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Optimum Droop Parameter Settings of Islanded Microgrids With Renewable Energy Resources

机译:具有可再生能源的孤岛微电网的最佳下垂参数设置

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Droop control is a key strategy for operating distributed generation (DG) islanded systems, i.e., islanded microgrids (IMGs). The droop parameter settings of the DG units can significantly impact the ability of an IMG to feed its demand. This paper proposes a new probabilistic algorithm for determining the optimum choice for such droop settings for the individual DG units in a distribution network in cases when a microgrid central controller is unavailable. The proposed algorithm adopts a constraint hierarchy approach to enhance the operation of IMGs by satisfying the operational constraints of the system and expanding its loading margin. The new algorithm takes into consideration the variety of possible IMG configurations that can be initiated in a distribution network (multi-microgrids), the uncertainty and variability associated with the output power of renewable DG units as well as the variability of the load, and the special features and operational philosophy associated with droop-controlled IMG systems. Simulation studies show that the proposed algorithm can facilitate the successful implementation of the IMG concept by reducing the customer interruptions and enhancing the IMGs’ loadability margins.
机译:下垂控制是用于操作分布式发电(DG)孤岛系统(即,孤岛微电网(IMG))的关键策略。 DG设备的下垂参数设置会严重影响IMG满足其需求的能力。本文提出了一种新的概率算法,用于在微电网中央控制器不可用的情况下为配电网中的各个DG机组确定这种下垂设置的最佳选择。所提出的算法采用约束层次方法,通过满足系统的操作约束并扩大其负载裕度来增强IMG的运行。新算法考虑了可在配电网络(多微电网)中启动的各种可能的IMG配置,与可再生DG单元的输出功率相关的不确定性和可变性以及负载的可变性以及与下垂控制的IMG系统相关的特殊功能和操作原理。仿真研究表明,所提出的算法可通过减少客户中断并提高IMG的可装载性裕度来促进IMG概念的成功实施。

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