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ROLE OF ANTIREFLECTION COATING IN MICROGROOVED SILICON SOLAR CELLS

机译:抗反射涂层在微沟槽硅太阳能电池中的作用

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The role of AR coatings in microgrooved solar cells having different slat angles has been studied in detail deriving the expression of the reflection coefficient for various slat angles for unencapsulated and encapsulated cells. The role of flats of texturized surfaces have also been studied. It is shown that there is little influence of the AR coating when the slat angle is less than 55 degrees, while the improvement of the short-circuit current may be as high as 22% on a slat angle of 70.5 degrees, It is observed that encapsulated cells having small groove angles (< 55 degrees) have greater efficiencies than the cells having groove angles in the range of 90 degrees to 120 degrees, but exhibit larger variation in efficiency with changes in the flat-top area coverage. The optimum thickness for single layer AR coated (ZnS) encapsulated cells and also for SiO2 coated unencapsulated cells is 1250 Angstrom. [References: 10]
机译:已经详细研究了AR涂层在具有不同板条角的微槽太阳能电池中的作用,推导了未封装和封装的电池的各种板条角的反射系数的表达式。还已经研究了带纹理的表面的平面的作用。结果表明,当板条角小于55度时,对AR涂层的影响很小,而当板条角为70.5度时,短路电流的改善率可高达22%。具有小的凹槽角(<55度)的封装电池比具有在90度到120度范围内的凹槽角的电池具有更高的效率,但是随着平顶面积覆盖率的变化,效率表现出更大的变化。单层AR涂层(ZnS)封装电池以及SiO2涂层未封装电池的最佳厚度为1250埃。 [参考:10]

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