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Mathematical analysis of total-cross-tied photovoltaic array under partial shading condition and its comparison with other configurations

机译:部分遮光条件下全交叉光伏阵列的数学分析及其与其他结构的比较

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The goal of this paper is to investigate total-cross-tied (TCT) configuration under partial shading condition. A full investigation requires mathematical analysis and simulation. An accurate mathematical analysis gives us a better understanding of how partial shading affects the output curves of the solar cell, so we first mathematically analyze the TCT (2 x 2) configuration under different partial shading conditions and then we check the mathematically analysis accuracy through Matlab simulation. All of the simulations in this paper are conducted using Matlab. We have used single diode solar cell model for mathematical analysis and the simulations. So we will explain how to acquire single diode solar cell model and its effective parameters. The better performance of TCT configuration among other configurations is why we have chosen this configuration to investigate under partial shading condition. The superiority of TCT configuration to other configurations like Honey-comp (HC), Bridge-linked (BL) and Series-parallel (SP) under different partial shading conditions is demonstrated and various aspects of these configurations in terms of output characteristics (maximum output power and power dissipation percentage) is displayed using Matlab simulation. All of the required inputs for simulations are extracted from standard photovoltaic cell datasheets. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文的目的是研究部分阴影条件下的全交叉(TCT)配置。全面调查需要数学分析和模拟。准确的数学分析使我们能够更好地了解部分阴影如何影响太阳能电池的输出曲线,因此我们首先对不同部分阴影条件下的TCT(2 x 2)配置进行数学分析,然后通过Matlab检查数学分析的准确性模拟。本文中的所有仿真都是使用Matlab进行的。我们将单二极管太阳能电池模型用于数学分析和仿真。因此,我们将解释如何获取单二极管太阳能电池模型及其有效参数。与其他配置相比,TCT配置具有更好的性能,这就是为什么我们选择此配置在部分阴影条件下进行研究的原因。在不同的局部阴影条件下,TCT配置优于其他配置(如Honey-comp(HC),桥联(BL)和串并联(SP))的优越性,并且这些配置的各个方面在输出特性(最大输出)方面使用Matlab仿真显示功率和功耗百分比)。模拟所需的所有输入均从标准光伏电池数据表中提取。 (C)2016 Elsevier Ltd.保留所有权利。

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