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Negative sequence compensation techniques of DFIG-based wind energy systems under unbalanced grid conditions

机译:非平衡网格条件下基于DFIG的风能系统的负序补偿技术

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This paper presents analysis and control techniques for a doubly-fed induction generator (DFIG) used in wind energy systems under unbalanced grid conditions. The rotor currents and electromagnetic torque of the DFIG under unbalanced conditions are first analyzed. Negative sequence circuit models are investigated. Control strategies implementing negative sequence compensation from either the grid-side converter (GSC) or the rotor-side converter (RSC) are developed. The control objective of the GSC compensation is to provide the negative sequence currents for the grid to keep the stator currents free of negative sequence component. The control objective of the RSC compensation is to eliminate the rotor current harmonics. The main contribution of the paper is i) the analysis of the root cause of the high frequency harmonics in rotor currents and the electromagnetic torque and, ii) the comparison of the two control techniques frequently used in research. Matlab/Simulink tests for a 2 MW DFIG are performed to confirm the analysis.
机译:本文介绍了在不平衡网格条件下的风能系统中使用的双馈感应发电机(DFIG)的分析和控制技术。首先分析了在不平衡条件下DFIG的转子电流和电磁扭矩。研究了负序电路模型。开发了实现来自电网侧转换器(GSC)或转子侧转换器(RSC)的负序补偿的控制策略。 GSC补偿的控制目的是为网格提供负序电流,以保持定子电流不含负序列组分。 RSC补偿的控制目的是消除转子电流谐波。本文的主要贡献是i)分析转子电流中高频谐波的根本原因和电磁扭矩,ii)在研究中经常使用的两种控制技术的比较。执行2 MW DFIG的MATLAB / SIMULINK测试以确认分析。

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