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A receding-horizon approach for active and reactive power flows optimization in microgrids

机译:微电网中有功和无功潮流优化的后向地平线方法

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An approach based on a receding-horizon control scheme is here proposed for the optimal control of active and reactive power flows in microgrids (an aggregation of distributed energy resources (DER) of small size (such as photovoltaics, wind generation, cogeneration units — CHP, concentrated solar power — CSP, mini-hydro, energy storage)). Microgrids represent today one of the most promising technology for DERs integration, as they can alleviate management and monitoring burden for the Distribution System Operator (DSO) by clustering several DERs in a single entity which interacts with the grid as a single source. The formalized decision model is applied to an innovative test-bed facility (the University of Genova Smart Polygeneration Microgrid).
机译:此处提出了一种基于后向水平控制方案的方法,用于对微电网(小尺寸(例如光伏,风力发电,热电联产机组— CHP)的分布式能源(聚集)的有功和无功潮流进行最优控制) ,集中太阳能-CSP,小型水力发电,储能))。如今,微电网代表了DER集成的最有前途的技术之一,因为它们可以通过将多个DER聚集在一个与网格作为单个源进行交互的实体中来减轻配电系统运营商(DSO)的管理和监视负担。正式的决策模型应用于创新的测试平台设施(热那亚大学智能多代微电网)。

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