Distributed generation management: An optimal sensitivity approach for decentralized power control

V. Calderaro, V. Galdi, G. Massa, A. Piccolo
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引用次数: 19

Abstract

The high penetration level of Distributed Generation (DG) power plants into Distribution Networks (DN) has highlighted the necessity to develop proper control techniques to supply customers with voltage levels contained within regulatory limits and to offer ancillary services to the DN. Compared with traditional centralized control techniques, decentralized ones act locally requiring less investments in terms of communication systems or remote sensing. This paper deals with optimization issues for local reactive power control of voltage profiles in Medium Voltage (MV) radial distribution systems. The proposed optimized controller is based on a sensitivity analysis approach aimed at minimizing reactive power injection into the DN and active power losses while avoiding DG units disconnection as much as possible. Validation of the proposed controller has been conducted on a real MV Italian distribution system.
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分布式发电管理:分散式电力控制的最优灵敏度方法
分布式发电(DG)发电厂在配电网(DN)中的高渗透水平突出了开发适当的控制技术以向客户提供符合监管限制的电压水平并向DN提供辅助服务的必要性。与传统的集中式控制技术相比,分散式控制技术在当地发挥作用,在通信系统或遥感方面需要较少的投资。本文研究了中压径向配电系统电压剖面局部无功控制的优化问题。所提出的优化控制器基于灵敏度分析方法,旨在最大限度地减少DN的无功功率注入和有功功率损耗,同时尽可能避免DG机组断开。在一个实际的中压意大利配电系统上对所提出的控制器进行了验证。
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