A technique for the optimal control and operation of grid-connected photovoltaic production units

A. Bonfiglio, M. Brignone, F. Delfino, M. Invernizzi, F. Pampararo, R. Procopio
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引用次数: 20

Abstract

The strong and intense increase of the number of Photovoltaic production plants has slowly changed the asset and the operation conditions of the electric system. The aim of the present work is to introduce an innovative optimized control strategy to exploit the reactive power resource generated by photovoltaic plants in order to improve the quality and efficiency of the low/medium voltage distribution network. Here, a methodology to define the optimal reactive power reference for every photovoltaic unit of the network is presented in order to pursue a well-defined goal, such as the minimization of the Joule losses or the voltage support. Such reference signals are then provided to the photovoltaic control systems that will guarantee the decoupling between the reactive power channel and the active power one, thanks to the use of the FeedBack Linearization (FBL) control technique. The problem is here formulated in a general way, therefore it can be extended to any possible grid configuration and test case scenario.
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并网光伏发电机组最优控制与运行技术
光伏生产电站数量的强劲而密集的增长,已经慢慢改变了电力系统的资产和运行状况。本文的目的是提出一种创新的优化控制策略,利用光伏电站产生的无功功率资源,以提高低压/中压配电网的质量和效率。本文提出了一种方法来定义电网中每个光伏单元的最佳无功功率参考,以追求一个明确的目标,例如最小化焦耳损耗或电压支持。然后将这些参考信号提供给光伏控制系统,通过使用反馈线性化(FBL)控制技术来保证无功功率通道与有功功率通道的解耦。这里以一种通用的方式阐述了这个问题,因此它可以扩展到任何可能的网格配置和测试用例场景。
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