Double synchronous controller for integration of large-scale renewable energy sources into a low-inertia power grid

E. Pouresmaeil, M. Mehrasa, R. Godina, I. Vechiu, R. Rodriguez, J. Catalão
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引用次数: 18

Abstract

Renewable energy sources are normally connected to the power grid via power electronic converters. High penetration of these energy sources into the power grid leads to high instability in voltage and frequency. This issue is caused by neglecting the inherent characteristics of synchronous generators i.e., inertia, damping and proper active and reactive power sharing in the structure of the used control technique in the control loop of the interfaced converter between power grid and renewable energy sources. This paper presents a power-based control technique based on a double synchronous controller (DSC) for interfaced converter between the renewable energy sources and the power grid, including an active-reactive power based dynamic equation. Through the proposed DSC, a decoupled control method is performed in which both active and reactive power can be injected from renewable energy sources into the power grid by the interfaced power converter with the inherent features of synchronous power generators. By using the proposed control technique, a stable operation of the power grid can be guaranteed during the integration of large-scale renewable energy sources. Stringent simulation results performed in MATLAB/SIMULINK environment verify the proficiency of the proposed control technique.
用于大规模可再生能源并网的双同步控制器
可再生能源通常通过电力电子转换器连接到电网。这些能源对电网的高度渗透导致了电压和频率的高度不稳定性。造成这一问题的原因是在电网与可再生能源接口变换器控制回路中所采用的控制技术结构中,忽略了同步发电机固有的惯性、阻尼和合理的有功无功分担等特性。本文提出了一种基于双同步控制器(DSC)的可再生能源与电网接口变换器功率控制技术,包括基于有功无功的动态方程。通过DSC实现了一种解耦控制方法,使可再生能源的有功功率和无功功率都可以通过接口电源变换器注入到电网中,并具有同步发电机的固有特性。采用该控制技术,可以保证大规模可再生能源并网过程中电网的稳定运行。在MATLAB/SIMULINK环境下进行的严格仿真结果验证了所提出控制技术的有效性。
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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