Intelligent photovoltaic micro-grid energy monitoring management device
By combining a waterproof membrane, a stop rod, and a spring, using magnets to transmit torque between the operating and driven components, and employing a transparent friction pad design, the problem of moisture seeping into gaps is solved, achieving both waterproofness and ease of operation for the device.
Patent Information
- Application Number
- CN202423203911.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-25
- Publication Date
- 2025-12-26
- Estimated Expiration
- 2034-12-25
AI Technical Summary
In existing intelligent photovoltaic microgrid energy monitoring and management devices, gaps in the control structure can easily allow water vapor to seep in, increasing the risk of short circuits.
It adopts a combination structure of waterproof membrane, abutment rod and spring. The waterproof membrane covers the gaps to prevent moisture from entering; the control part and the driven part use a magnet to transmit torque to drive the knob to rotate, and the friction is increased by a friction pad made of transparent material; the gaps are sealed by a torsion spring shaft and a sealing strip.
It effectively prevents moisture from entering the device, reduces the risk of short circuits, avoids blind operation, and improves the device's waterproof performance and ease of operation.
Smart Images

Figure CN223730059U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to photovoltaic power generation facility technical field, concretely is a kind of intelligent photovoltaic micro network energy monitoring management device. BACKGROUND
[0002] Microgrid energy management system is an energy management system based on Internet of Things, big data and artificial intelligence and other technologies, aims to realize the monitoring, control and optimal scheduling of various energy resources in microgrid, including power grid, photovoltaic, energy storage, energy storage and other, through real-time monitoring the production, consumption, transmission and storage of various energy in microgrid, predict the future energy demand using prediction analysis algorithm, intelligently scheduling various energy resources, optimizing energy allocation, to realize the multi-energy complementary energy optimization of enterprise-level microgrid, to ensure the safe and stable operation of microgrid while improving energy utilization efficiency, reducing energy consumption cost, reducing carbon emissions.
[0003] The application number for a kind of intelligent photovoltaic micro network energy monitoring management device 202021334703.5, including monitoring device shell, the outside of monitoring device shell is fixedly installed with installation base plate, the front surface of monitoring device shell is fixedly installed with display, the front surface of monitoring device shell is movably installed with control button, the front surface of monitoring device shell is fixedly installed with protective front plate, the front surface of monitoring device shell is movably connected with protective cover, the front surface of monitoring device shell is equipped with four number of insertion slot, the inside of insertion slot is fixedly installed with limit ring.The intelligent photovoltaic micro network energy monitoring management device, by setting protective cover, when user installs the protective cover, can be aimed at insertion rod insertion slot and inserted into the inside of limit ring, so that the device has the advantage of preventing water from entering the device, facilitate user use.
[0004] But the technical scheme in the process of using, because there is control structure, whether control button or control knob, all belong to movable structure, water vapor and water are also easy to penetrate into device interior through the gap between control structure and device shell, to improve the risk of device short circuit. Utility model content
[0005] Based on this, the utility model aims at providing a kind of intelligent photovoltaic micro network energy monitoring management device to solve the technical problems mentioned in the above background technology.
[0006] To achieve the above object, the utility model provides the following technical scheme: an intelligent photovoltaic micro network energy monitoring management device, including device main part, the device main part top is connected with the fender through the torsional spring shaft, and the fender side is provided with waterproof membrane, abutment rod and operating part respectively, the abut part outside is sleeved with spring, the fender other side is connected with driven part, and the driven part and operating part inside are all installed with magnet, one side of the driven part is connected with friction pad.
[0007] By adopting the above technical scheme, the worker opens the fender upwards, then the worker connects the cable into the device main part, after wiring, the worker releases the fender, at this time, the fender is driven downwards to close the device main part by the torsional spring shaft; when the worker needs to operate the control button, the worker can press the waterproof membrane to make the abutment rod displace and abut against the control button, and the waterproof membrane is deformed, the gap between the abutment rod and the fender is shielded by the waterproof membrane, water and water vapor are effectively prevented from entering, thereby the control button is operated, and the abutment rod is reset by the spring after the worker releases his hand; when the worker needs to operate the control knob, the worker rotates the operating part, the torque is transmitted between the operating part and the driven part by the magnet, thereby the operating part drives the driven part to rotate, the driven part rotates and increases the friction force by the friction pad to drive the control knob to rotate, and since the fender, the operating part, the driven part and the friction pad are all transparent materials, the worker can see the orientation of the control knob, blind operation is avoided to affect work, and the worker can check the display screen and the state of the control button through the fender.
