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Robust Droop Control of AC Microgrid Against Nonlinear Characteristic of Inductor

机译:交流微电网对电感非线性特性的鲁棒下垂控制

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This paper investigates the effect of nonlinear characteristic of filter inductor on power sharing performance of droop-controlled microgrid, and presents a robust droop control strategy to implement proportional reactive power sharing with immunity to nonlinear characteristic of filter inductor. Considering current-dependent soft-saturation natures of filter inductor, time-variant average model of inductor is first established to reveal the nonlinear inductance characteristic. Then, output impedance model of inverters with consideration of nonlinear inductor is derived to analyze the effect of nonlinear inductor on reactive power sharing characteristic. Furthermore, a robust droop control strategy is proposed to mitigate the effect of nonlinear inductor on reactive power sharing and implement proportional reactive power sharing under different load profiles. Simulation and experimental results show that the proposed droop control strategy is able to perform desirable power sharing with a good capability to reject nonlinear characteristic of filter inductor.
机译:本文研究了滤波电感器的非线性特性对下垂控制的微电网的功率共享性能的影响,并提出了一种鲁棒的下垂控制策略来实现比例无功功率共享,而不受滤波电感器的非线性特性的影响。考虑到滤波电感电流相关的软饱和特性,首先建立了电感的时变平均模型以揭示非线性电感特性。然后,推导了考虑非线性电感的逆变器输出阻抗模型,以分析非线性电感对无功功率分配特性的影响。此外,提出了鲁棒的下垂控制策略,以减轻非线性电感器对无功功率共享的影响,并在不同负载曲线下实现比例无功功率共享。仿真和实验结果表明,所提出的下垂控制策略能够执行理想的功率共享,并且具有良好的抑制滤波器电感器非线性特性的能力。

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