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A decentralized self-adjusting control strategy for reactive power management in an islanded multi-bus MV microgrid

机译:孤岛多总线中压微电网无功功率管理的分散式自调整控制策略

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This paper presents a decentralized self-adjusting reactive power controller for the autonomous operation of a multi-bus medium voltage (MV) microgrid. The main objective of the proposed control strategy of each distributed generation (DG) unit is to compensate the reactive power of its local loads and to share the reactive power of the nonlocal loads among itself and other DG units. The proposed control strategy includes an improved droop controller whose parameters are adjusted according to the reactive power of the local loads. A virtual inductive impedance loop is augmented to the voltage controller to enhance the steady state and transient responses of the proposed reactive power management scheme. The small signal analysis of the proposed method is presented to ensure stability of the system for different reactive power values. The presented strategy considerably enhances the voltage profiles of the microgrid buses as compared with the conventional droop methods. The proposed method does not require any communication link and minimizes the reactive power flow in the MV lines, thus reducing the losses of the overall microgrid. The performance of the proposed control scheme is verified by using digital time-domain simulation studies in the PSCAD/EMTDC software environment.
机译:本文提出了一种用于多总线中压(MV)微电网自主运行的分散式自调节无功功率控制器。所提出的每个分布式发电(DG)单元的控制策略的主要目标是补偿其本地负载的无功功率,并在其自身和其他DG单元之间共享非本地负载的无功功率。所提出的控制策略包括一种改进的下垂控制器,其参数根据局部负载的无功功率进行调整。虚拟电感阻抗环路被添加到电压控制器,以增强所提出的无功功率管理方案的稳态和瞬态响应。提出了所提出方法的小信号分析,以确保针对不同无功功率值的系统稳定性。与传统的下垂方法相比,所提出的策略大大提高了微电网总线的电压分布。所提出的方法不需要任何通信链路,并且使MV线路中的无功功率流最小化,从而减少了整个微电网的损耗。通过在PSCAD / EMTDC软件环境中使用数字时域仿真研究,验证了所提出控制方案的性能。

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