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Dynamic performance evaluation of automated QFT robust controller for grid-tied fuel cell under uncertainty conditions

机译:不确定性条件下网格栓燃料电池自动QFT鲁棒控制器动态性能评价

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摘要

Power flow control and peak point tracking are significant in grid-tied renewable energy systems to improve power factor and efficient energy extraction. In this paper, the design of robust controllers for the power electronic converters of the grid-connected PEM fuel cell with thermal modeling is deliberated. Further, the transfer function model of the power electronic converters is derived by considering uncertainty in system parameters. A low complexity algorithm is used to design the converter parameters from the uncertainty range. The proposed robust automated power flow controller is designed to minimize the objective function using a genetic algorithm in the quantitative feedback theory framework. The robustness and disturbance rejection with enhanced transient response of the proposed controller is evaluated under heavy and light loading conditions, DC-link voltage and grid voltage distortion uncertainty conditions are investigated. Finally, comprehensive simulations are performed to validate the proposed controller performance with the existing controller under the above-mentioned uncertainty conditions.
机译:电流控制和峰值点跟踪在网格连接可再生能源系统中是显着的,以提高功率因数和高效的能量提取。本文审议了具有热建模的电网连接的PEM燃料电池电力电子转换器的鲁棒控制器的设计。此外,通过考虑系统参数中的不确定性来导出电力电子转换器的传递函数模型。低复杂性算法用于从不确定性范围设计转换器参数。所提出的鲁棒自动化电流控制器设计用于在定量反馈理论框架中使用遗传算法最小化目标函数。在重载条件下评估了所提出的控制器的增强瞬态响应的鲁棒性和扰动抑制,研究了直流链路电压和电网电压失真不确定条件。最后,在上述不确定性条件下,执行综合模拟以验证具有现有控制器的所提出的控制器性能。

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