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首页> 外文期刊>Smart Grid, IEEE Transactions on >Distribution Feeder-Scale Fast Frequency Response via Optimal Coordination of Net-Load Resources—Part II: Large-Scale Demonstration
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Distribution Feeder-Scale Fast Frequency Response via Optimal Coordination of Net-Load Resources—Part II: Large-Scale Demonstration

机译:经由网络负荷资源的最佳协调 - 第二部分:大规模演示,分配馈线 - 尺度快速频率响应

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This article is the second of a two-part series in which we develop and experimentally demonstrate a hierarchical control solution for optimally coordinating thousands of deferrable loads and distributed energy resources (DERs) to provide fast frequency response (FFR) from an entire distribution feeder. In Part I, we developed and proved practical algorithms for fast, cost-based optimal dispatch and for determining the optimal amount of headroom to operate solar inverters with to support FFR dispatch while minimizing opportunity cost. Simulation results in Part I demonstrated the advantages of the hierarchical dispatch approach in being able to maintain fast solution times needed for FFR even when the problem size increases. In Part II, we implement the algorithms developed in Part I in a novel, large-scale power hardware-in-the-loop experiment including embedded controllers and more than 100 powered appliance loads and DER connected to a simulated real-world distribution system with more than 10,000 controlled devices. Experimental results from multiple scenarios confirm that the optimal FFR dispatch approach scales well and can optimally coordinate more than 10,000 net-load resources across a distribution network while achieving hardware response times within 500 ms, which is not possible using state-of-the-art optimal coordination approaches.
机译:本文是两部分系列中的第二个,其中我们开发和实验地演示了分层控制解决方案,以最佳地协调数千个可推翻的负载和分布式能源资源(DER),以提供来自整个分配馈线的快速频率响应(FFR)。在第一部分中,我们开发并证明了快速,成本的最佳调度的实用算法,并确定了以支持FFR调度的运行太阳能逆变器的最佳数量,同时最大限度地降低机会成本。仿真结果在第一部分中,即使在问题尺寸增加时,能够保持FFR所需的快速解决时间的分配方法的优点。在第二部分中,我们在新颖的大型电源硬件内实验中实施了在第一部分开发的算法,包括嵌入式控制器和100多个有源设备负载和连接到模拟的真实世界分配系统的DER超过10,000个受控设备。多种情况的实验结果证实,最佳FFR调度方法缩放良好,并且可以在分销网络上最佳地协调超过10,000个净负载资源,同时在500 ms内实现硬件响应时间,这是使用最先进的最佳协调方法。

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