并网分布式风能光伏能源管理研究进展

S. Behera, B. B. Pati
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引用次数: 1

摘要

能源管理包括能源生产及其需求的计划、运作和控制。风能的可用性是特定地点的、时间依赖的、不可调度的。随着电力使用量的增长和传统能源的消耗,主要的可再生能源,如风能和光伏(PV),在发电组合中所占的份额有所增加。通过跟踪负荷和可再生资源预测,尽可能实现资源的最佳利用,确保显著降低运行的净成本。模块化混合能源系统在负荷中心附近有一定的储能作为备用,将单向潮流转变为双向分布式发电。这种系统的性能可以通过在集中系统控制器或分布式控制中实现先进的控制方案来提高。在并网模式下,这些可以支持电网解决电能质量问题,从而优化可再生资源的使用。本章旨在介绍由于分布式发电(DG)而不断变化的需求的最新趋势,总结了过去10年所做的研究工作,并对未来趋势进行了一些展望。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Grid-Connected Distributed Wind-Photovoltaic Energy Management: A Review
Energy management comprises of the planning, operation and control of both energy production and its demand. The wind energy availability is site-specific, time-dependent and nondispatchable. As the use of electricity is growing and conventional sources are depleting, the major renewable sources, like wind and photovoltaic (PV), have increased their share in the generation mix. The best possible resource utilization, having a track of load and renewable resource forecast, assures significant reduction of the net cost of the operation. Modular hybrid energy systems with some storage as back up near load center change the scenario of unidirectional power flow to bidirectional with the distributed generation. The performance of such systems can be enhanced by the accomplishment of advanced control schemes in a centralized system controller or distributed control. In grid-connected mode, these can support the grid to tackle power quality issues, which optimize the use of the renewable resource. The chapter aims to bring recent trends with changing requirements due to distributed generation (DG), summarizing the research works done in the last 10 years with some vision of future trends.
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