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Decentralized control strategy to improve dynamic performance of micro-grid and reduce regional interactions using BESS in the presence of renewable energy resources

机译:分散的控制策略,提高微电网动态性能,并在可再生能源存在下使用BESS减少区域交互

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Battery energy storage systems (BESSs) have been recently used in power network specially micro-grids (MGs). These devices increase the self-sufficiency and improve the frequency oscillations caused by the intermittent nature of distributed generations (DGs) or load uncertainty. In this paper, to improve the dynamic performance of MG, a multi-term feedback signal has been proposed. The first term is relating to a constant power which can be injected or absorbed by the battery to supply the load and overcome the lack of power due to the intermittency of renewable energy resources. The second term is based on frequency deviation which regulates the MG frequency dynamically and compensates the low inertia of inverter based resources. In addition, the power variation of tie-line has been also considered to reduce the interaction between two parts of the MG. 3-bus and 13-bus test power systems have been studied to show the effectiveness of the proposed methods in reducing the overshoot as well as damping time of frequency under several events. To evaluate the stability of the system, the eigenvalue analysis based on small signal model has been investigated and finally, the simulation results verified the effectiveness of the proposed controller to enhance the dynamic performance of the MG.
机译:最近在电网专用微网格(MGS)中使用了电池储能系统(BESSS)。这些器件增加了自给自足,提高了分布代(DGS)的间歇性或负载不确定性引起的频率振荡。在本文中,为了提高MG的动态性能,已经提出了多术反馈信号。第一术语与电池可以注入或吸收的恒定功率有关,以供应负载并导致由于可再生能源资源间歇性而克服缺乏功率。第二项基于频率偏差,动态调节MG频率,并补偿基于逆变器的低惯性。此外,还考虑了连接线的功率变化以减少MG的两部分之间的相互作用。已经研究了3辆公共汽车和13公交车测试电力系统,以显示提出的方法在减少过冲以及在几个事件下的频率下的阻尼时间的有效性。为了评估系统的稳定性,研究了基于小信号模型的特征值分析,最后,仿真结果验证了所提出的控制器提高MG动态性能的有效性。

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