Data acquisition device for wind power prediction

By designing the connection structure between the rotating device and the servo motor drive, the problem of easy damage to parts of the wind power prediction data acquisition device in stormy weather was solved, and the stability of the device and the extension of its service life were achieved.

CN223364411UActive Publication Date: 2025-09-19DATANG YUNNAN POWER GENERATION CO LTD
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Patent Information

Application Number
CN202422761377.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-13
Publication Date
2025-09-19
Estimated Expiration
2034-11-13

AI Technical Summary

Technical Problem

The parts of the existing wind power prediction data collection device are easily damaged in stormy weather, which shortens the service life.

Method used

A rotating device including a storage tank, a rotating shaft and a connecting plate was designed. The connecting column was driven to rotate by a servo motor to realize the vertical setting and sliding of the information collection structure, avoiding damage caused by storms and extending its service life.

Benefits of technology

It effectively protects the device from damage in severe weather, extends its service life, and improves the stability and reliability of the device.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of wind power prediction, and discloses a data acquisition device for wind power prediction, which comprises a mounting plate, a storage box and an information acquisition structure, a plurality of mounting holes are arranged on two sides of the mounting plate, the storage box is arranged above the mounting plate, a rotating device is arranged on the inner side of the storage box, and the information acquisition structure is arranged on the rotating device. An information acquisition structure is mounted on the outer side of the rotating device, the rotating device comprises a storage groove, a rotating shaft and a connecting plate, the storage groove is formed in the inner side of the storage box, the right side of the storage groove is connected with the connecting plate through the rotating shaft, and a first automatic telescopic rod is mounted on the right side in the rotating device; a connecting block is mounted above the first automatic telescopic rod, an information acquisition structure is mounted above the connecting block, and a fixing groove is formed in the left side of the first automatic telescopic rod; the device prevents the wind speed from being large to damage parts, and the service life of the device is prolonged.
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Description

Technical Field

[0001] The present invention relates to the technical field of wind power prediction, and in particular to a data acquisition device for wind power prediction. Background Art

[0002] Wind power forecasting refers to the establishment of a wind farm output power prediction model based on data such as the wind farm's historical power, historical wind speed, topography, numerical weather forecasts, and wind turbine operating status. The model uses wind speed, power, or numerical weather forecast data as input, combined with the equipment status and operating conditions of the wind farm units, to obtain the future output power of the wind farm.

[0003] After searching, the Chinese patent authorization announcement number CN 220438365 U, announcement date February 2, 2024, discloses a wind power prediction information collection device. The article proposes "a box body, a bottom plate is provided inside the box body, a support block is provided above the bottom plate, and mounting grooves are provided on both sides of the middle part of the support block, and a rotating shaft is movably provided in the mounting groove." After the device is fixedly welded and installed on a high tower, the fixed vertical plate and screw supporting the information collection structure will increase the damage rate of the device parts in stormy weather and shorten the service life of the device. In view of this, in-depth research was conducted on the above problems, and thus this case was created. Utility Model Content

[0004] The purpose of this invention is to provide a data acquisition device for wind power prediction to solve the problems raised in the above background technology.

[0005] To achieve the above-mentioned purpose, the present invention provides the following technical solutions: a data acquisition device for wind power prediction, comprising a mounting plate, a storage box, and an information acquisition structure, wherein a plurality of mounting holes are provided on both sides of the mounting plate, a storage box is mounted above the mounting plate, a rotating device is mounted on the inner side of the storage box, and an information acquisition structure is mounted on the outer side of the rotating device;

[0006] The rotating device includes a storage slot, a rotating shaft and a connecting plate. The storage slot is provided on the inner side of the storage box. The right side of the storage slot is connected to the connecting plate through the rotating shaft. A first automatic telescopic rod is installed on the right side of the rotating device. A connecting block is installed above the first automatic telescopic rod. An information collection structure is installed above the connecting block. A fixed slot is provided on the left side of the first automatic telescopic rod. The fixed slot is provided on the inner side of the connecting plate. A fixed column is installed below the fixed slot. A circular ring is installed on the outer wall of the fixed column. A second automatic telescopic rod is installed on the outer side of the circular ring. A connecting column is installed below the second automatic telescopic rod. The connecting column is provided on the inner side of the groove. The groove is provided on the inner side of the storage box. One side of the connecting column is connected to the inner side of the storage box through a bearing, and a servo motor is installed on the other side of the connecting column.

