并网系统PV-Fe模糊控制结构的实现

R. Arulmurugan, T. Anushalini
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引用次数: 2

摘要

本文提出了一种以当代方式驱动杂交制度的制度模式。这种杂交系统包括光伏阵列和即将推出的质子交换膜燃料电池(PEMFC)。即使在不同的辐射和温度条件下,光伏阵列也能提供最高水平的优异连续电源。为了在可控的情况下提高系统的功率提取能力,引入了一种称为P&O规则集的智能算法,通常称为最大功率点跟踪方法。PEMFC的组合作用使杂交系统在输出功率峰值条件下处于可控状态。排他的方法,即单位功率方法和馈流方法正在渗透到杂交系统中。进而有效地确定参考参数。直流输出的转换由DC-DC降压转换器接管,并通过MATLAB / SIMULINK工具实现,从而在各种气候条件下实现精度和出色的跟踪性能。上述预测的Flexi操作模式条件可以很好地提取最大功率,通过减少模式数量提高效率,提高系统的稳定性和性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Implementation of fuzzy controlling structure of PV-Fe for a Grid connected system
This paper bestows a systematic pattern to drive the cross-breed system in a contemporary manner. This cross-breed system includes the photovoltaic array and an upcoming proton exchange membrane fuel cell(PEMFC). PV array contributes an excellent and continuous power source at the maximum levels even at the different irradiation and temperature conditions. In order to enhance the power abstraction in a controlled manner an intelligent algorithm named as P&O set of rules is introduced, which is commonly stated as maximum power point tracking approach. The combined function of PEMFC makes the crossbreed system under control at peak output power conditions. The exclusive approaches i.e unit power approach and feeder-flow approaches are being penetrated into the crossbreed system. In turn, determines the reference parameters effectively. The conversion of DC output is taken over by the DC-DC buck-boost converter and implemented through the MATLAB / SIMULINK tool to enable accuracy and excellent tracking performance at various climatic conditions. The above projected Flexi operated mode conditions go well in extracting the maximum power, greater efficiency by reducing the number of modes with improved stability and performance of the system.
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