[0008] Further, the device main part side is provided with a display screen, a control button, a control knob and a cable from top to bottom.
[0009] By adopting the above technical scheme, the worker connects the cable into the device main part, then can check data through the display screen, and controls the device main part through the control button and the control knob.
[0010] Further, the control button is provided with a plurality of waterproof membranes, abutment rods and springs, two waterproof membranes, abutment rods and springs form a group, and a plurality of waterproof membranes, abutment rods and springs correspond to a plurality of control buttons.
[0011] By adopting the above technical scheme, since the waterproof membrane, the abutment rod and the spring are all provided with a plurality of groups, a plurality of control buttons can be conveniently operated.
[0012] Further, the abutment rod abuts against the control button and the waterproof membrane, and the abutment rod and the fender are slidingly connected.
[0013] By adopting the technical scheme, the waterproof film is pressed to displace the abutting rod to abut against the control button, the waterproof film is deformed, the gap between the abutting rod and the protective plate is shielded through the waterproof film, water and water vapor are effectively prevented from entering, and the control button is operated.
[0014] Further, the control knobs, the operating members, the driven members and the friction pads are provided in plurality, and the magnets are provided in plurality of groups, and the plurality of groups of magnets, the plurality of operating members, the plurality of driven members and the plurality of friction pads correspond to the plurality of control knobs respectively.
[0015] By adopting the technical scheme, since the operating members, the driven members and the friction pads are provided in plurality, and the magnets are provided in plurality of groups, the plurality of control knobs can be conveniently operated.
[0016] Further, the protective plate, the operating member and the driven member are of transparent material, and the friction pad is made of transparent silica gel.
[0017] By adopting the technical scheme, since the protective plate, the operating member, the driven member and the friction pad are of transparent material, the orientation of the control knob can be seen by the staff, blind operation is avoided to affect work, and the staff can see the display screen and the state of the control button through the protective plate.
[0018] Further, the operating member and the driven member are in the shape of "H" in cross section, and the operating member and the driven member are rotationally connected with the protective plate.
[0019] By adopting the technical scheme, when the staff needs to operate the control knob, the staff rotates the operating member, and the operating member drives the driven member to rotate.
[0020] Further, the friction pad abuts against the control knob.
[0021] By adopting the technical scheme, the driven member is driven to rotate by the friction pad after the driven member is rotated to increase the friction.
[0022] Further, each group of the magnets is composed of twelve magnets, and the twelve magnets are distributed in the shape of double-ring array.
[0023] By adopting the technical scheme, the torque is transmitted between the operating member and the driven member through the magnets, so that the operating member drives the driven member to rotate.
[0024] Further, a first sealing strip is connected to one side of the top of the device body, and a second sealing strip is connected to the lower side of one side of the device body and the lower side of the other side of the protective plate.
[0025] By adopting the technical scheme, the gap between the protective plate and the device body is filled by the first sealing strip, and the gap between the cable and the protective plate and the device body is filled by the second sealing strip, so that water and water vapor are effectively prevented from entering.
[0026] In summary, the utility model mainly has the following beneficial effects:
[0027] 1、 The utility model discloses a waterproof membrane, the setting of the resistance rod and spring, and the gap between the resistance rod and the protective plate is shielded by the waterproof membrane, can press the waterproof membrane and make the resistance rod displace and press against the control button, thereby the control button is manipulated, and then the resistance rod is reset by the spring drive, water and water vapor are effectively avoided and enter the device main body inside through the control button,
[0028] 2、 The utility model discloses the setting of operating element, driven part, friction pad and magnet, rotates operating element, and the torque is transmitted between operating element and driven part through magnet, thereby operating element drives driven part to rotate, and driven part rotates and increases friction force through friction pad to facilitate the rotation of control knob, and because protective plate, operating element, driven part and friction pad are transparent material, thereby the orientation of control knob is seen by staff, and blind operation is avoided to influence work, water and water vapor are effectively avoided and enter the device main body inside through the control knob,
[0029] 3、 The utility model discloses the setting of torsion spring shaft and protective plate, and the pressure is always applied to protective plate through torsion spring shaft, thereby protective plate is attached to device main body, and the closed effect is played, water and water vapor are effectively avoided and enter the device main body inside through display screen and cable interface position. BRIEF DESCRIPTION OF DRAWINGS
[0030] Figure 1 It is structural schematic diagram when the utility model closes.
[0031] Figure 2 It is structural schematic diagram when the utility model opens.
[0032] Figure 3 It is sectional structure schematic diagram of the utility model.
