A wireless load sharing controller to improve dynamic performance of parallel-connected UPS inverters

J. Guerrero, L. de Vicuna, J. Matas, J. Miret, M. Castilla
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引用次数: 33

Abstract

In this paper, a new control scheme for parallel-connected inverters without communication wires is presented. This wireless control technique is based on the well-known droop method, which consists of introducing P-/spl omega/ and Q-V schemes into the inverters, in order to share properly the power drawn to the loads. In the literature, the droop method has been widely discussed in applications of load sharing between different parallel-connected UPS inverters. However, there are little reports about its transient performance. Some previous works present a small signal stability analysis for parallel-connected inverter system. Nevertheless, by using the conventional droop approach, there is no possibility to modify the transient response without the loss of power sharing precision or output-voltage and frequency accuracy. In this work, a great improvement in transient response is achieved by introducing power derivative-integral terms into a conventional droop scheme. Hence, better controllability of the system is obtained and, consequently, proper transient performance can be achieved. Simulation and experimental results are presented to prove the validity of this approach, which shows excellent performance in front of conventional one.
一种改善并联UPS逆变器动态性能的无线负载分担控制器
本文提出了一种新的无通信线并联逆变器控制方案。这种无线控制技术基于众所周知的下垂方法,该方法包括在逆变器中引入P-/spl ω /和Q-V方案,以便适当地共享负载所获得的功率。在文献中,下垂法在不同并联UPS逆变器之间的负载分担应用中得到了广泛的讨论。然而,关于其瞬态性能的报道很少。已有的研究对并联逆变系统进行了小信号稳定性分析。然而,通过使用传统的下垂方法,不可能在不损失功率共享精度或输出电压和频率精度的情况下修改瞬态响应。在本文中,将幂导数积分项引入到传统的下垂格式中,极大地改善了瞬态响应。因此,获得了较好的系统可控性,从而获得了适当的暂态性能。仿真和实验结果证明了该方法的有效性,该方法比传统方法具有更好的性能。
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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