[0007] Preferably, the mounting plate and the mounting hole are integrated, and the mounting plate and the storage box are fixedly connected.

[0008] Preferably, the storage boxes are integrated with the storage tanks and the grooves, and the rotating shaft and the connecting plate are rotatably connected.

[0009] Preferably, the first automatic telescopic rods are fixedly connected to the connecting plate and the connecting block, and the connecting block is fixedly connected to the information collection structure.

[0010] Preferably, the connecting plate and the fixing groove are integrated, and the fixing column and the connecting plate are fixedly connected.

[0011] Preferably, the fixing column and the circular ring are arranged correspondingly, and the second automatic telescopic rod and the circular ring are fixedly connected.

[0012] Preferably, the second automatic telescopic rod and the connecting column are arranged perpendicular to each other, and the connecting column is rotatably connected to the bearing.

[0013] Preferably, the connecting column and the servo motor are driven together.

[0014] Preferably, the second automatic telescopic rod, the connecting column and the ring are all arranged corresponding to the groove.

[0015] Preferably, the storage slot, the information collection structure and the first automatic telescopic rod are arranged correspondingly.

[0016] Compared with the prior art, the beneficial effects of this invention are:

[0017] By setting a storage slot, a rotating shaft and a connecting plate, the user uses a threaded column to pass through the mounting hole and fix it on the high tower by welding. During testing, the servo motor is started to drive the connecting column to rotate inside the bearing, and the connecting column drives the ring connected to the second automatic telescopic rod to rotate on the outer wall of the fixed column, so that the connecting plate is separated from the storage slot. When the second automatic telescopic rod is started, the ring is driven to rotate on the outer wall of the fixed column, and the fixed column drives the connecting plate to rotate on the outside of the rotating shaft. The connecting plate drives the information collection structure connected to the first automatic telescopic rod to rotate, so that the connecting plate and the storage box are vertically arranged so that the information collection structure can collect wind speed. When not testing, the rotating device is reset to store the rotating device on the inside of the storage box, avoiding damage to the device parts in stormy weather and extending the service life of the device. Secondly, the first automatic telescopic rod is started to drive the information collection structure connected to the connecting block to slide, and the information collection structure can be moved upward to the required position for wind speed detection as needed. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the following is a brief introduction to the drawings required for the description of the embodiments. Obviously, the drawings described below are some embodiments of the present application. For those of ordinary skill in the art, other drawings can also be obtained based on these drawings without inventive effort. In all drawings, similar elements or parts are generally identified by similar reference numerals. In the drawings, the elements or parts are not necessarily drawn according to the actual scale.

[0019] Figure 1 This is a schematic diagram of the front cross-sectional structure of the utility model;

[0020] Figure 2 This is a schematic diagram of the front cross-sectional structure of the rotating device used in the present invention;

[0021] Figure 3 This is a schematic diagram of a partial top-view cross-sectional structure of the rotating device of the present invention;

[0022] Figure 4 It is a schematic diagram of the top view structure of the utility model.

[0023] In the figure: 1. Mounting plate; 2. Storage box; 3. Rotating device; 4. Information collection structure; 5. Mounting hole; 301. Storage slot; 302. Rotating shaft; 303. Connecting plate; 304. First automatic telescopic rod; 305. Connecting block; 306. Fixed slot; 307. Fixed column; 308. Ring; 309. Second automatic telescopic rod; 310. Connecting column; 311. Groove; 312. Bearing; 313. Servo motor. DETAILED DESCRIPTION

[0024] In the description of this utility model, it should be noted that the terms "upper," "lower," "inner," "outer," "front end," "rear end," "both ends," "one end," "the other end," and the like, indicating orientations or positional relationships, are based on the orientations or positional relationships shown in the accompanying drawings and are intended solely to facilitate the description of this utility model and simplify the description. They are not intended to indicate or imply that the devices or components referred to must have a specific orientation, be constructed, or operate in a specific orientation. Therefore, they should not be construed as limitations on this utility model. Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance.

