Dust covers are removably installed on the outside to prevent impurities from entering and ensure normal line operation; Mounting Platform 4: Mounting Platform 4 is located on top of Line Mounting Pole 2, used to stably support the data processing box 5 and reduce the impact of vibration on the data processing box 5; Data Processing Box 5: The data processing box 5 houses the data processing module, which uses an ANet-2E4SM modular communication management unit. This module supports modular expansion and is suitable for data acquisition and edge computing in complex scenarios, processing multi-source sensor information. A side door is provided for easy maintenance and repair; Side Door 6: The side door 6 is rotatably mounted on the side of the data processing box 5, facilitating operation and maintenance of the inside of the data processing box 5. Connecting rod 1 (7): Connecting rod 1 (7) is fixed to the center of the top of data processing box 5 and connected to connecting rod 2 (10) via connecting plate and connecting bolts. It is used to connect data processing box 5 and mounting box 11. Connecting plate 8: Connecting plate 8 is connected to connecting rod 1 (7) and connecting rod 2 (10) respectively, and fixed by connecting bolts to enhance the stability of the connection structure. Connecting bolt 9: Connecting bolt 9 is used to fix connecting rod 1 (7) and connecting plate 8 to ensure a firm connection structure and a stable connection between data processing box 5 and mounting box 11. Connecting rod 2 (10): Connecting rod 2 (10) is connected to mounting box 11 at the top and to connecting rod 1 (7) at the bottom via connecting plate, thus connecting data processing box 5 and mounting box 11. Mounting box 11: Mounting box 11 is used to install monitoring structures, rotating structures, and other components. A control panel is installed on the outer side, and an alarm structure is provided on the top. Control panel 12: Control panel 12 is installed on the outer side of mounting box 11 for operating and monitoring devices, facilitating parameter adjustment and data viewing by staff. Warning alarm 13: Warning alarm 13 can be an RP-ZNB-2J solar-powered intelligent sound and light alarm, supporting LED. Flashing and voice alarms, supporting remote control and adjustable sensing distance, the warning alarm 13 is fixed on both sides of the top of the mounting box 11, and will sound an alarm when data is abnormal to remind maintenance personnel; Canopy 14: The canopy 14 is installed on the top of the mounting box 11 to protect the warning alarm 13 from wind and rain erosion and extend its service life; Monitor 15: The monitor 15 can be a TH-CQX2 ultrasonic wind speed and direction monitor. The monitor 15 is installed on the support base 16 and is used to collect multi-source sensing information of the wind farm. It is the core component of data acquisition, with strong anti-interference ability, avoiding the start-up delay and temperature error of traditional sensors; Support base 16: The support base 16 is fixed on the rotating shaft 25 and is concave, providing installation space and support for the bevel gear and the monitor 15;Support rod 17: Support rod 17 is fixed to the top of support frame 18 and rotates with the central shaft 25 of support frame 18 to assist in supporting the monitoring structure; Support frame 18: Support frame 18 is installed at the bottom inside the mounting box 11 to support the monitoring structure and rotating structure, ensuring stable operation of the device; Motor mounting base 19: Motor mounting base 19 is used to fix the rotary motor 20 and adopts an anti-vibration design to reduce the impact of motor vibration on other components; Rotary motor 20: Rotary motor 20 provides power for the rotation of the monitoring structure, drives the worm gear to rotate, and realizes the adjustment of the monitoring angle; Worm gear 21: Worm gear 21 is connected to the output shaft of rotary motor 20 and meshes with worm wheel 22, transmitting the rotational motion of the motor to the worm wheel, driving the monitoring structure to rotate; Worm wheel 22: Worm wheel 22 is fixed to the bottom of shaft 25, meshes with worm gear 21, and rotates under the drive of worm gear, thereby driving the monitoring structure to rotate;
[0032] Bearing seat 23: The bearing seat 23 fixes the other end of the worm gear 21, ensuring stable rotation of the worm gear 21 and reducing friction and shaking; Bevel gear 24: The bevel gear 24 is installed in the groove of the support seat 16 and meshes with each other, making the movement of the monitor 15 smoother when adjusting the angle; Rotating shaft 25: The rotating shaft 25 connects the support seat 16 and the worm gear 22, and rotates under the drive of the worm gear to realize the angle adjustment of the monitor 15;
[0033] Working principle: Monitor 15 is the core component for data acquisition. It is mounted on support base 16, which is fixed to rotating shaft 25 and connected to support rod 17 at the top of support frame 18. During wind farm operation, monitor 15 can collect multi-source sensor information such as wind speed, wind direction, temperature, humidity, and equipment vibration. If the wind turbine blades in the wind farm vibrate abnormally, monitor 15 can promptly detect and collect relevant vibration data. When the monitoring angle needs to be adjusted, rotary motor 20 starts. Rotary motor 20 is securely mounted inside the bottom of mounting box 11 via motor mounting base 19. Its output shaft drives worm gear 21 to rotate. Worm gear 21 and... The worm gear 22 is engaged and fixed to the bottom of the rotating shaft 25. The rotation of the worm 21 drives the worm gear 22 to rotate, which in turn drives the rotating shaft 25 to rotate. The support base 16 and the monitor 15 connected to the rotating shaft 25 rotate accordingly, realizing flexible adjustment of the monitoring angle and expanding the monitoring range to adapt to the complex terrain and equipment layout of the wind farm, and to fully grasp the operation of the wind farm. The collected data enters the line mounting pole 2 through the line inlet / outlet 3, and is then transmitted to the data processing box 5. The dust cover on the outside of the line inlet / outlet 3 can prevent dust