Photovoltaic power generation power prediction module installation structure
The photovoltaic power prediction module installation structure, designed with plug-in and threaded connections, solves the problem of inconvenient and quick connection of photovoltaic power prediction device components in existing technologies, realizing convenient installation and disassembly of components and ensuring the stability and accuracy of photovoltaic power prediction.
Patent Information
- Application Number
- CN202520696171.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-14
- Publication Date
- 2026-02-27
- Estimated Expiration
- 2035-04-14
AI Technical Summary
In existing photovoltaic power generation prediction devices, the light intensity acquisition components, rainfall components, temperature and humidity components, and wind speed components are not easy to connect quickly, which makes maintenance and replacement difficult and has significant limitations.
The photovoltaic power prediction module installation structure is designed with plug-in and threaded connections, including components such as mounting brackets, fixing plates, reinforcing rods, positioning slots, plug blocks, and rotating columns, to facilitate the installation and disassembly of each monitoring unit and enhance connection stability and strength.
It enables convenient installation and disassembly of each component, ensures the stability and maintainability of the photovoltaic power generation prediction module, provides comprehensive environmental parameter monitoring data support, and improves the accuracy of photovoltaic power generation prediction.
Smart Images

Figure CN223953745U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to photovoltaic power generation technical field, concretely is a kind of photovoltaic power generation power prediction module mounting structure. BACKGROUND
[0002] In photovoltaic power station, the power generation of photovoltaic module has great relationship with solar radiation, module temperature, module cleanliness and other factors, and photovoltaic power prediction system is used to evaluate the power generation efficiency and operation and maintenance level of photovoltaic power station, and the power generation of power prediction system is compared with the actual power generation of power station, and the photovoltaic power prediction system predicts the power generation of power station according to the solar radiation, module temperature, module cleanliness, module parameters and other factors of local photovoltaic power station.
[0003] Chinese utility model patent publication number: CN221042798U discloses a photovoltaic power generation power prediction device, the photovoltaic power generation power prediction device, by setting lifting platform can adjust lifting height, to adapt to the data acquisition at set height, to accurately predict photovoltaic power generation, and utilize temperature and humidity sensor, anemograph, rain sensor to obtain real-time environmental data, and the photovoltaic power generation power is predicted by combining environmental data and illumination intensity data, the illumination intensity data acquisition unit obtains the illumination intensity of the measured light based on the spectrum signal calculation, and the photovoltaic power generation power prediction unit is according to real-time illumination intensity, but the photovoltaic power generation power prediction device, although it is combined with different monitoring units to realize the prediction of power generation power, but the illumination intensity acquisition component, rain component, temperature and humidity component and wind speed component are not convenient for quick connection, which can easily lead to the inconvenience of multi-component maintenance and later replacement, resulting in great limitation. SUMMARY
[0004] The technical problem to be solved by the utility model is to provide a photovoltaic power generation power prediction module mounting structure, which can effectively solve the problems in the prior art.
[0005] The technical scheme adopted by the utility model is: a photovoltaic power generation power prediction module mounting structure, comprising a mounting frame, an energy storage battery and a case are fixedly installed on the outer surface of the mounting frame, a prediction processing component, a temperature and humidity component and a wind speed component are detachably installed on the side of the mounting frame close to the energy storage battery from bottom to top, an illumination intensity acquisition component is detachably designed on the other side of the mounting frame away from the energy storage battery, and a rain component is inserted and installed on the top of the mounting frame close to the illumination intensity acquisition component.
[0006] The prediction processing component comprises a fixedly installed positioning plate one with the mounting frame, a section "L" shaped structure fixing frame and a data processing box are fixedly installed on the other end of the positioning plate one away from the mounting frame, and a limiting bolt extending into the mounting frame is arranged through the outer surface of the positioning plate one.
[0007] Preferably, the mounting frame is inserted and mounted with a fixing plate at the other end away from the prediction processing component, and the fixing plate is fixedly mounted with a plug block inserted and mounted with the mounting frame at one end close to the mounting frame.
[0008] Through the above technical scheme, the plug block one is inserted and matched with the mounting frame, so that the fixing plate can be conveniently and quickly mounted and dismounted, and the fixing plate can be used for conveniently mounting the overall device to the position and can play a positioning role to avoid displacement during use.
[0009] Preferably, the fixing plate is provided with a plurality of positioning grooves distributed at equal intervals on both sides away from the center line, and the mounting frame is fixedly mounted with a reinforcing rod at a plurality of connection positions.
