Stability Analysis of the Sinusoidal Orbits of a Nonlinear Proportional and Resonant Current Regulator for Islanded Microgrids

H. Nurdin
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引用次数: 1

Abstract

Conventional control of islanded microgrids employ power electronic inverters as voltage controllers. However, inverters can also be operated in current control mode with a number of desirable features. One proposed scheme is to use a proportional and resonant controller to regulate the inverter output current and use the phase estimate from a PLL as a nonlinear feedback signal. It was recently shown that for linear time-invariant loads this current control scheme has a family of sinusoidal orbits in its state space, producing a sinusoidal output at the inverter. However, it remained an open question as to whether this family of sinusoidal orbits is stable in the sense that it attracts nearby trajectories in the system’s state-space. In this work we establish stability theorems for the sinusoidal orbits, providing explicit conditions for their stability.
孤岛微电网非线性比例谐振电流调节器正弦轨道稳定性分析
孤岛微电网的传统控制采用电力电子逆变器作为电压控制器。然而,逆变器也可以在具有许多理想特征的电流控制模式下运行。一种方案是使用比例谐振控制器来调节逆变器输出电流,并使用锁相环的相位估计作为非线性反馈信号。最近的研究表明,对于线性时不变负载,该电流控制方案在其状态空间中具有一系列正弦轨道,在逆变器处产生正弦输出。然而,它仍然是一个悬而未决的问题,是否这个家族的正弦轨道是稳定的意义上说,它吸引附近的轨迹在系统的状态空间。在这项工作中,我们建立了正弦轨道的稳定性定理,为其稳定性提供了明确的条件。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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