Accurate design of controllers in a parallel single-phase inverter system of distributed generators sharing linear and non-linear loads

Giovanni Mazzanti, M. Karimian, E. Chiodo, Davide Lauria, A. Rabiee
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Abstract

Renewable energy sources provide power in a form not directly deliverable to the grid, thereby requiring power electronic converters. Parallel inverters are generally used to achieve high reliability and reduce inverter rating. In this paper the inherent limitations of conventional droop control method for low voltage parallel inverters with mainly resistive tie line are shown, and multi-loop control strategy is proposed. Such strategy uses proportional plus multi-resonant controllers to achieve high quality of the voltage through harmonic distortion rejection. The design procedure of this controller is investigated thoroughly and it is shown that both controller resonant gain and bandwidth affect the stability of the system. Also a new configuration for virtual resistive impedance loop is proposed to improve the accuracy of both linear and non-linear load sharing without degrading voltage quality. Simulation results with two 4-kVA inverters are provided, showing proper stability margin, having sinusoidal voltage in the presence of nonlinear load, power sharing with a good accuracy and proper dynamic. Furthermore, some highlights on system reliability, and its possible improvements by proper redundancy, are briefly illustrated at the end of the paper.
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分布式发电机并联单相逆变系统控制器的精确设计
可再生能源以一种不能直接输送到电网的形式提供电力,因此需要电力电子转换器。一般采用并联逆变器来实现高可靠性和降低逆变器额定功率。本文指出了传统的以电阻式联络线为主的低压并联逆变器下垂控制方法的固有局限性,并提出了多回路控制策略。该策略采用比例加多谐振控制器,通过抑制谐波畸变来实现高质量的电压。对该控制器的设计过程进行了深入的研究,结果表明,控制器的谐振增益和带宽对系统的稳定性都有影响。提出了一种新的虚拟电阻阻抗环结构,在不降低电压质量的前提下,提高了线性和非线性负载分担的精度。文中给出了2台4kva逆变器的仿真结果,结果表明该逆变器具有良好的稳定裕度,在存在非线性负载时具有正弦电压,功率共享精度好,动态性能好。此外,本文还简要说明了系统可靠性的一些重点问题,以及通过适当的冗余来提高系统可靠性的可能性。
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