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Energy storage sizing for effective primary and secondary control of low-inertia microgrids

机译:有效地控制低惯性微电网的储能尺寸

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Microgrids are poised to become a major worldwide development in light of the numerous benefits they offer. However, the control and management of such systems require keen attention, as stability issues in microgrids have proven to be an important topic of research. It is a point of emphasis, that microgrids operating as stand-alone systems are particularly unforgiving in the sense that the combined inertia of local synchronous generators may not be significant enough to ensure good stability margins. Therefore, energy storage may be prescribed as a mitigation option for achieving frequency and voltage stability in low-inertia systems. This paper considers the electrical frequency dynamics of low-inertia microgrids as well as the voltage regulation implications of associated power electronic interfaces. A design criterion for sizing energy storage systems (ESS) is provided to ensure that frequency and voltage stability margins are not violated in face of an electrical disturbance.
机译:考虑到微电网所提供的众多优势,它有望成为世界范围内的主要发展。然而,由于已经证明微电网中的稳定性问题是研究的重要课题,因此此类系统的控制和管理需要引起高度重视。需要强调的是,从本地同步发电机的组合惯量可能不足以确保良好的稳定性裕度的意义上说,作为独立系统运行的微电网尤其宽容。因此,可以将能量存储指定为缓解选项,以实现低惯性系统中的频率和电压稳定性。本文考虑了低惯量微电网的电气频率动态以及相关电力电子接口的电压调节含义。提供用于确定储能系统(ESS)大小的设计标准,以确保在遇到电干扰时不会违反频率和电压稳定裕度。

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