[0010] Through the above technical scheme, the positioning grooves can be used for positioning and mounting with other components to enhance the accuracy and stability of connection, and the reinforcing rod can improve the overall strength and stability of the mounting frame to better bear the weight of each component.
[0011] Preferably, the fixing frame is provided with a second insertion slot at one end close to the center line, the second insertion slot is inserted and mounted with an insertion plate on the inner surface, and the fixing frame is fixedly mounted with a reinforcing plate on one side.
[0012] Through the above technical scheme, the insertion plate can be mounted through the second insertion slot to facilitate adjustment or replacement of components on the fixing frame, and the reinforcing plate can enhance the structural strength of the fixing frame to improve the carrying capacity.
[0013] Preferably, the light intensity acquisition component comprises mounting sleeves located on both sides of the mounting frame, the mounting sleeves are inserted and mounted with mounting rods on the inner surfaces, the mounting rods are fixedly mounted with support rods at the top, the support rods are rotatably mounted with rotating columns on the inner surfaces, the rotating columns are fixedly mounted with light intensity acquisition plates at one end extending out of the support rods, and the light intensity acquisition plates are fixedly mounted with positioning rods matched with the mounting frame at one end away from the rotating columns.
[0014] Through the above technical scheme, the cooperation of the mounting sleeve and the mounting rod facilitates the mounting and dismounting of the light intensity acquisition component, and the rotating column can make the light intensity acquisition plate rotate to better acquire light intensity at different angles.
[0015] Preferably, the rain amount assembly comprises an insertion block two, an insertion slot one is formed in the inner surface of the insertion block two, an installation seat and a rain amount monitor are fixedly installed on the top of the insertion block two, the insertion block two is insertedly installed with the installation frame through the insertion slot one, the temperature and humidity assembly comprises a fixing seat, a positioning plate two and a temperature and humidity monitor, a fixing bolt is fixedly installed on the inner surface of the fixing seat, a fixing groove is formed on the side of the fixing seat close to the installation frame, and a positioning block one which is insertedly installed with the fixing groove and a positioning block two which is insertedly installed with the installation frame are fixedly installed on one side of the positioning plate two.
[0016] Through the above technical scheme, the insertion block two is inserted with the installation frame through the insertion slot one, the installation and disassembly of the rain amount assembly are facilitated, the rain amount monitor can monitor the rain amount in real time, the temperature and humidity assembly is inserted with the fixing groove and the installation frame through the positioning block one and the positioning block two respectively, accurate installation can be realized, and the temperature and humidity monitor can monitor the temperature and humidity of the environment.
[0017] Preferably, the wind speed assembly comprises a bottom rod, a limiting plate one is arranged on the top of the bottom rod, a limiting plate two is arranged on the bottom of the bottom rod, the limiting plate one is threadedly connected with a connecting bolt from top to bottom, and a base and a wind speed monitor are fixedly installed on the top of the limiting plate one.
[0018] Through the above technical scheme, the limiting plate one and the limiting plate two can quickly limit the bottom rod, and in cooperation with the connecting bolt, the limiting plate one and the bottom rod can be stably connected, and the wind speed monitor can monitor the wind speed in real time.
[0019] Compared with the prior art, the photovoltaic power prediction module installation structure has the following beneficial effects:
[0020] 1. The photovoltaic power prediction module installation structure, the fixing plate is inserted with the installation frame through the insertion block one, the overall device is facilitated to be installed and positioned, displacement during use is prevented, the light intensity acquisition assembly, the rain amount assembly, the temperature and humidity assembly and the wind speed assembly all adopt convenient installation modes such as insertion, the installation and disassembly of each assembly are facilitated, and maintenance and replacement are facilitated;
[0021] 2. The photovoltaic power prediction module installation structure, the light intensity acquisition assembly can acquire light intensity in all directions, the rain amount assembly monitors rain amount in real time, the temperature and humidity assembly monitors environmental temperature and humidity, and the wind speed assembly monitors wind speed, each assembly cooperates to work, comprehensive monitoring of related environmental parameters of photovoltaic power generation is realized, and rich and accurate data support is provided for photovoltaic power prediction;
[0022] 3. The photovoltaic power prediction module installation structure, the positioning grooves on the two sides of the fixing plate are used for accurately positioning and installing other components, the connection stability is enhanced, the reinforcing rods at the connection portions of the installation frame improve the overall strength, the weight of each assembly is better borne, and the reinforcing plate of the fixing frame enhances the structural strength and bearing capacity thereof. BRIEF DESCRIPTION OF DRAWINGS
[0023] Figure 1 Schematic diagram of the three-dimensional structure of the utility model Figure 1 ;
[0024] Figure 2 Schematic diagram of the three-dimensional structure of the utility model Figure 2 ;
[0025] Figure 3 Schematic diagram of the three-dimensional structure of the utility model Figure 3 ;
[0026] Figure 4 Schematic diagram of the three-dimensional structure of the utility model ;
[0027] Figure 5 Schematic diagram of the three-dimensional structure of the utility model ;
[0028] Figure 6 Schematic diagram of the three-dimensional structure of the utility model ;
[0029] Figure 7 Schematic diagram of the three-dimensional structure of the utility model ;
[0030] Figure 8 Schematic diagram of the three-dimensional structure of the utility model ;
[0031] Figure 9 Schematic diagram of the three-dimensional structure of the utility model Figure 1 ;
[0032] Figure 10 Schematic diagram of the three-dimensional structure of the utility model Figure 2 .
