CN205628844U - Photovoltaic panel dust pelletizing system - Google Patents
Photovoltaic panel dust pelletizing system Download PDFInfo
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- CN205628844U CN205628844U CN201620430990.7U CN201620430990U CN205628844U CN 205628844 U CN205628844 U CN 205628844U CN 201620430990 U CN201620430990 U CN 201620430990U CN 205628844 U CN205628844 U CN 205628844U
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- environmental monitoring
- monitoring system
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- photovoltaic electroplax
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Abstract
The utility model provides a photovoltaic panel dust pelletizing system, including casing, dispensing system, dust removal machine people, environmental monitoring system, controller, battery, dispensing system includes elevating gear and rotary device inside arranging the casing in, dust removal machine people includes negative pressure absorption wall climbing robot, brush, and it is articulated with the brush that wall climbing robot is adsorbed to the negative pressure, environmental monitoring system is fixed in the casing outside, including air velocity transducer, raindrop sensor, temperature sensor, the controller is connected with casing, dispensing system, dust removal machine people, environmental monitoring system electricity respectively, the battery is connected with photovoltaic panel, first push rod, dispensing system, dust removal machine people, environmental monitoring system, controller electricity respectively. The utility model discloses the beneficial effect who gains is: 1, it is more energy -conserving, adopt from taking the work of solar energy electroplax, need not the extra energy. 2, intelligent high, one -time Setup can independently accomplish photovoltaic panel's cleaning work for a long time, need not manual operation.
Description
Technical field
This utility model relates to a kind of photovoltaic electroplax dust pelletizing system.
Background technology
For thermal power station, photovoltaic generation is without resources such as coals, and power station needs to build reservoir, and not only investment is big, and ecology will also result in impact, and therefore, photovoltaic generation is used in increasing area.Photovoltaic electroplax dust stratification be difficult to clear up always make us the problem of headache, traditional cleaning mode mainly by labor cleaning, is wasted time and energy, in addition it is also necessary to operation of climbing, is had certain danger.
Utility model content
In order to solve the problems referred to above, this utility model provides a kind of photovoltaic electroplax dust pelletizing system, and concrete technical scheme is as follows.
A kind of photovoltaic electroplax dust pelletizing system, including housing, jettison system, dedusting robot, environmental monitoring system, controller, accumulator, wherein,
Described housing is fixed on photovoltaic electroplax side, the upper cover of described housing can under the effect of the first push rod closure or openness;
Described jettison system is placed in described enclosure interior, and described jettison system includes lowering or hoisting gear and rotary apparatus;
Described dedusting robot includes negative-pressure adsorption climbing robot, brush, described negative-pressure adsorption climbing robot is hinged with described brush, it is configured to: when not working, dedusting robot is placed on jettison system, during work, described dedusting robot can be devoted on photovoltaic electroplax under the effect of described lowering or hoisting gear and rotary apparatus, described negative-pressure adsorption climbing robot can photovoltaic electroplax up walk and drive brush inswept at photovoltaic plate surfaces;
Described environmental monitoring system is fixed on hull outside, and described environmental monitoring system includes air velocity transducer, Raindrop sensor, temperature sensor, is configured to described environmental monitoring system and can detect the wind speed of surrounding enviroment, rain event, temperature;
Described controller electrically connects with housing, jettison system, dedusting robot, environmental monitoring system respectively;
Described accumulator electrically connects with photovoltaic electroplax, the first push rod, jettison system, dedusting robot, environmental monitoring system, controller respectively, it is configured to be charged by photovoltaic electroplax, and can power to the first push rod, jettison system, dedusting robot, environmental monitoring system, controller.
Provide the benefit that acquired by this utility model: 1, more energy efficient, use and carry the work of solar energy electroplax, it is not necessary to additional energy source.2, intelligent high, once mounting, long-term autonomous can complete the cleaning of photovoltaic electroplax, it is not necessary to manual operation.
Accompanying drawing explanation
Describe some specific embodiments of the present invention the most by way of example, and not by way of limitation in detail.Reference identical in accompanying drawing denotes same or similar parts or part.It should be appreciated by those skilled in the art that what these accompanying drawings were not necessarily drawn to scale.
Fig. 1 is the mounting structure schematic diagram that this utility model is arranged on photovoltaic electroplax.
Fig. 2 is overall structure schematic diagram of the present utility model.
Fig. 3 is jettison system of the present utility model and the structural representation of dedusting robot.
Fig. 4 is the place system thrown of this utility model and the structural representation at another visual angle of dedusting robot.
Detailed description of the invention
According to below in conjunction with the accompanying drawing detailed description to the specific embodiment of the invention, those skilled in the art will become more apparent from the above-mentioned of the present invention and other purposes, advantage and feature.
As shown in Figure 1,2,3, 4, a kind of photovoltaic electroplax dust pelletizing system 2, including housing 21, jettison system, dedusting robot, environmental monitoring system, controller, accumulator 29.
As it is shown in figure 1, photovoltaic electroplax dust pelletizing system 2 is fixed on photovoltaic electroplax 1 side.
