Power Quality and Stability in a Cluster of Microgrids with Coordinated Power and Energy Management

Prithwiraj Roy Chowdhury, P. Sahu, S. Essakiappan, M. Manjrekar, K. Schneider, Stuart Laval
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引用次数: 4

Abstract

Distributed Energy Resources (DER) such as photovoltaic (PV) systems and battery energy storage systems (BESS) can be operated collectively as microgrids. Microgrids can be effective in meeting local load requirements as well as in improving the power quality and stability in a modern power distribution system. Multiple microgrids can also be operated in a coordinated manner as a cluster, to improve the resiliency of the power distribution system. In the event of an outage caused by a transmission system failure, the microgrids in a cluster can use their distributed generation capacity and energy storage resources to recover and extend power availability to the critical loads in the system. In this paper, an illustrative cluster of two microgrids based on the IEEE 13-bus model with DERs has been used, to demonstrate the operation of the concept using real-time simulations. Using real-time simulations, capabilities such as switching reconfiguration following faults, identification of optimal DER placement for effective power quality management, and power electronic controller validation have been demonstrated. For the two-microgrid cluster, this paper also presents improvements in load voltage quality and extension of service availability by shedding non-critical loads.
电力与能源协调管理下的微电网群电能质量与稳定性
分布式能源(DER),如光伏(PV)系统和电池储能系统(BESS)可以作为微电网共同运行。在现代配电系统中,微电网可以有效地满足本地负荷需求,并改善电能质量和稳定性。多个微电网也可以作为一个集群以协调的方式运行,以提高配电系统的弹性。在输电系统故障导致的停电情况下,集群中的微电网可以利用其分布式发电能力和储能资源来恢复和扩展系统中关键负载的电力可用性。本文以基于IEEE 13总线模型的两个微电网为例,通过实时仿真演示了该概念的运行情况。通过实时仿真,验证了故障后的开关重新配置、有效电能质量管理的最佳DER位置识别以及电力电子控制器验证等功能。对于双微电网集群,本文还提出了通过减少非关键负载来改善负载电压质量和延长服务可用性的方法。
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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