[0033] The components include: 1. Mounting bracket; 2. Fixing plate; 3. Insert block one; 4. Positioning slot; 5. Reinforcing rod; 6. Light intensity acquisition component; 601. Mounting sleeve; 602. Mounting rod; 603. Support rod; 604. Rotating column; 605. Light intensity acquisition plate; 606. Positioning rod; 7. Rainfall measurement component; 701. Insert block two; 702. Slot one; 703. Mounting base; 704. Rainfall monitor; 8. Energy storage battery; 9. Prediction processing component; 901. Data processing box; 902. Fixing bracket; 903. Reinforcing plate; 904, Slot 2; 905, Insert plate; 906, Positioning plate 1; 907, Limit bolt; 10, Chassis; 11, Temperature and humidity component; 1101, Fixing base; 1102, Fixing bolt; 1103, Fixing groove; 1104, Positioning plate 2; 1105, Positioning block 1; 1106, Positioning block 2; 1107, Temperature and humidity monitor; 12, Wind speed component; 1201, Base rod; 1202, Limiting plate 1; 1203, Base; 1204, Wind speed monitor; 1205, Limiting plate 2; 1206, Connecting bolt. Detailed Implementation
[0034] 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.
[0035] Example 1: As Figures 1-10 As shown, the photovoltaic power generation prediction module installation structure provided by this utility model includes a mounting frame 1. An energy storage battery 8 and a chassis 10 are fixedly installed on the outer surface of the mounting frame 1. On the side of the mounting frame 1 near the energy storage battery 8, a prediction processing component 9, a temperature and humidity component 11, and a wind speed component 12 are detachably installed from bottom to top. On the other side of the mounting frame 1 away from the energy storage battery 8, a light intensity acquisition component 6 is detachably designed. A rainfall component 7 is inserted and installed on the top of the mounting frame 1 near the light intensity acquisition component 6.
[0036] The predictive processing component 9 includes a positioning plate 906 that is fixedly installed with the mounting frame 1. At the other end of the positioning plate 906 away from the mounting frame 1, a fixing frame 902 with an "L"-shaped cross section and a data processing box 901 are fixedly installed. A limiting bolt 907 extending into the interior of the mounting frame 1 is provided through the outer surface of the positioning plate 906.
[0037] Specifically, the other end of the mounting frame 1 away from the prediction processing assembly 9 is inserted and mounted with a fixed plate 2, and the end of the fixed plate 2 close to the mounting frame 1 is fixedly installed with a plug block one 3 inserted and mounted with the mounting frame 1. The plug block one 3 is inserted and matched with the mounting frame 1, so that the fixed plate 2 can be conveniently installed and disassembled, and the fixed plate 2 can be used to facilitate the installation of the overall device to the positioning, and can play a role in positioning, avoiding displacement during use.
[0038] Specifically, the fixed plate 2 is provided with a plurality of positioning grooves 4 distributed at equal intervals away from the center line on both sides, and the mounting frame 1 is fixedly installed with a plurality of reinforcing rods 5 at the connection positions. The positioning grooves 4 can be used for positioning and installing other components, enhancing the accuracy and stability of the connection, and the reinforcing rods 5 can improve the overall strength and stability of the mounting frame 1, so that it can better bear the weight of each component.
