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首页> 外文期刊>Journal of control, automation and electrical systems >Negative Imaginary Theory-Based Proportional Resonant Controller for Voltage Control of Three-Phase Islanded Microgrid
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Negative Imaginary Theory-Based Proportional Resonant Controller for Voltage Control of Three-Phase Islanded Microgrid

机译:基于负虚构理论的比例谐振控制器,用于三相孤岛微电网电压控制

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This paper demonstrates the design of robust proportional resonant (PR) controller using negative imaginary (NI) theorem for voltage control of three-phase islanded microgrid (MG) application. While operating MG as the islanded mode, different types of random and unknown load dynamics affect the MG. These loads eventually deteriorate the proper execution of MG-inducing disturbances in voltage and current. Therefore, to improve the performance of the three-phase MG, a simple, second-order controller is designed with the combination of NI theory and PR (NI–PR) controller. This controller is capable of providing higher level of damping as well as excellent stability properties. The stability and effectiveness of this controller are examined through imposing uncertainties, in terms of several load dynamics as well as different fault conditions. The comparison with respect to linear quadratic regulator and model predictive controller also ascertains the robustness of the designed controller. The NI–PR controller and the system are simulated in MATLAB/SIMULINK platform.
机译:本文展示了使用负虚拟(NI)定理的鲁棒比例谐振(PR)控制器的设计,用于三相岛状微电网(MG)应用的电压控制。在运行MG作为岛屿模式时,不同类型的随机和未知的负载动态影响MG。这些载荷最终劣化了电压和电流中的MG诱导干扰的适当执行。因此,为了提高三相MG的性能,简单的二阶控制器设计了利用NI理论和PR(NI-PR)控制器的组合。该控制器能够提供更高水平的阻尼以及优异的稳定性。通过在几种负载动态以及不同的故障条件方面,通过强加不确定性来检查该控制器的稳定性和有效性。关于线性二次调节器和模型预测控制器的比较也确定了设计控制器的鲁棒性。 NI-PR控制器和系统在Matlab / Simulink平台中进行了模拟。

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