and other impurities from entering and protect the line. The data processing module in the data processing box 5 integrates the multi-source sensor information. Through comprehensive analysis and processing, when wind speed suddenly changes, the data processing module combines wind speed, wind direction, and surrounding equipment operation data to determine the impact of the sudden change on the wind farm operation, providing an accurate basis for subsequent early warning. When the data processing module analyzes abnormal data, it triggers the early warning alarm 13 to work. The early warning alarm 13 is installed on both sides of the top of the mounting box 11, and promptly issues an alarm signal to remind maintenance personnel. The canopy 14 on the top of the mounting box 11 can protect the early warning alarm 13 from wind and rain erosion, ensuring its normal operation. The base plate 1 provides a stable installation foundation for the entire device. The line mounting pole 2 is fixed on the base plate 1 and used to install lines and... The data processing box 5 is supported by the mounting platform 4 on top of the line mounting pole 2. The data processing box 5 is connected to the mounting box 11 through a connecting structure, which includes connecting rod 1 7, connecting plate 8, connecting bolt 9 and connecting rod 2 10, to ensure that all components are firmly connected. The support frame 18 at the bottom inside the mounting box 11 provides stable support for the monitoring structure and the rotating structure, ensuring stable operation of the device. The staff can operate and monitor the device through the control panel 12. When it is necessary to adjust the monitoring parameters or view historical data, the corresponding operation can be performed on the control panel 12 to achieve convenient control of the device.
[0034] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A wind farm intelligent early warning and monitoring device integrating multi-source sensor information, comprising a base plate (1), characterized in that: A line mounting rod (2) is fixedly installed on the top of the base plate (1). A line mounting structure is provided on the line mounting rod (2). A data processing box (5) is fixedly installed on the top of the line mounting structure. A data processing module is fixedly installed inside the data processing box (5). A processing box side door (6) is rotatably installed on the side of the data processing box (5). A connecting structure is provided on the top of the data processing box (5). An installation box (11) is fixedly installed on the top of the connecting structure. A control panel (12) is fixedly installed on the outer side of the installation box (11). An alarm structure is provided on the top of the installation box (11). A support frame (18) is fixedly installed at the bottom inside the installation box (11). A monitoring structure is fixedly installed on the top of the support frame (18). A rotating structure is provided below the support frame (18) corresponding to the bottom inside the installation box (11).
2. The wind farm intelligent early warning and monitoring device integrating multi-source sensor information according to claim 1, characterized in that: The line installation structure includes a line inlet / outlet (3) and an installation platform (4). The line installation rod (2) has a line inlet / outlet (3) on its side. A dust cover is movably installed on the outside of the line inlet / outlet (3). An installation platform (4) is fixedly installed on the top of the line installation rod (2). A data processing box (5) is fixedly installed on the top of the installation platform (4).
3. The intelligent early warning and monitoring device for wind farms integrating multi-source sensor information according to claim 1, characterized in that: The connection structure includes a first connecting rod (7), a connecting plate (8), a connecting bolt (9), and a second connecting rod (10). The first connecting rod (7) is fixedly installed at the top center of the data processing box (5). The top of the first connecting rod (7) and the bottom of the second connecting rod (10) are both fixedly connected to the connecting plate (8). The first connecting rod (7) and the connecting plate (8) are fixedly connected by the connecting bolt (9). The top of the second connecting rod (10) is fixedly connected to the mounting box (11).
4. The intelligent early warning and monitoring device for wind farms integrating multi-source sensor information according to claim 1, characterized in that: The warning device structure includes a warning device (13) and a canopy (14). The warning device (13) is fixedly installed on both sides of the top of the mounting box (11), and the canopy (14) is fixedly installed on the top of the mounting box (11).
5. The intelligent early warning and monitoring device for wind farms integrating multi-source sensor information according to claim 1, characterized in that: The monitoring structure includes a monitor (15), a support base (16), and a support rod (17). The support rod (17) is fixedly installed on the top of the support frame (18). A rotating shaft (25) is rotatably installed between the support rod (17) and the support frame (18). The support base (16) is fixedly installed on the rotating shaft (25). The support base (16) is concave. A set of meshing bevel gears (24) is rotatably installed inside the concave shape of the support base (16). The monitor (15) is fixedly installed on the top of the concave shape of the support base (16).
6. The intelligent early warning and monitoring device for wind farms integrating multi-source sensor information according to claim 5, characterized in that: The rotating structure includes a rotary motor (20), a worm (21), and a worm wheel (22). The rotary motor (20) is fixedly installed on the bottom surface inside the mounting box (11) via a motor mounting base (19). The output shaft of the rotary motor (20) is fixedly connected to the worm (21). The worm (21) meshes with the worm wheel (22). The worm wheel (22) is fixedly installed at one end of the bottom of the rotating shaft (25). The other end of the worm (21) is fixedly connected to the bottom surface inside the mounting box (11) via a bearing seat (23).