Stability Analysis and Impedance Reshaping Control of Medium-Frequency Oscillation in a PMSG-based Wind Farm Connected to a VSC-HVDC

Kun Sun, Dahu Li, W. Yao, Yi Zhou, J. Wen
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Abstract

It is well known that the permanent magnet synchronous generator (PMSG)-based wind farm may face the sub-synchronous oscillation (SSO) or high frequency oscillation (HFO) issue. However, the medium frequency oscillation (MFO) may also exist in a PMSG-based wind farm when integrated with a voltage source converter based HVDC (VSC-HVDC). In this work, to investigate the mechanism and characteristics of MFO, the impedance model of the interconnected system is derived. Furthermore, the influence of the control parameters of both PMSG and VSC-HVDC on MFO is analysed with an accurate criterion based on the single input single output (SISO) equivalent sequence impedance. And the theoretical analysis is verified by simulation. Finally, an impedance reshaping control for MFO is proposed. The results show that MFO can be suppressed with the appropriate virtual impedance installed in the wind farm VSC (WFVSC) station, which is meaningful for the actual project.
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与直流-直流并联的pmsg风电场中频振荡稳定性分析及阻抗重塑控制
基于永磁同步发电机(PMSG)的风电场可能面临次同步振荡(SSO)或高频振荡(HFO)问题。然而,当与基于电压源变换器的高压直流输电(vdc -HVDC)集成时,基于pmsg的风电场也可能存在中频振荡(MFO)。为了研究MFO的机理和特性,推导了互联系统的阻抗模型。在此基础上,采用基于单输入单输出(SISO)等效序列阻抗的精确判据,分析了PMSG和VSC-HVDC控制参数对MFO的影响。通过仿真验证了理论分析的正确性。最后,提出了一种阻抗整形控制方法。结果表明,在风电场VSC (WFVSC)站设置适当的虚拟阻抗可以抑制MFO,这对实际工程具有一定的指导意义。
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