Simulation of Shingled String Characteristics Depending on Cell Strips Type for High Power Photovoltaic Modules

Ji Su Park, W. Oh, L. Hyung
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Abstract

Recently, with the increase in the use of urban solar power, solar modules are required to produce high power in limited areas. In this report, we proposed the fabrication of a high-power photovoltaic module using shingles technology, and developed accurate string characteristic simulations based on circuit modeling. By comparing the resistance components between the interconnected cells and the cell strips, the ECA resistance was determined to be 0.003 Ω. Based on the equivalent circuit of the modeled shingled string, string simulation was performed according to the type of cell strip. As a result, it was determined that the cell efficiency of the 4-cell strip was the highest at 19.66%, but the efficiency of the string simulated with the 6-cell strip was the highest at 20.48% in the string unit.
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基于电池条类型的大功率光伏组件瓦串特性仿真
最近,随着城市太阳能使用的增加,要求太阳能组件在有限的区域内产生高功率。在本报告中,我们提出了利用瓦片技术制造大功率光伏组件,并基于电路建模开发了精确的串特性仿真。通过比较相互连接的细胞和细胞条之间的电阻组成,确定ECA电阻为0.003 Ω。在模拟瓦板管柱等效电路的基础上,根据单元条带的类型对管柱进行了仿真。结果表明,在串单元中,4单元条带的效率最高,为19.66%,而用6单元条带模拟的串效率最高,为20.48%。
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