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Effects of wind turbine generator's drive train model on subsynchronous oscillation

机译:风力涡轮发电机驱动列车模型对越野振荡的影响

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If the structure of wind turbine generator's drive train model is too simplified, it may not reflect the subsynchronous oscillation (SSO) mode. The types and sizes of wind turbine generator (WTG) are various. Therefore, the parameters of drive train model vary widely. There is an urgent need to study the effects of drive train model's structures and parameters on SSO. In this paper, mass-spring-damping shaft models of WTG are presented. Eigenvalue analysis is used to study the effects of drive train model on SSO. The results show that, if two-mass model is adopted, only the low-frequency oscillation (LFO) exists. If three-mass model is adopted, there will be the LFO and SSO. In inertial constants, the inertia of hub (Hh) has the greatest effect on SSO. With the increasing of Hh, the frequency and damping of SSO decrease. In spring constants, the spring constant between hub and generator (Khg) has the greatest effect on SSO. With the increasing of Khg, the frequency of SSO increases, yet the damping decreases. In damping constants, the damping constant of hub (Dh) has the greatest effect on SSO. With the increasing of Dh, the damping of SSO increases. Damping constants almost have no effect on the frequency of SSO.
机译:如果风力涡轮发电机的驱动列车模型的结构过于简化,则可能不会反映子同步振荡(SSO)模式。风力涡轮发电机(WTG)的类型和尺寸是各种各样的。因此,传动系模型的参数广泛变化。迫切需要研究传动系统模型的结构和参数对SSO的影响。本文提出了WTG的质量弹簧阻尼轴模型。特征值分析用于研究传动系统模型对SSO的影响。结果表明,如果采用两质量模型,则仅存在低频振荡(LFO)。如果采用了三种质量模型,将有LFO和SSO。在惯性常数中,枢纽(HH)的惯性对SSO具有最大的影响。随着HH的越来越长,SSO的频率和阻尼减少。在春季常数中,集线器和发电机(KHG)之间的弹簧常数对SSO具有最大的影响。随着KHG的增加,SSO的频率增加,但阻尼减少了。在阻尼常数中,枢纽(DH)的阻尼常数对SSO具有最大的影响。随着DH的增加,SSO的阻尼增加。阻尼常数几乎没有对SSO的频率影响。

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