Stable control device of micro-grid
By installing a transparent black light-blocking strip and an automatic winding and cleaning component on the touch screen of the smart microgrid controller, the problem of unclear touch screen display under strong light was solved, achieving a stable operating environment and clear information display.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-09
- Publication Date
- 2026-04-03
AI Technical Summary
The touch screen of the smart microgrid controller is not bright enough under strong light, which makes the text and images blurry, reduces the black and white contrast, makes it difficult to identify important information, and may lead to operation errors.
A stable control device was designed, comprising a transparent black light-blocking tape, a positioning and winding assembly, and a cleaning assembly. The transparent black light-blocking tape prevents direct exposure to strong light, the positioning and winding assembly enables automatic winding of the light-blocking tape, and the cleaning assembly uses a microfiber cloth scraper to clean fingerprints from the surface of the light-blocking tape.
It effectively avoids the impact of strong light on the touch screen, maintains a clear display, and automatically cleans fingerprints on the light shielding strip, ensuring clear and accurate operation.
Smart Images

Figure CN224076772U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of microgrid production technology, specifically to a microgrid stability control device. Background Technology
[0002] The intelligent microgrid controller is a core component of a microgrid system, responsible for monitoring, controlling, and optimizing power flow and energy storage within the microgrid. By integrating advanced communication technologies, computing power, and control algorithms, it achieves efficient, stable, and reliable operation of the microgrid. Through sensors and data acquisition systems, the intelligent microgrid controller monitors key parameters such as voltage, current, frequency, and power in real time. Based on the microgrid's load demand and renewable energy generation, it intelligently dispatches energy storage and renewable energy generation equipment to achieve efficient energy utilization. It also detects faults within the microgrid in real time, quickly locates the fault point, and takes corresponding protective measures to ensure the stable operation of the microgrid.
[0003] The smart microgrid controller can be operated through the front touch screen. However, when the touch screen is exposed to strong light, the screen's brightness becomes insufficient, resulting in blurry text and images, reduced black-and-white contrast, and difficulty in recognizing important information, leading to operational errors. Utility Model Content
[0004] The purpose of this invention is to provide a stable control device for microgrids to solve the problems mentioned in the background art.
[0005] This utility model provides the following technical solution:
[0006] A microgrid stabilization control device includes: a smart microgrid controller, a touch screen display, a positioning and winding assembly, a cleaning assembly, and a light-shielding strip. The main body of the control device consists of the smart microgrid controller and the touch screen display disposed on the front of the smart microgrid controller. The positioning and winding assembly is disposed on both sides of the outer wall of the touch screen display of the smart microgrid controller. There are two sets of positioning and winding assemblies. Each positioning and winding assembly includes a fixing block disposed on both sides of the outer wall of the touch screen display of the smart microgrid controller. The cleaning assembly is disposed inside the fixing block. The two ends of the light-shielding strip are respectively wound around the two sets of positioning and winding assemblies.
[0007] By adopting the above technical solution, the transparent black light-shielding strip can prevent strong light from shining directly on the surface of the touch screen, and the light-shielding strip at the touch screen can be kept clean by rolling it up.
[0008] Preferably, the positioning and winding assembly further includes a positioning roller rotatably connected to the center of the fixed block and a winding roller rotatably connected to one side of the fixed block, with the two ends of the light-shielding strip respectively wound around the two sets of winding rollers.
[0009] By adopting the above technical solution, the positioning roller can provide a way to position the shading strip between the gap generated by the smart microgrid controller.
[0010] Preferably, the positioning and winding assembly further includes a handle fixed to the bottom end of the winding roller and a gear fixed to the top end of the winding roller.
[0011] By adopting the above technical solution, the handle can drive the take-up roller and the gear above it to rotate together.
[0012] Preferably, the positioning and winding assembly further includes a fixing plate disposed on the outer wall of the fixing block, the fixing plate having a circular hole inside, a guide rod slidably connected in the circular hole of the fixing plate, a toothed block welded to one end of the guide rod, the toothed block meshing with a gear, and a No. 1 spring sleeved on the guide rod.
