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Distributed robust adaptive finite-time voltage control for microgrids with uncertainty

机译:具有不确定性的微电网的分布式鲁棒自适应有限时间电压控制

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Consensus based distributed robust adaptive finite-time secondary voltage control is designed for inverter-based islanded AC microgrids. The design combines decentralized local states information with the states of the neighboring distributed generators with directed communication topology. Robust control algorithms are used locally for each distributed generator to deal with uncertainty. Lyapunov and terminal sliding mode theory uses to guarantee that the proposed distributed control design can restore voltage to the reference value in finite-time. Analysis shows that the finite-time robust consensus can force the voltage of the distributed generators to reach the designed terminal sliding surface in finite-time and remain there. The proposed distributed secondary controller does not require a priori knowledge of the nonlinear dynamical model and uncertainty associated with microgrids.
机译:基于共识的分布式鲁棒自适应有限时间二次电压控制专为基于逆变器的岛式AC微电网而设计。该设计将分散的本地状态信息与具有定向通信拓扑的相邻分布式发电机的状态相结合。为每个分布式发电机本地使用鲁棒控制算法以处理不确定性。 Lyapunov和终端滑动模式理论用于保证所提出的分布式控制设计可以将电压恢复到有限时间的参考值。分析表明,有限时间稳健的共识可以迫使分布式发电机的电压在有限时间内达到设计的终端滑动表面并留在那里。所提出的分布式辅助控制器不需要先验知识的非线性动态模型和与微电网相关的不确定性。

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