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Primary frequency H_∞ control in stand-alone microgrids with storage units: A robustness analysis confirmed by real-time experiments

机译:具有存储单元的独立微电网中的主频率H_∞控制:通过实时实验确认的鲁棒性分析

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摘要

This paper proposes a robust H-infinity control design approach for primary frequency regulation in a diesel-photo-voltaic (PV)-storage hybrid power generation system operating in stand-alone mode. Based on real-time digital simulators, namely RT-LAB (R) and dSPACE (R), a rapid-prototyping test bench composed of a real supercapacitor-based energy storage system (ESS) and an emulated diesel-PV-load grid is developed in order to experimentally validate this frequency control strategy under realistic operating conditions. Starting from given desired dynamic specifications, a multi-variable H-infinity controller is designed via the linear matrix inequalities (LMI) method. In the second step, uncertainty in the steady-state value of the supercapacitor state of charge (SoC) is considered and a robustness analysis using mu-analysis is performed in order to determine its maximum variation range for which the imposed closed-loop performances are respected for the considered operating point. MATLAB (R)/Simulink (R) time-domain simulations and real-time experiments show the effectiveness of the proposed robust control approach. Then, a series of real-time experiments are performed to validate the controller's robustness and performance in the presence of various load disturbances and SoC uncertainty.
机译:本文提出了一种鲁棒的H无限控制设计方法,用于独立运行的柴油-光伏(PV)-存储混合发电系统中的主频率调节。基于实时数字仿真器(即RT-LAB(R)和dSPACE(R)),快速原型测试台由真正的基于超级电容器的储能系统(ESS)和仿真的柴油PV负载电网组成为了在实际操作条件下实验验证这种频率控制策略而开发。从给定的所需动态规格开始,通过线性矩阵不等式(LMI)方法设计了多变量H-∞控制器。在第二步中,考虑超级电容器充电状态(SoC)的稳态值的不确定性,并执行使用mu分析的鲁棒性分析,以确定其最大变化范围,为此施加了闭环性能尊重考虑的工作点。 MATLAB(R)/ Simulink(R)时域仿真和实时实验证明了所提出的鲁棒控制方法的有效性。然后,在存在各种负载干扰和SoC不确定性的情况下,执行一系列实时实验以验证控制器的鲁棒性和性能。

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