[0039] Specifically, the fixed frame 902 is provided with a second insertion slot 904 at the end close to the center line, and the second insertion slot 904 is inserted and mounted with a plug plate 905 on the inner surface. The fixed frame 902 is fixedly installed with a reinforcing plate 903 on one side. The plug plate 905 can be installed through the second insertion slot 904, which is convenient for adjusting or replacing the components on the fixed frame 902, and the reinforcing plate 903 can enhance the structural strength of the fixed frame 902 and improve its carrying capacity.
[0040] Embodiment two: as shown in the following figure, which is an improvement on the previous embodiment. Figures 2-10
[0041] Specifically, the light intensity acquisition assembly 6 includes mounting sleeves 601 located on both sides of the mounting frame 1, and the mounting sleeves 601 are inserted and mounted with mounting rods 602 on the inner surfaces. The mounting rods 602 are fixedly installed with support rods 603 at the top, and the support rods 603 are rotatably installed with rotating columns 604 on the inner surfaces. The rotating columns 604 are fixedly installed with light intensity acquisition plates 605 at the ends extending out of the support rods 603, and the light intensity acquisition plates 605 are fixedly installed with positioning rods 606 matched with the mounting frame 1 at the ends away from the rotating columns 604. The cooperation of the mounting sleeves 601 and the mounting rods 602 facilitates the installation and disassembly of the light intensity acquisition assembly 6, and the cooperation of the rotating columns 604 can make the light intensity acquisition plates 605 rotate to better acquire light intensity at different angles.
[0042] Specifically, the rain amount assembly 7 comprises an insertion block two 701, an insertion slot one 702 is formed in the inner surface of the insertion block two 701, an installation seat 703 and a rain amount monitor 704 are fixedly installed at the top of the insertion block two 701, the insertion block two 701 is in plug-in installation with the mounting frame 1 through the insertion slot one 702, the temperature and humidity assembly 11 comprises a fixing seat 1101, a positioning plate two 1104 and a temperature and humidity monitor 1107, a fixing bolt 1102 is fixedly installed in the inner surface of the fixing seat 1101, a fixing groove 1103 is formed in the side of the fixing seat 1101 close to the mounting frame 1, a positioning block one 1105 in plug-in installation with the fixing groove 1103 and a positioning block two 1106 in plug-in installation with the mounting frame 1 are fixedly installed at one side of the positioning plate two 1104, the insertion block two 701 is in plug-in installation with the mounting frame 1 through the insertion slot one 702, the installation and dismounting of the rain amount assembly 7 are facilitated, the rain amount monitor 704 can monitor the rain amount in real time, the temperature and humidity assembly 11 is in plug-in installation with the fixing groove 1103 and the mounting frame 1 through the positioning block one 1105 and the positioning block two 1106 respectively, accurate installation can be realized, and the temperature and humidity monitor 1107 can monitor the temperature and humidity of the environment.
[0043] Specifically, the wind speed assembly 12 comprises a bottom rod 1201, a limiting plate one 1202 is arranged at the top of the bottom rod 1201, a limiting plate two 1205 is arranged at the bottom of the bottom rod 1201, a connecting bolt 1206 is threadedly connected from top to bottom in the limiting plate one 1202, a base 1203 and a wind speed monitor 1204 are fixedly installed at the top of the limiting plate one 1202, the limiting plate one 1202 and the limiting plate two 1205 can quickly limit the bottom rod 1201, and in cooperation with the connecting bolt 1206, the limiting plate one 1202 and the bottom rod 1201 can be stably connected, and the wind speed monitor 1204 can monitor the wind speed in real time.
[0044] Working principle: in use, the energy storage battery 8 supplies power to the whole system, the case 10 can accommodate control and data storage device, the data processing box 901 in the prediction processing assembly 9 receives data from each monitoring assembly, the light intensity acquisition assembly 6 is installed with the installation sleeve 601 and the installation rod 602 cooperation, the light intensity acquisition plate 605 is rotated in the support rod 603 through the rotating column 604, thereby all-round acquisition different angle light intensity data, the plug block two 701 of the rainfall assembly 7 is inserted with the mounting frame 1 through the slot one 702, the rainfall monitor 704 monitors rainfall in real time, the temperature and humidity assembly 11 is inserted and installed with the mounting frame 1 respectively through the positioning block one 1105 and the positioning block two 1106 and the fixed slot 1103, the temperature and humidity monitor 1107 monitors environmental temperature and humidity, the bottom rod 1201 of the wind speed assembly 12 is quickly limited through the limiting plate one 1202 and the limiting plate two 1205, then the limiting plate one 1202 and the bottom rod 1201 are stably connected through the connecting bolt 1206, the wind speed monitor 1204 monitors wind speed in real time, each monitoring assembly transmits the data collected to the data processing box 901 of the prediction processing assembly 9 for analysis and processing to predict photovoltaic power generation power.
