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Survivability of Synchronous Generator-Based Distributed Energy Resources for Transient Overload Conditions in a Microgrid

机译:微电网中瞬时过载情况下基于同步发电机的分布式能源的生存能力

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A synchronous generator-based distributed energy resource (DER) is commonly employed in microgrids due to its low cost and simple controls. However, there are many challenges to the DER operation when it is sized for supplying the critical loads alone in a microgrid. In particular, the DER would experience an overload condition during the microgrid transition from grid-connection to islanded operation, when the noncritical loads are also supplied momentarily. Therefore, it is very important to have a clear understanding on the survivability of a synchronous generator-based DER for transient overload conditions. Recently, experimental tests on survivability of the DER were carried out in the Consortium for Electric Reliability Technology Solutions Microgrid Testbed at American Electric Power. In this paper, an in-depth analysis of the synchronous generator-based DER operation during transient overload conditions is presented. The key relationships governing the system dynamic behavior of synchronous generator-based DER are analyzed to design the load shedding scheme for its survivability. Several case studies are illustrated to demonstrate the validity of the proposed load shedding method.
机译:基于同步发电机的分布式能源(DER)由于其低成本和简单控制而通常用于微电网。但是,当DER操作的大小确定为仅在微电网中单独提供关键负载时,将面临许多挑战。特别是,当非关键负载也被瞬间提供时,DER将在微电网从电网连接过渡到孤岛运行期间经历过载状态。因此,对瞬态过载情况下基于同步发电机的DER的生存能力有清晰的了解非常重要。最近,在美国电力公司的电气可靠性技术解决方案微电网测试平台联盟中,对DER的生存能力进行了实验测试。本文对瞬态过载条件下基于同步发电机的DER操作进行了深入分析。分析了控制基于同步发电机的DER系统动态行为的关键关系,以设计减负荷方案以提高其生存能力。说明了几个案例研究,以证明所提出的减载方法的有效性。

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