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Ultimate boundedness and regions of attraction of frequency droop controlled microgrids with secondary control loops

机译:频率下垂控制微电网的终极界限和地区利用二次控制回路

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摘要

In this paper we study theoretical properties of the frequency control problem in inverter-based microgrids with primary and decentralised/distributed secondary control loops. Stability of these microgrids has been the subject of a number of recent studies. Conventional approaches based on standard hierarchical control rely on time-scale separation between primary and secondary control loops to show local stability of equilibria. In this paper we show that (i) frequency regulation can be ensured without assuming time-scale separation and, (ii) ultimate boundedness of the trajectories starting inside a region of attraction is guaranteed under a condition on the power mismatch between demand and generation at each inverter bus. An estimate of the region of attraction is obtained from which an ultimate bound set for the state trajectories can be determined by recursive iterations of a nonlinear mapping. The derived results provide a certificate of the overall stability and performance of the controlled microgrid. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本文在基于逆变器的微电网中使用初级和分散/分布式二级控制回路研究了频率控制问题的理论特性。这些微电网的稳定性是最近研究的主题。基于标准分层控制的传统方法依赖于主控制循环与次级控制环路之间的时间级分离,以显示均匀的局部稳定性。在本文中,我们示出了(i)可以确保频率调节而不假设时间尺度分离,并且(ii)在需求与生成之间的电力错配的条件下,保证了在吸引区域内的轨迹的最终界限。每个逆变器公共汽车。获得吸引区域的估计,从该估计可以通过非线性映射的递归迭代来确定用于状态轨迹的最终设置。派生结果提供了控制微普林的整体稳定性和性能证书。 (c)2017 Elsevier Ltd.保留所有权利。

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