[0013] By adopting the above technical solution, the tooth block can be stably meshed with the gear by the first spring.
[0014] Preferably, the cleaning assembly includes a connecting shaft welded to the other side inside the fixed block and a cleaning scraper rotatably connected to the connecting shaft, wherein the surface of the cleaning scraper is made of microfiber cloth.
[0015] By adopting the above technical solution, the cleaning scraper can achieve an angle change on the connecting shaft.
[0016] Preferably, the cleaning assembly further includes a positioning block welded to the inner wall of the fixing block and a second spring with one end hooked to the positioning block by a hook, the other end of the second spring being fixed to the outer wall of the cleaning scraper.
[0017] By adopting the above technical solution, the cleaning scraper can be made to adhere to the sunshade strip by lifting the No. 2 spring.
[0018] In summary, this utility model has at least one of the following beneficial effects:
[0019] (1) The light-shielding strip of this utility model is made of transparent black material to prevent strong light from directly shining on the touch screen and causing the pattern to be unclear. The light-shielding strip can be wound up by the positioning and winding component. Since the light-shielding strip at the touch screen is easily contaminated by fingerprints from manual operation, the unused light-shielding strip can be moved to the operation area of the touch screen by the positioning and winding component to replace the new light-shielding strip and maintain the light-shielding effect.
[0020] (2) When the positioning and winding assembly of this utility model rotates and winds the light-shielding tape with fingerprints attached, the cleaning assembly attached to the surface of the light-shielding tape cleans the fingerprints on the surface of the light-shielding tape. Attached Figure Description
[0021] Figure 1 This is a three-dimensional structural schematic diagram of the present invention;
[0022] Figure 2 This is a schematic diagram of the three-dimensional unfolded structure of this utility model;
[0023] Figure 3 This is a three-dimensional front view of the positioning and winding assembly and the cleaning assembly of this utility model.
[0024] Figure 4 This is a three-dimensional back view of the positioning and winding assembly and the cleaning assembly of this utility model.
[0025] In the diagram: 1. Intelligent microgrid controller; 2. Touch screen display; 3. Positioning and winding assembly; 301. Fixing block; 302. Positioning roller; 303. Winding roller; 304. Handle; 305. Gear; 306. Fixing plate; 307. Guide rod; 308. Tooth block; 309. Spring No. 1; 4. Cleaning assembly; 401. Connecting shaft; 402. Cleaning scraper; 403. Positioning block; 404. Spring No. 2; 5. Sunshade strip. Detailed Implementation
[0026] 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.
[0027] The following is in conjunction with the appendix Figure 1-4 The embodiments of this utility model will be described in further detail.
[0028] Example 1
[0029] Please see Figures 1-4 This embodiment provides a technical solution: a microgrid stability control device, including: an intelligent microgrid controller 1, a touch screen display 2, a positioning and winding assembly 3, a cleaning assembly 4, and a light-shielding strip 5;
[0030] The main body of the control device consists of a smart microgrid controller 1 and a touch screen 2 set on the front of the smart microgrid controller 1. The smart microgrid controller 1 intelligently dispatches energy storage equipment and renewable energy power generation equipment according to the load demand of the microgrid and the power generation of renewable energy to achieve efficient energy utilization, detect faults in the microgrid in real time, quickly locate the fault point, and take corresponding protection measures to ensure the stable operation of the microgrid. The above is the existing technology and will not be described in detail below.
[0031] The positioning and winding assembly 3 is installed on both sides of the outer wall of the touch screen 2 of the smart microgrid controller 1. There are two sets of positioning and winding assemblies 3. Each positioning and winding assembly 3 includes a fixing block 301 installed on both sides of the outer wall of the touch screen 2 of the smart microgrid controller 1, a positioning roller 302 rotatably connected to the center of the fixing block 301, and a winding roller 303 rotatably connected to one side of the fixing block 301. The two ends of the light-shielding tape 5 are respectively wound around the two sets of winding rollers 303 and fixed to the bottom of the winding rollers 303. The handle 304 and the gear 305 fixed on the top of the take-up roller 303, the fixing plate 306 set on the outer wall of the fixing block 301, the fixing plate 306 has a round hole in the inside, the guide rod 307 is slidably connected in the round hole of the fixing plate 306, the tooth block 308 is welded to one end of the guide rod 307, the tooth block 308 meshes with the gear 305, the guide rod 307 is fitted with a No. 1 spring 309, the cleaning component 4 is set inside the fixing block 301, and the two ends of the light-shielding tape 5 are respectively wrapped around the two sets of positioning take-up components 3.