[0045] Although the embodiments of the present application have been shown and described, it should be understood by those skilled in the art that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of the present application, and the scope of the present application is defined by the appended claims and their equivalents.
Claims
1. A photovoltaic power generation power prediction module mounting structure comprising a mounting rack (1), characterized in that: The mounting frame (1) is externally fixedly installed with an energy storage battery (8) and a case (10), one side of the mounting frame (1) close to the energy storage battery (8) is detachably installed with a prediction processing assembly (9), a temperature and humidity assembly (11) and a wind speed assembly (12) from bottom to top, the other side of the mounting frame (1) away from the energy storage battery (8) is detachably designed with an illumination intensity acquisition assembly (6), and the top of the mounting frame (1) close to the illumination intensity acquisition assembly (6) is plug-in installed with a rainfall assembly (7). The prediction processing assembly (9) comprises a positioning plate (906) fixedly installed with the mounting frame (1), the other end of the positioning plate (906) away from the mounting frame (1) is fixedly installed with an L-shaped cross-section fixed frame (902) and a data processing box (901), and the outer surface of the positioning plate (906) is throughly provided with a limiting pin (907) extending into the mounting frame (1).
2. The photovoltaic power generation power prediction module mounting structure according to claim 1, characterized in that: The other end of the mounting frame (1) away from the prediction processing assembly (9) is plug-in installed with a fixed plate (2), and one end of the fixed plate (2) close to the mounting frame (1) is fixedly installed with a plug-in block (3) plug-in installed with the mounting frame (1).
3. The photovoltaic power generation power prediction module mounting structure according to claim 2, characterized in that: The two sides of the fixed plate (2) away from the center line are both provided with a plurality of positioning grooves (4) distributed at equal intervals, and the mounting frame (1) is fixedly installed with a reinforcing rod (5) at a plurality of connecting positions.
4. The photovoltaic power generation power prediction module mounting structure according to claim 1, characterized in that: One end of the fixed frame (902) close to the center line is provided with a plug-in groove (904), the plug-in groove (904) is plug-in installed with a plug-in plate (905), and one side of the fixed frame (902) is fixedly installed with a reinforcing plate (903).
5. The photovoltaic power generation power prediction module mounting structure according to claim 1, characterized by: The illumination intensity acquisition assembly (6) comprises mounting sleeves (601) located on both sides of the mounting frame (1), the mounting sleeves (601) are plug-in installed with mounting rods (602), the mounting rods (602) are fixedly installed with supporting rods (603) at the top, the supporting rods (603) are rotatably installed with rotating columns (604), one end of the rotating columns (604) extending out of the supporting rods (603) is fixedly installed with an illumination intensity acquisition plate (605), and the other end of the illumination intensity acquisition plate (605) away from the rotating columns (604) is fixedly installed with a positioning rod (606) matched with the mounting frame (1).
6. The photovoltaic power generation power prediction module mounting structure according to claim 1, characterized by: The rain amount assembly (7) includes plug block two (701), the inner surface of plug block two (701) is provided with slot one (702), plug block two (701) top fixed mounting seat (703) and rain amount monitor (704), plug block two (701) is installed with mounting bracket (1) through slot one (702), the temperature and humidity assembly (11) includes fixed seat (1101), locating plate two (1104) and temperature and humidity monitor (1107), the inner surface of fixed seat (1101) is fixedly installed with fixed bolt (1102), the side of fixed seat (1101) close to mounting bracket (1) is provided with fixed groove (1103), one side of locating plate two (1104) is fixedly installed with locating block one (1105) and locating block two (1106) that are inserted with mounting bracket (1).
7. The photovoltaic power generation power prediction module mounting structure according to claim 1, characterized by: The wind speed assembly (12) includes a bottom rod (1201), the bottom rod (1201) is provided with a limiting plate one (1202) on the top, the bottom rod (1201) is provided with a limiting plate two (1205) on the bottom, the limiting plate one (1202) is threadedly connected with a connecting bolt (1206) from top to bottom, the limiting plate one (1202) is fixedly installed with a base (1203) and a wind speed monitor (1204) on the top.
Citation Information
Patent Citations
Photovoltaic power generation prediction device
CN221042798U