Small Signal Stability Assessment of Inverter-Based Islanded Microgrids with Universal Droop Controller

N. K. Vemula, S. Parida
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Abstract

The microgrid is an integrated form of distributed energy resources (DERs), which are typically interfaced with load and utility grid by power electronic converters. Stability analysis plays an important role in planning the microgrid system. In this paper, the analysis of stability and power sharing is carried out for an islanded microgrid with a universal droop controller. For a small signal stability assessment, state space model is developed for the microgrid system considering the linearized model of inverters and its associated feedback controllers. The different frequency modes of the complete model are identified and an eigen value analysis is done to determine the critical values of the controller gains. The system stability is tested on a microgrid framework with three inverters functioning as DERs. The effectiveness of the model is validated and verified with time domain simulations.
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基于通用下垂控制器的逆变器孤岛微电网小信号稳定性评估
微电网是分布式能源的一种集成形式,通常通过电力电子变流器与负荷和公用电网连接。稳定性分析在微电网系统规划中起着重要的作用。本文对具有通用下垂控制器的孤岛微电网进行了稳定性和功率共享分析。针对小信号稳定性评估问题,考虑逆变器及其相关反馈控制器的线性化模型,建立了微电网系统的状态空间模型。识别了整个模型的不同频率模式,并进行了特征值分析以确定控制器增益的临界值。在采用3台逆变器作为der的微电网框架上对系统稳定性进行了测试。通过时域仿真验证了该模型的有效性。
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