[0032] The smart microgrid controller 1 can be operated via the touch screen 2. The smart microgrid controller 1 intelligently dispatches energy storage devices and renewable energy power generation devices according to the load demand of the microgrid and the power generation of renewable energy to achieve efficient energy utilization. It can detect faults in the microgrid in real time, quickly locate the fault point, and take corresponding protective measures to ensure the stable operation of the microgrid. When strong light shines on the touch screen 2, the light shielding strip 5 can be used to shield and protect the touch screen 2, allowing personnel to operate the touch screen 2 through it. When a large number of fingerprints are attached to the surface of the light shielding strip 5 on the touch screen 2, the positioning and winding component 3 drives the light shielding strip 5 to move. During the movement of the light shielding strip 5, the cleaning component 4 can quickly clean the fingerprints attached to the surface of the light shielding strip 5.
[0033] Because the two ends of the light-shielding tape 5 are wrapped around the take-up roller 303 of the fixed block 301, and the light-shielding tape 5 is set between the gap between the intelligent microgrid controller 1 and the positioning roller 302, the take-up roller 303 is rotated by the hand handle 304. At this time, the light-shielding tape 5 wrapped around the take-up roller 303 is wound up. When the take-up roller 303 is rotating, the take-up roller 303 can synchronously drive the gear 305 to rotate together. Because the gear 305 meshes with the tooth block 308 on the guide rod 307, and the tooth block 308 is squeezed by the first spring 309, it can move stably through the guide rod 307 in the fixed plate 306, thereby achieving rapid positioning during the rotation of the take-up roller 303.
[0034] Example 2
[0035] Please see Figures 1-4 This embodiment provides a technical solution: a microgrid stability control device, including: a connecting shaft 401, a cleaning scraper 402, a positioning block 403, and a second spring 404;
[0036] The cleaning component 4 includes a connecting shaft 401 welded to the other side inside the fixed block 301 and a cleaning scraper 402 rotatably connected to the connecting shaft 401. The surface of the cleaning scraper 402 is made of microfiber cloth. A positioning block 403 is welded to the inner wall of the fixed block 301 and a second spring 404 with one end hooked to the positioning block 403 by a hook. The other end of the second spring 404 is fixed to the outer wall of the cleaning scraper 402.
[0037] When the take-up roller 303 drives the light-shielding belt 5 to move during take-up, the cleaning scraper 402 is lifted and reset by the second spring 404 on the positioning block 403. At this time, the cleaning scraper 402 can change its angle through the connecting shaft 401, so that the cleaning scraper 402 can adhere to the surface of the light-shielding belt 5. When the light-shielding belt 5 moves during take-up, it can quickly clean the fingerprints on the surface by contacting the cleaning scraper 402.
[0038] The implementation principle of the microgrid stability control device of this utility model is as follows:
[0039] First, the smart microgrid controller 1 can be operated through the touch screen 2. The smart microgrid controller 1 intelligently dispatches energy storage devices and renewable energy power generation devices according to the load demand of the microgrid and the power generation of renewable energy to achieve efficient energy utilization. It can detect faults in the microgrid in real time, quickly locate the fault point, and take corresponding protective measures to ensure the stable operation of the microgrid. When strong light shines on the touch screen 2, the light shielding strip 5 can be used to shield and protect the touch screen 2, and personnel can operate the touch screen 2 through it. When a large number of fingerprints are attached to the surface of the light shielding strip 5 on the touch screen 2, the positioning and winding component 3 drives the light shielding strip 5 to move. During the movement of the light shielding strip 5, the cleaning component 4 can quickly clean the fingerprints attached to the surface of the light shielding strip 5.
