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Application of Microgrids in Supporting Distribution Grid Flexibility

机译:微电网在支持配电网灵活性中的应用

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Distributed renewable energy resources have attracted significant attention in recent years due to the falling cost of the renewable energy technology, extensive federal and state incentives, and the application in improving load-point reliability. This growing proliferation, however, is changing the traditional consumption load curves by adding considerable levels of variability and further challenging the electricity supply–demand balance. In this paper, the application of microgrids in effectively capturing the distribution network net load variability, caused primarily by the prosumers, is investigated. Microgrids provide a viable and localized solution to this challenge, while removing the need for costly investments by the electric utility on reinforcing the existing electricity infrastructure. A flexibility-oriented microgrid optimal scheduling model is proposed and developed to coordinate the microgrid net load with the aggregated consumers/prosumers net load in the distribution network with a focus on ramping issues. The proposed coordination is performed to capture both inter- and intra-hour net load variabilities. Numerical simulations on a test distribution feeder with one microgrid and several consumers and prosumers exhibit the effectiveness of the proposed model.
机译:由于可再生能源技术成本的下降,联邦和州的广泛激励措施以及在提高负荷点可靠性方面的应用,近年来分布式可再生能源资源引起了广泛的关注。然而,这种不断增长的扩散通过增加可观的可变性并进一步挑战电力供需平衡,改变了传统的消费负荷曲线。本文研究了微电网在有效捕获主要由生产者引起的配电网络净负荷变化中的应用。微电网为解决这一挑战提供了可行的本地化解决方案,同时消除了电力公司在加强现有电力基础设施方面的昂贵投资需求。提出并开发了一种面向灵活性的微电网最优调度模型,以协调微电网的净负荷与配电网中聚集的消费者/生产者的净负荷,重点是解决问题。执行建议的协调以捕获小时内和小时内的净负载变化。在一个带有一个微电网以及几个消费者和生产者的测试分配馈线上的数值模拟证明了该模型的有效性。

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