[0033] Figure 4 It is operating element explosion structure schematic diagram of the utility model.
[0034] Figure 5 It is resistance rod structure schematic diagram of the utility model.
[0035] In the drawing: 1, device main body;2, display screen;3, control button;4, control knob;5, cable;6, first sealing strip;7, second sealing strip;8, torsion spring shaft;9, protective plate;10, waterproof membrane;11, resistance rod;12, spring;13, operating element;14, driven part;15, friction pad;16, magnet. DETAILED DESCRIPTION
[0036] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. The embodiments described below with reference to the drawings are exemplary and are only used to explain the present application, and cannot be understood as a limitation on the present application.
[0037] The embodiments of the present application will be described below according to the overall structure of the present application.
[0038] Embodiment one:
[0039] An intelligent photovoltaic micro-grid energy monitoring and management device, as shown in Figures 1-5 Figure 1, comprising a device main body 1, a protective plate 9 is connected to the top of the device main body 1 through a torsion spring shaft 8, the protective plate 9 is driven to rotate downward by the torsion spring shaft 8 to close the device main body 1, effectively preventing water and water vapor from entering; a waterproof film 10, a stop rod 11 and a control knob 4 are arranged on one side of the protective plate 9, the stop rod 11 abuts against the control button 3 and the waterproof film 10, the stop rod 11 is slidingly connected with the protective plate 9, a spring 12 is sleeved outside the stop rod 11, a plurality of control buttons 3 are arranged, a plurality of waterproof films 10, stop rods 11 and springs 12 are arranged, two waterproof films 10, stop rods 11 and springs 12 form a group, a plurality of waterproof films 10, stop rods 11 and springs 12 correspond to a plurality of control buttons 3, when an operator needs to operate the control button 3, the operator can press the waterproof film 10 to displace the stop rod 11 to abut against the control button 3, and the waterproof film 10 is deformed, the gap between the stop rod 11 and the protective plate 9 is blocked by the waterproof film 10, effectively preventing water and water vapor from entering, thereby operating the control button 3, and the operator releases his hand to drive the stop rod 11 to reset through the spring 12; a driven part 14 is connected to the other side of the protective plate 9, the protective plate 9, the control knob 4 and the driven part 14 are all of transparent material, the control knob 4 and the driven part 14 are both in the shape of "H", the control knob 4 and the driven part 14 are both rotationally connected with the protective plate 9, magnets 16 are installed inside the control knob 4 and the driven part 14, a friction pad 15 is connected to one side of the driven part 14, the friction pad 15 is made of transparent silicone, the friction pad 15 abuts against the control knob 4, a plurality of control knobs 4, control knobs 13, driven parts 14 and friction pads 15 are arranged, a plurality of magnets 16 are arranged, a plurality of magnets 16, a plurality of control knobs 13, a plurality of driven parts 14 and a plurality of friction pads 15 correspond to a plurality of control knobs 4 respectively, each group of magnets 16 is composed of twelve magnets 16, the twelve magnets 16 are distributed in a double-ring array, when an operator needs to operate the control knob 4, the operator rotates the control knob 4, torque is transmitted between the control knob 4 and the driven part 14 through the magnets 16, thereby driving the driven part 14 to rotate, the driven part 14 rotates to increase the friction through the friction pad 15 to facilitate driving the control knob 4 to rotate, and since the protective plate 9, the control knob 4, the driven part 14 and the friction pad 15 are all of transparent material, the operator can see the orientation of the control knob 4.
[0040] Referring to Figure 2 and Figure 3 In the above embodiment, the device body 1 is provided with a display screen 2, a control button 3, a control knob 4 and a cable 5 from top to bottom on one side, and the staff connects the cable 5 into the device body 1, and then can check the data through the display screen 2 and control the device body 1 through the control button 3 and the control knob 4.
[0041] Embodiment two:
[0042] On the basis of the above embodiment one, in order to increase the sealing performance, the following setting is made.
[0043] Referring to Figures 1-3 In the above embodiment, the device body 1 is provided with a display screen 2, a control button 3, a control knob 4 and a cable 5 from top to bottom on one side, and the staff connects the cable 5 into the device body 1, and then can check the data through the display screen 2 and control the device body 1 through the control button 3 and the control knob 4.
