Impact of unbalance on electrical and torsional resonances in power electronic interfaced wind energy systems

Zhixin Miao
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引用次数: 13

Abstract

Type 3 wind generators in series compensated networks could lead to subsynchronous resonances (SSR). Previous research focuses on balanced operation only. In this paper, impact of unbalance on Type 3 wind energy systems is investigated in two aspects: (i) impact on electric resonances and (ii) impact on torsional resonances. In the first aspect, impedance models of the system in DQ domain and phase domain are developed. Particularly, negative sequence impedances are examined. Nyquist stability criterion is applied to detect possible resonances. In the second aspect, transfer functions of the electromagnetic torque versus the rotating speed due to negative sequence components are developed. The impact of negative sequence components on electromechanical damping is then analyzed. The analysis results are verified by time-domain simulation results.
不平衡对电力电子接口风能系统电气和扭转共振的影响
串联补偿网络中的3型风力发电机可能会导致次同步谐振(SSR)。以往的研究只关注平衡运行。本文从两个方面研究了不平衡对3型风能系统的影响:(i)对电共振的影响和(ii)对扭转共振的影响。首先,建立了系统在DQ域和相域的阻抗模型。特别地,负序阻抗被检查。采用奈奎斯特稳定性判据检测可能的共振。在第二方面,由于负序分量,建立了电磁转矩与转速的传递函数。分析了负序分量对机电阻尼的影响。时域仿真结果验证了分析结果。
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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