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Maximizing Power Output of a Partially Shaded Total-Cross-Tied Photovoltaic array

机译:最大化部分阴影全交带光伏阵列的功率输出

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摘要

Non-uniform conditions on the modules of the PV array, especially, partial shading reduces the output of the PV array to a large extent. The shaded module in a string limits the current of the entire string and hence, the output power of the string.  The output power under such conditions is reported to be higher for total-cross-tied (TCT) configuration. This paper describes two different approaches, one based on current compensation (current equalization) and another based on voltage equalization, to extract higher power from the partially shaded total-cross-tied photovoltaic array. The TCT configuration is considered to minimize the number of converters, sensors, cost and complexity involved. The additional converters in the two distinct approaches evaluated here operate only when the partial shading occurs and are controlled to minimize the current and voltage miss-matches. The analysis and the control algorithm are presented. Simulation results obtained in MATLAB/Simulink are included to demonstrate the effectiveness of both methods and the relative merits and demerits of these approaches are highlighted.
机译:PV阵列的模块上的非均匀条件,尤其是部分阴影在很大程度上减小了PV阵列的输出。字符串中的阴影模块限制了整个字符串的电流,从而限制了字符串的输出功率。据报道,总交叉绑定(TCT)配置,报告该条件下的输出功率更高。本文介绍了两种不同的方法,一种基于电流补偿(电流均衡)和基于电压均衡的另一个方法,以从部分阴影的总交叉栓的光伏阵列中提取更高的功率。 TCT配置被认为是最小化转换器,传感器,成本和复杂性的数量。这里评估的两个不同方法中的附加转换器仅在发生部分着色时操作并且被控制以最小化电流和电压未命中匹配。提出了分析和控制算法。包括在Matlab / Simulink中获得的仿真结果,以证明两种方法的有效性和这些方法的相对优点和缺点是突出的。

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