Performance Verification of a New Integrated Droop Controller with a Novel Virtual-Impedance Based PLL for Parallel Operation of Inverters

Subhrasankha Ghosh, S. Chattopadhyay
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引用次数: 4

Abstract

This paper presents a novel droop control method for decentralized paralleling of inverters in distributed generation (DG) system. The controller satisfies two basic objectives simultaneously: It provides active power ($P$) and reactive power ($Q$) based droops on voltage and frequency references using d-axis and q-axis currents, respectively and also incorporates virtual impedance loop. A novel PLL (Phase Locked Loop) structure and an integrated droop control (IDC) strategy are devised to achieve the same. This control method enables parallel inverters to share any type of load viz. linear and nonlinear proportional to the inverter power ratings under any transmission line condition namely resistive and resistive-inductive type. Performance of the proposed control method is verified through experimental results.
基于虚拟阻抗锁相环的新型逆变器并联集成下垂控制器的性能验证
提出了一种新的分布式发电系统逆变器分散并联下垂控制方法。该控制器同时满足两个基本目标:它分别使用d轴和Q轴电流提供基于电压和频率参考的下降的有功功率(P$)和无功功率(Q$),并且还包含虚拟阻抗环路。设计了一种新颖的锁相环结构和集成下垂控制策略来实现这一目标。这种控制方法使并联逆变器能够分担任何类型的负载,即在任何传输线条件下,即电阻式和电阻式电感式,与逆变器额定功率成正比的线性和非线性负载。实验结果验证了所提控制方法的有效性。
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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