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Based on the Internet of things a self-cleaning solar power system of the household micro-grid

Published on May 28, 2016 in CCDC (Chinese Control and Decision Conference)
· DOI :10.1109/CCDC.2016.7531475
Guannan Du1
Estimated H-index: 1
,
Xiuxia Zhang1
Estimated H-index: 1
+ 2 AuthorsHaicheng Wei1
Estimated H-index: 1
Abstract
As panels located in the wilderness and affected by the dust and sandstorm, photovoltaic efficiency was reduced by 30%–40% after a period of time even worse. Based on the Internet of things the self-cleaning solar power system of the household micro-grid was designed in this paper. It included micro-grids and control systems; a self-cleaning solar power system of the household micro-grid was presented. Nano-diamond powder, ethyl cellulose, and solvent were mixed. They accorded to mass ratio of 1:3:24. The Nano-diamond slurry was got with a long time ultrasonic heating dispersed, which was adopted to prepare Nano-diamond film on the window glass of the solar cell to enhance self-cleaning capacity of solar power. The household micro-grid comprises a control system, solar panels, inverter, super capacitor. The micro-grid can make the electricity be intelligent deployment.
  • References (11)
  • Citations (5)
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References11
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#1Xiu Xia ZhangH-Index: 1
#2Jun Xia WenH-Index: 1
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nanoDiamond was mixed with ethylic cellulose and other Material to form to paste. A series of sol-gel nanoDiamond film with different proportions were designed test intentionally. nanoDiamond film was fabricated on Aluminum substrates using two-steps sintering process. The moving terminal of the variable super-capacitor was the shaft which throughout each of monolithic capacitor plate. The low melting point glass powder possesses giant permittivity, low dielectric loss, good thermal stability an...
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#1杨 小聪H-Index: 1
#2张 秀霞H-Index: 1
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将纳米金刚石粉末、乙基纤维素按一定的质量比混合后加入溶剂制成纳米金刚石浆料。用玻璃棒将溶胶滴在固定在溶胶凝胶甩胶机的超白玻璃上,溶胶凝胶甩胶机3000转/分甩胶成膜,再经过热烧结后得到透明的纳米金刚石薄膜。将烧结好的薄膜玻璃作为太阳能电池的窗口层,通过I-V特性测试系统测试其转换效率、影响因子等。并与未镀膜洁净的、未镀膜户外放置一段时间、镀膜户外放置一段时间的太阳能电池的各项数据进行对比分析。最后得出在太阳能电池表面制备纳米金刚石透明薄膜有自清洁功能,可以提高太阳能电池转换效率。Nano-diamond slurry was got by mixing with nano-diamond powder, ethyl cellulose and solvent in a certain quality. Then the mixed solvent was dropped on ultra-white glass which fixed on sol-gel glue rejection machine. The machine was set 3000 r/min to get fil...
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#1Xiuxia Zhang (Hefei University of Technology)H-Index: 1
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Incident energy on solar modules is lost both through reflection at the first air/glass interface of the packaging glass and through scattering or absorption by accumulated dust on outdoor panels. While simple antireflective coatings on the glass can help alleviate reflection in systems with motorized tracking, the problem of dust accumulation on module surfaces over time remains and can even be exacerbated by certain antireflective coatings. Here, a process of non-lithographic nanostructuring o...
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Abstract The low-cost and large area screen-printed nano-diamond film (NDF) for electronic emission was fabricated. The edges and corners of nanocrystalline diamond are natural field-emitters. The nano-diamond paste for screen-printing was fabricated of mixing nano-graphite and other inorganic or organic vehicles. Through enough disperse in isopropyl alcohol by ultrasonic nano-diamond paste was screen-printed on the substrates to form NDF. SEM images showed that the surface morphology of NDF was...
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In this paper, the sol-gel method was adopted preparation uniform Nano-diamond films on large glass. The mixture of Nano-graphite and organic vehicles doped to nano-diamond paste and further ultrasonic dispersed. Through test a variety different proportion of Nano-diamond paste, Nano-diamond film was prepared by sol-gel method at 3000–7000/min. The special sintering and annealing were taken to improve the field emission. The samples of Nano-diamond film were micro-analyzed by SEM and tested the ...
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We developed new nanodiamond paste. The large area (25 cm2 ) nanocrystalline diamond film (NCDF) was prepared on graphite substrates by screen-printing method. We used special three step sintering processing (TSSP) thermal treatment technique and the two steps post-treatment process to improved surface morphology of NCDF. We measured the field emission characteristics of NCDF as cathode. The result shown that lower cost large area NCDF can be used as electron source in military technique and oth...
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