Hierarchical Frequency Control in Multi-Area Power Systems with Prioritized Utilization of Inverter Based Resources

Rahul Chakraborty, A. Chakrabortty, E. Farantatos, Mahendra Patel, H. Hooshyar
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引用次数: 1

Abstract

We propose a new hierarchical frequency control design for multi-area power system models integrated with renewable energy resources. Primary control is proposed based on fast re-dispatch of available headroom in the renewable capacity following a contingency. Secondary control is applied using a new optimization-based approach named Area Prioritized Power Flow (APPF). The APPF methodology prioritizes and maximizes the utilization of area-specific Inverter Based Resources (IBRs). Results are validated using simulations of a 9-machine, 6-IBR, 33-bus, 3-area power system model to show that APPF ensures better steady-state performance, while the hierarchical actuation of IBR setpoints improves the dynamic frequency response performance. The overall scheme mitigates a disturbance faster and more efficiently by prioritizing the use of local area-resources.
基于逆变器资源优先利用的多区域电力系统分层频率控制
针对可再生能源集成的多区域电力系统模型,提出了一种新的分层频率控制设计。提出了一种基于突发事件后可再生容量可用净空量快速再调度的主控制方法。二次控制采用了一种新的基于优化的方法,称为区域优先潮流(APPF)。APPF方法优先考虑并最大限度地利用特定区域的基于逆变器的资源(ibr)。通过对9机、6 IBR、33总线、3区域电力系统模型的仿真验证,结果表明,APPF能保证较好的稳态性能,而IBR设定值的分层驱动提高了动态频响性能。整体方案通过优先利用当地资源,更快、更有效地减轻干扰。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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