[0040] Secondly, because the two ends of the light-shielding strip 5 are wrapped around the take-up roller 303 of the fixed block 301, and the light-shielding strip 5 is set between the gap between the intelligent microgrid controller 1 and the positioning roller 302, the take-up roller 303 is rotated by the hand handle 304. At this time, the light-shielding strip 5 wrapped around the take-up roller 303 is wound up. When the take-up roller 303 is rotating, the take-up roller 303 can synchronously drive the gear 305 to rotate together. Because the gear 305 meshes with the tooth block 308 on the guide rod 307, and the tooth block 308 is squeezed by the first spring 309, it can move stably through the guide rod 307 in the fixed plate 306, thereby achieving rapid positioning during the rotation of the take-up roller 303.
[0041] Finally, when the take-up roller 303 drives the light-shielding belt 5 to move and retract, the cleaning scraper 402 is lifted and reset by the second spring 404 on the positioning block 403. At this time, the cleaning scraper 402 can change its angle through the connecting shaft 401, so that the cleaning scraper 402 can adhere to the surface of the light-shielding belt 5. When the light-shielding belt 5 moves and retracts, it can quickly clean the fingerprints on the surface by contacting the cleaning scraper 402.
[0042] It will be apparent to those skilled in the art that this invention is not limited to the details of the exemplary embodiments described above, and that it can be implemented in other specific forms without departing from the spirit or essential characteristics of this invention. Therefore, the embodiments should be considered illustrative and non-limiting in all respects, and the scope of this invention is defined by the appended claims rather than the foregoing description. Thus, it is intended that all variations falling within the meaning and scope of equivalents of the claims be included within this invention. No reference numerals in the claims should be construed as limiting the scope of the claims.
Claims
1. A stabilizing control device for a microgrid, characterized by comprising: Include: Control device body, the control device body is composed of intelligent microgrid controller (1) and touch display screen (2) arranged on the front of intelligent microgrid controller (1); Positioning winding assembly (3), the positioning winding assembly (3) is arranged at the touch display screen (2) of intelligent microgrid controller (1) both sides of outer wall, the number of the positioning winding assembly (3) is two groups, the positioning winding assembly (3) includes fixed block (301) arranged at the touch display screen (2) of intelligent microgrid controller (1) both sides of outer wall; Shading band (5), both ends of the shading band (5) are wound on two groups of the positioning winding assembly (3) respectively.
2. The stable control device of a micro-grid according to claim 1, characterized in that: The positioning winding assembly (3) further includes positioning roller (302) rotationally connected to the central part inside the fixed block (301) and winding roller (303) rotationally connected to one side inside the fixed block (301), both ends of the shading band (5) are wound on two groups of winding roller (303) respectively.
3. The device for stable control of a microgrid according to claim 2, characterized in that: The positioning winding assembly (3) further includes handle (304) fixedly arranged on the bottom end of winding roller (303) and gear (305) fixedly arranged on the top end of winding roller (303).
4. The stable control device of a micro-grid according to claim 3, characterized in that: The positioning winding assembly (3) further includes fixed plate (306) arranged on the outer wall of fixed block (301), the inside of the fixed plate (306) is provided with a round hole, guide rod (307) slidingly connected in the round hole of fixed plate (306), tooth block (308) welded on one end of guide rod (307), the tooth block (308) is engaged with gear (305), a spring (309) is sleeved on the guide rod (307).
5. The stable control device of a micro-grid according to claim 1, wherein Further including cleaning assembly (4), the cleaning assembly (4) is arranged in the inside of fixed block (301), the cleaning assembly (4) includes connecting shaft (401) welded on the other side inside the fixed block (301) and cleaning scraper (402) rotationally connected on the connecting shaft (401), the surface of the cleaning scraper (402) is superfine fiber cloth material.
6. The stable control device of a micro-grid according to claim 5, characterized in that: The cleaning assembly (4) further includes positioning block (403) welded on the inner wall of fixed block (301) and second spring (404) with one end hooked on the positioning block (403), the other end of the second spring (404) is fixedly arranged on the outer wall of cleaning scraper (402).