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A Practical Controller Design of Distributed Energy Resources for Stabilization of Interconnected Power System based on Synchronized Phasor Measurements

机译:基于同步相位测量的互联电力系统稳定的分布式能源的实用控制器设计

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摘要

With today's advanced technologies, various types of distributed energy resources (DERs) with relatively fast controllability option have been brought into practical applications. This paper presents a metaheuristic-based controller design of controllable DER for stability enhancement based on synchronized phasor measurements. With the most recent data, a simplified oscillation model (SOM) is evaluated and referred to as an estimated power system model for detection and assessment of an estimated inter-area oscillation mode. Subsequently, an extended SOM is formulated by including dynamic effects of DER control system. The designed controller can be achieved via a metaheuristic method with less effort towards the design specification. Moreover, performance of the designed controller can be evaluated during design to avoid its adverse effects. Some simulation results demonstrate and confirm the applicability and effectiveness of the proposed controller design method.
机译:利用当今的先进技术,已经进入了具有相对快速的可控性的分布式能源资源(DERs)进行了实际应用。本文介绍了基于同步相位测量的稳定增强的基于成式的基于稳定性增强的控制器设计。利用最近的数据,评估简化的振荡模型(SOM),并称为估计的电力系统模型,用于检测和评估估计的区域间振荡模式。随后,通过包括DER控制系统的动态效果来配制扩展SOM。设计的控制器可以通过较少努力实现设计规范的常量方法来实现。此外,可以在设计期间进行设计的控制器的性能,以避免其不利影响。一些仿真结果证明了所提出的控制器设计方法的适用性和有效性。

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