[0025] In the description of this utility model, it should be noted that, unless otherwise expressly specified or limited, the terms "installed," "provided with," "connected," etc. should be understood in a broad sense. For example, "connected" can mean a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be a direct connection or an indirect connection through an intermediate medium, or it can be internal communication between two components. Those skilled in the art will be able to understand the specific meanings of the above terms in this utility model based on the specific circumstances.

[0026] The following will be combined with the drawings in the practical embodiment to clearly and completely describe the technical solutions in the practical embodiment. Obviously, the described embodiment is only a part of the embodiment of this utility, not all of the embodiments. Based on the embodiment of this utility, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of this utility.

[0027] See also Figure 1-4 The present invention provides a technical solution for a data acquisition device for wind power prediction: a data acquisition device for wind power prediction, comprising a mounting plate 1, a storage box 2 and an information acquisition structure 4, a plurality of mounting holes 5 being provided on both sides of the mounting plate 1, a storage box 2 being mounted above the mounting plate 1, a rotating device 3 being mounted on the inner side of the storage box 2, and an information acquisition structure 4 being mounted on the outer side of the rotating device 3;

[0028] The rotating device 3 includes a storage tank 301, a rotating shaft 302 and a connecting plate 303. The storage tank 301 is provided on the inner side of the storage box 2. The right side of the storage tank 301 is connected to the connecting plate 303 through the rotating shaft 302. A first automatic telescopic rod 304 is installed on the right side of the rotating device 3. A connecting block 305 is installed above the first automatic telescopic rod 304. An information collection structure 4 is installed above the connecting block 305. A fixing groove 306 is provided on the left side of the first automatic telescopic rod 304. The fixing groove 306 is provided on the connecting plate On the inner side of 303, a fixing column 307 is installed below the fixing groove 306, a ring 308 is installed on the outer wall of the fixing column 307, a second automatic telescopic rod 309 is installed on the outer side of the ring 308, a connecting column 310 is installed below the second automatic telescopic rod 309, the connecting column 310 is arranged on the inner side of the groove 311, the groove 311 is arranged on the inner side of the storage box 2, one side of the connecting column 310 is connected to the inner side of the storage box 2 through a bearing 312, and a servo motor 313 is installed on the other side of the connecting column 310.

[0029] Before use, the user uses a threaded column to pass through the mounting hole 5 to fix and weld it on the high tower. During testing, the servo motor 313 is started to drive the connecting column 310 to rotate inside the bearing 312. The connecting column 310 drives the ring 308 connected to the second automatic telescopic rod 309 to rotate on the outer wall of the fixed column 307, so that the connecting plate 303 is separated from the storage tank 301. When the second automatic telescopic rod 309 is started, the ring 308 is driven to rotate on the outer wall of the fixed column 307. The fixed column 307 drives the connecting plate 303 to rotate on the outside of the rotating shaft 302. The connecting plate 303 drives the first The information collection structure 4 connected to the automatic telescopic rod 304 rotates so that the connecting plate 303 and the storage box 2 are vertically arranged so that the information collection structure 4 can collect the wind speed, and when not detecting, the rotating device 3 is reset so that the rotating device 3 can be stored inside the storage box 2 to avoid damage to the device parts in stormy weather and extend the service life of the device. Secondly, the first automatic telescopic rod 304 is started to drive the information collection structure 4 connected to the connecting block 305 to slide, and the information collection structure 4 can be moved upward to the required position for wind speed detection as needed.

[0030] The mounting plate 1 and the mounting hole 5 are integrated, and the mounting plate 1 and the storage box 2 are fixedly connected.

[0031] The storage box 2 is integrated with the storage slot 301 and the groove 311, and the rotating shaft 302 and the connecting plate 303 are rotatably connected. By utilizing the setting of the storage slot 301, when the information collection structure 4 is not in use, the rotating device 3 and the information collection structure 4 connected to the rotating device 3 are stored.

[0032] The first automatic telescopic rod 304 is fixedly connected to the connecting plate 303 and the connecting block 305 , and the connecting block 305 is fixedly connected to the information collection structure 4 .

[0033] The connecting plate 303 and the fixing groove 306 are integrated, and the fixing column 307 and the connecting plate 303 are fixedly connected.

