Mixing local and distributed reactive power control for balancing inverters' effort in grid-connected photovoltaic systems

M. Velasco, P. Martí, Antonio Camacho, J. Miret, M. Castilla
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Abstract

Reactive power control methods have been proven to be a successful technique for maintaining voltages of photovoltaic (PV) distributed generators (DG) within the admissible limits without enforcing to reduce the production of active power. Usually the control goal is achieved at the expenses of stressing PV inverters unequally. As a consequence, inverters deteriorate at different velocities. This paper presents a mixed local and distributed control strategy that aims at balancing the effort posed by each inverter while achieving the control goal. The local control is a drop-like method that locates inverters' voltages within the permissible voltage levels. Simultaneously, the distributed control, making use of a communication infrastructure, is in charge of driving the DG system to the point where all connected inverters inject the same current, thus balancing the stress between them.
并网光伏系统逆变器出力平衡的局部与分布式混合无功控制
无功功率控制方法已被证明是一种成功的技术,可以在不强制减少有功功率的情况下将光伏(PV)分布式发电机(DG)的电压保持在允许的范围内。通常,控制目标的实现是以对光伏逆变器施加不均匀应力为代价的。因此,逆变器在不同的速度下劣化。本文提出了一种局部和分布式混合控制策略,旨在平衡各逆变器在实现控制目标时所付出的努力。局部控制是一种类似水滴的方法,它将逆变器的电压定位在允许的电压水平内。同时,分布式控制利用通信基础设施,负责驱动DG系统,使所有连接的逆变器注入相同的电流,从而平衡它们之间的应力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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