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An Adaptive Feedforward Compensation for Stability Enhancement in Droop-Controlled Inverter-Based Microgrids

机译:基于压降控制的逆变器微电网稳定性增强的自适应前馈补偿

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This paper proposes an adaptive feedforward compensation that alters the dynamic coupling between a distributed-resource unit and the host microgrid, so that the robustness of the system stability to droop coefficients and network dynamic uncertainties is enhanced. The proposed feedforward strategy preserves the steady-state effect that the conventional droop mechanism exhibits and, therefore, does not compromise the steady-state power sharing regime of the microgrid or the voltage/frequency regulation. The feedforward compensation is adaptive as it is modified periodically according to the system steady-state operating point which, in turn, is estimated through an online recursive least-square estimation technique. This paper presents a discrete-time mathematical model and analytical framework for the proposed feedforward compensation. The effectiveness of the proposed control is demonstrated through time-domain simulation studies, in the PSCAD/EMTDC software environment, conducted on a detailed switched model of a sample two-unit microgrid.
机译:本文提出了一种自适应前馈补偿,它可以改变分布式资源单元与主机微电网之间的动态耦合,从而提高了系统稳定性对下垂系数和网络动态不确定性的鲁棒性。所提出的前馈策略保留了常规下垂机制所表现出的稳态效应,因此不会损害微电网的稳态功率共享机制或电压/频率调节。前馈补偿是自适应的,因为它会根据系统稳态工作点进行定期修改,然后再通过在线递归最小二乘估计技术对其进行估计。本文为提出的前馈补偿提供了离散时间数学模型和分析框架。通过在PSCAD / EMTDC软件环境中对样本两单元微电网的详细转换模型进行的时域仿真研究,证明了所提出控制的有效性。

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