[0034] The fixed column 307 and the circular ring 308 are arranged correspondingly, and the second automatic telescopic rod 309 and the circular ring 308 are fixedly connected. The second automatic telescopic rod 309 is used to increase the stability of the connecting plate 303.

[0035] The second automatic telescopic rod 309 and the connecting column 310 are perpendicularly arranged to each other, and the connecting column 310 is rotationally connected to the bearing 312 .

[0036] The connecting post 310 is connected to the servo motor 313 for driving.

[0037] The second automatic telescopic rod 309 , the connecting column 310 and the ring 308 are all arranged corresponding to the groove 311 .

[0038] The storage slot 301 , the information collection structure 4 and the first automatic telescopic rod 304 are arranged correspondingly.

[0039] 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 variations may be made to these embodiments without departing from the principles and spirit of the present invention, and the scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A data acquisition device for wind power prediction, comprising a mounting plate (1), a storage box (2) and an information acquisition structure (4), characterized in that: A plurality of mounting holes (5) are provided on both sides of the mounting plate (1); a storage box (2) is mounted above the mounting plate (1); a rotating device (3) is mounted on the inner side of the storage box (2); and an information collection structure (4) is mounted on the outer side of the rotating device (3); The rotating device (3) comprises a storage tank (301), a rotating shaft (302) and a connecting plate (303); the storage tank (301) is provided on the inner side of the storage box (2); the right side of the storage tank (301) is connected to the connecting plate (303) via the rotating shaft (302); a first automatic telescopic rod (304) is installed on the right side of the rotating device (3); a connecting block (305) is installed above the first automatic telescopic rod (304); an information collection structure (4) is installed above the connecting block (305); a fixing groove (306) is provided on the left side of the first automatic telescopic rod (304); the fixing groove (306) is provided on the connecting plate (303), a fixing column (307) is installed below the fixing groove (306), a circular ring (308) is installed on the outer wall of the fixing column (307), a second automatic telescopic rod (309) is installed on the outer side of the circular ring (308), a connecting column (310) is installed below the second automatic telescopic rod (309), the connecting column (310) is arranged on the inner side of the groove (311), the groove (311) is arranged on the inner side of the storage box (2), one side of the connecting column (310) is connected to the inner side of the storage box (2) through a bearing (312), and a servo motor (313) is installed on the other side of the connecting column (310).

2. The data acquisition device for wind power prediction according to claim 1, characterized in that: The mounting plate (1) and the mounting hole (5) are integrally arranged, and the mounting plate (1) and the storage box (2) are fixedly connected.

3. The data acquisition device for wind power prediction according to claim 2, characterized in that: The storage box (2) is integrated with the storage tank (301) and the groove (311), and the rotating shaft (302) and the connecting plate (303) are rotatably connected.

4. The data acquisition device for wind power prediction according to claim 3, characterized in that: The first automatic telescopic rod (304) is fixedly connected to the connecting plate (303) and the connecting block (305), and the connecting block (305) is fixedly connected to the information collection structure (4).

5. The data acquisition device for wind power prediction according to claim 4, characterized in that: The connecting plate (303) and the fixing groove (306) are integrally arranged, and the fixing column (307) and the connecting plate (303) are fixedly connected.

6. The data acquisition device for wind power prediction according to claim 5, characterized in that: The fixed column (307) and the circular ring (308) are arranged correspondingly, and the second automatic telescopic rod (309) and the circular ring (308) are fixedly connected.

7. The data acquisition device for wind power prediction according to claim 6, characterized in that: The second automatic telescopic rod (309) and the connecting column (310) are arranged perpendicular to each other, and the connecting column (310) is rotatably connected to the bearing (312).

8. The data acquisition device for wind power prediction according to claim 7, characterized in that: The connecting column (310) and the servo motor (313) are connected in a driving manner.

9. The data acquisition device for wind power prediction according to claim 8, characterized in that: The second automatic telescopic rod (309), the connecting column (310) and the ring (308) are all arranged corresponding to the groove (311).

10. The data acquisition device for wind power prediction according to claim 9, characterized in that: The storage tank (301), the information collection structure (4), and the first automatic telescopic rod (304) are arranged correspondingly.

Citation Information

Patent Citations

  • Wind power prediction information acquisition device

    CN220438365U