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首页> 外文期刊>MATEC Web of Conferences >Impact of Shunt reactor to DFIG Connected to Series-Compensated Power System on Sub-synchronous Oscillation Characteristics
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Impact of Shunt reactor to DFIG Connected to Series-Compensated Power System on Sub-synchronous Oscillation Characteristics

机译:并联电抗器对与串联补偿电力系统相连的DFIG的亚同步振荡特性的影响

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摘要

The shunt reactor will affect the sub synchronous oscillation characteristics of the wind power system, and there is no paper that analyse this aspect. To this end, in the DFIG via series compensation transmission power system, use impedance scanning method to measure the total equivalent impedance of system side and DFIG side, the mechanism of the influence of the installation position and capacity of the shunt reactor on the sub synchronous oscillation characteristic of the system is analysed. The analysis results show that the larger capacity of shunt reactor, equivalent impedance effect is larger, the installation position that is very near the fan can reduce the resonant frequency and increase the resistance of resonance point, being far from the fan will increase the resonant frequency and the absolute value of the negative resistance in the resonance points, besides, the effect of parallel capacitor on system impedance is very small. Finally, the correctness of the theoretical analysis is verified by the time-domain simulation.
机译:并联电抗器将影响风力发电系统的次同步振荡特性,因此没有论文对此进行分析。为此,在DFIG经由串联补偿输电系统中,使用阻抗扫描法测量系统侧和DFIG侧的总等效阻抗,并联电抗器的安装位置和容量对副同步器影响的机理。分析了系统的振荡特性。分析结果表明,并联电抗器容量较大,等效阻抗效应较大,离风扇很近的安装位置会降低谐振频率,增加谐振点的电阻,离风扇较远会增加谐振频率谐振点处的负电阻的绝对值,以及并联电容器对系统阻抗的影响很小。最后,通过时域仿真验证了理论分析的正确性。

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