[0044] The implementation principle of the utility model is: first, the staff opens the protective plate 9 upwards, then the staff connects the cable 5 into the device body 1, and after the wiring is completed, the staff releases the protective plate 9, at this time, the protective plate 9 is driven to rotate downwards to close the device body 1 through the torsional spring shaft 8, and the gap between the protective plate 9 and the device body 1 is filled through the first sealing strip 6, and the gap between the cable 5 and the protective plate 9 and the device body 1 is filled through the second sealing strip 7, effectively avoiding water and water vapor from entering;
[0045] When the staff needs to operate the control button 3, the staff can press the waterproof film 10 to make the abutting rod 11 abut against the control button 3, and the waterproof film 10 is deformed, the gap between the abutting rod 11 and the protective plate 9 is blocked through the waterproof film 10, effectively avoiding water and water vapor from entering, so as to operate the control button 3, and the abutting rod 11 is driven to reset through the spring 12 after the staff releases his hand;
[0046] When the staff needs to operate the control knob 4, the staff rotates the operating part 13, the torque is transmitted between the operating part 13 and the driven part 14 through the magnet 16, so that the operating part 13 drives the driven part 14 to rotate, the friction force is increased through the friction pad 15 after the driven part 14 rotates to facilitate driving the control knob 4 to rotate, and since the protective plate 9, the operating part 13, the driven part 14 and the friction pad 15 are all transparent materials, the staff can see the direction of the control knob 4, avoid blind operation affecting work, and the staff can check the display screen 2 and the state of the control button 3 through the protective plate 9.
[0047] Although the embodiments of the utility model have been shown and described, the specific embodiments are only the explanation of the utility model, and are not the limitation of the utility model, and the specific features, structures, materials or characteristics described can be combined in any one or more embodiments or examples in a suitable way, and the person skilled in the art can make the modification, replacement and change of the embodiments without the creative contribution after reading the specification without departing from the principles and the purpose of the utility model, but as long as in the claim range of the utility model, it is protected by the patent law.
Claims
1. A smart photovoltaic microgrid energy monitoring management device comprising a device body (1), characterized in that: The device body (1) top is connected with the protective plate (9) through the torsion spring shaft (8), and one side of the protective plate (9) is provided with the waterproof film (10), the stop rod (11) and the operating part (13), respectively, the stop rod (11) is externally sleeved with the spring (12), the other side of the protective plate (9) is connected with the driven part (14), and the driven part (14) and the operating part (13) are internally provided with the magnet (16), and one side of the driven part (14) is connected with the friction pad (15).
2. The smart photovoltaic micro-grid energy monitoring management device according to claim 1, wherein: The device body (1) is provided with the display screen (2), the control button (3), the control knob (4) and the cable (5) from top to bottom on one side.
3. The smart photovoltaic micro-grid energy monitoring management device according to claim 2, wherein: The control button (3) is provided with a plurality of waterproof films (10), stop rods (11) and springs (12), two waterproof films (10), stop rods (11) and springs (12) are a group, and a plurality of waterproof films (10), stop rods (11) and springs (12) correspond to a plurality of control buttons (3).
4. The smart photovoltaic micro-grid energy monitoring management device according to claim 3, wherein: The stop rod (11) is in abutment with the control button (3) and the waterproof film (10), and the stop rod (11) is in sliding connection with the protective plate (9).
5. The smart photovoltaic micro-grid energy monitoring management device according to claim 2, wherein: The control knob (4), the operating part (13), the driven part (14) and the friction pad (15) are provided with a plurality of magnets (16), and a plurality of magnets (16), a plurality of operating parts (13), a plurality of driven parts (14) and a plurality of friction pads (15) correspond to a plurality of control knobs (4), respectively.
6. The smart photovoltaic micro-grid energy monitoring management device according to claim 5, wherein: The protective plate (9), the operating part (13) and the driven part (14) are all of transparent material, and the friction pad (15) is made of transparent silica gel.
7. The smart photovoltaic micro-grid energy monitoring management device according to claim 6, wherein: The operating part (13) and the driven part (14) are all of "H" shape in cross section, and the operating part (13) and the driven part (14) are all in rotary connection with the protective plate (9).
8. The smart photovoltaic micro-grid energy monitoring management device according to claim 6, wherein: The friction pad (15) is in abutment with the control knob (4).
9. The smart photovoltaic micro-grid energy monitoring management device according to claim 5, wherein: Each group of the magnet (16) is composed of twelve magnets (16), and the twelve magnets (16) are distributed in double ring array.
10. The smart photovoltaic micro-grid energy monitoring management device according to claim 2, wherein: The device body (1) top is connected with the first sealing strip (6) on one side, and the device body (1) is connected with the second sealing strip (7) below one side and the other side below the protective plate (9).
Citation Information
Patent Citations
Intelligent photovoltaic microgrid energy monitoring management device
CN212344265U