As in figure 2 it is shown, the upper cover of described housing 21 can under the effect of the first push rod closure or openness;
As shown in Figure 1,2,3, 4, it is internal that described jettison system is placed in described housing 21, and described jettison system includes lowering or hoisting gear 27 and rotary apparatus 28;
Described dedusting robot includes negative-pressure adsorption climbing robot 25, brush 26, described negative-pressure adsorption climbing robot 25 is hinged with described brush 26, it is configured to: when not working, dedusting robot is placed on jettison system, during work, described dedusting robot can be devoted on photovoltaic electroplax 1 under the effect of described lowering or hoisting gear 27 and rotary apparatus 28, and described negative-pressure adsorption climbing robot 25 can walk and drive brush 26 inswept on photovoltaic electroplax 1 surface on photovoltaic electroplax 1;
It is outside that described environmental monitoring system is fixed on housing 21, and described environmental monitoring system includes air velocity transducer 23, Raindrop sensor 22, temperature sensor 24, is configured to described environmental monitoring system and can detect the wind speed of surrounding enviroment, rain event, temperature;When environment is the best, system does not works.
Described controller electrically connects with housing 21, jettison system, dedusting robot, environmental monitoring system respectively;
Described accumulator 29 electrically connects with photovoltaic electroplax the 1, first push rod, jettison system, dedusting robot, environmental monitoring system, controller respectively, it is configured to be charged by photovoltaic electroplax 1, and can power to the first push rod, jettison system, dedusting robot, environmental monitoring system, controller.
In this utility model, negative-pressure adsorption climbing robot 25 uses blower fan convulsion to make robot inner chamber produce negative pressure and be adsorbed on photovoltaic electroplax 1, is not limited by photovoltaic electroplax 1 material, and versatility is good.
So far, those skilled in the art will recognize that, exemplary embodiment of the present utility model is illustrate and described although the most detailed, but, in the case of without departing from this utility model spirit and scope, still can directly determine according to this utility model disclosure or derive other variations or modifications of many meeting this utility model principle.Therefore, scope of the present utility model is it is understood that and regard as covering other variations or modifications all these.
Claims (1)
1. a photovoltaic electroplax dust pelletizing system, it is characterised in that include housing, jettison system, dedusting robot, environmental monitoring system, controller, accumulator, wherein,
Described housing is fixed on photovoltaic electroplax side, the upper cover of described housing can under the effect of the first push rod closure or openness;
Described jettison system is placed in described enclosure interior, and described jettison system includes lowering or hoisting gear and rotary apparatus;
Described dedusting robot includes negative-pressure adsorption climbing robot, brush, described negative-pressure adsorption climbing robot is hinged with described brush, it is configured to: when not working, dedusting robot is placed on jettison system, during work, described dedusting robot can be devoted on photovoltaic electroplax under the effect of described lowering or hoisting gear and rotary apparatus, described negative-pressure adsorption climbing robot can photovoltaic electroplax up walk and drive brush inswept at photovoltaic plate surfaces;
Described environmental monitoring system is fixed on hull outside, and described environmental monitoring system includes air velocity transducer, Raindrop sensor, temperature sensor, is configured to described environmental monitoring system and can detect the wind speed of surrounding enviroment, rain event, temperature;
Described controller electrically connects with housing, jettison system, dedusting robot, environmental monitoring system respectively;
Described accumulator electrically connects with photovoltaic electroplax, the first push rod, jettison system, dedusting robot, environmental monitoring system, controller respectively, it is configured to be charged by photovoltaic electroplax, and can power to the first push rod, jettison system, dedusting robot, environmental monitoring system, controller.
Priority Applications (1)
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CN201620430990.7U CN205628844U (en) | 2016-05-13 | 2016-05-13 | Photovoltaic panel dust pelletizing system |
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CN201620430990.7U CN205628844U (en) | 2016-05-13 | 2016-05-13 | Photovoltaic panel dust pelletizing system |
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Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN106487328A (en) * | 2016-11-10 | 2017-03-08 | 上海许继电气有限公司 | Photovoltaic plant laying dust state estimation monitoring system and its method |
CN106843109A (en) * | 2017-01-25 | 2017-06-13 | 天津温纳科技有限公司 | The meteorological harvester and control system of a kind of photovoltaic panel cleaning |
CN107350206A (en) * | 2017-08-04 | 2017-11-17 | 无锡市湖昌机械制造有限公司 | Possesses the cleaning cover plate of upset monitoring function |
-
2016
- 2016-05-13 CN CN201620430990.7U patent/CN205628844U/en active Active
Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN106487328A (en) * | 2016-11-10 | 2017-03-08 | 上海许继电气有限公司 | Photovoltaic plant laying dust state estimation monitoring system and its method |
CN106843109A (en) * | 2017-01-25 | 2017-06-13 | 天津温纳科技有限公司 | The meteorological harvester and control system of a kind of photovoltaic panel cleaning |
CN107350206A (en) * | 2017-08-04 | 2017-11-17 | 无锡市湖昌机械制造有限公司 | Possesses the cleaning cover plate of upset monitoring function |
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C14 | Grant of patent or utility model | ||
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Address after: 450001, Henan, Zhengzhou province hi tech Park Road 11, Henan Provincial University of science and technology incubator, building 2, block B, building 17 Patentee after: Zhengzhou science and Technology Co., Ltd. bracket Address before: 450001, Henan, Zhengzhou province hi tech Park Road 11, Henan Provincial University of science and technology incubator, building 2, block B, building 17 Patentee before: Zhengzhou Kedou Chuangke Technology Co., Ltd. |
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CP01 | Change in the name or title of a patent holder |