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Primary and secondary frequency control in an autonomous microgrid supported by a load-shedding strategy

机译:负载减轻策略支持的自治微电网中的主次频率控制

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This paper proposes a frequency control strategy for an islanded inverter-based microgrid which based on the priority of supply, has got two distinct types of loads, namely sensitive and deferrable. The proposed strategy consists of primary and secondary levels of generation control supported by a load-shedding scheme. The primary control regulates the output power of the distributed generator (DG) units to be proportional to their ratings while secondary control has got the duty of frequency restoration after each load change. Functionality of these two levels is demonstrated to be independent of each other. Both controls are in distributed forms which have no need of communication infrastructure. Moreover, the proposed load-shedding strategy is activated occasionally to restore frequency despite the limitation of secondary control since the sensitive loads always demand high power quality. The performance of the proposed control scheme is verified by using digital time-domain simulation studies in the MATLAB/SIMULINK software environment.
机译:本文提出了一种基于孤岛逆变器的微电网频率控制策略,该策略基于供电的优先级,得到了两种不同类型的负载,即敏感负载和可延迟负载。所提出的策略由负荷削减方案支持的发电控制的主要和次要级别组成。主控制将分布式发电机(DG)单元的输出功率调节为与它们的额定值成比例,而辅控制则负责在每次负载变化后恢复频率。这两个级别的功能被证明是相互独立的。两种控件均为分布式形式,不需要通信基础结构。此外,尽管次要控制受到限制,但有时会激活所提出的负载减少策略以恢复频率,因为敏感负载始终要求高电能质量。通过在MATLAB / SIMULINK软件环境中进行数字时域仿真研究,验证了所提出控制方案的性能。

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