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Improving Transient Stability of Grid-Connected Squirrel-Cage Induction Generators by Plugging Mode Operation

机译:通过插入模式操作提高并网鼠笼式感应发电机的暂态稳定性

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摘要

The majority of the fixed-speed wind turbines are equipped with squirrel-cage induction generators (IG) and ac-connected to the power system. During a fault in power system, voltage and rotor speed instability may occur, especially when the strength of the system compared to the power delivered by the IG is relatively low. This paper investigates a new method for improving the transient stability of power systems equipped with squirrel cage IGs. For stability improvement, the unique property of the induction machines which is the possibility of reversing the direction of the rotating flux is employed. In this method, after clearing the fault, operating mode of the induction machine is changed from the generating to the plugging mode for a short time. This leads to opposition between the rotating flux and mechanical torques, thus preventing the generator from further acceleration. Simulation results show that the proposed method can be effective in enhancing the transient stability. Since in this method, there is no need for accessory equipment, the proposed method is more attractive than the previous ones, from economic point of view.
机译:大多数定速风力涡轮机都配备有鼠笼式感应发电机(IG),并交流连接到电力系统。在电力系统出现故障期间,可能会出现电压和转子速度不稳定的情况,尤其是当系统的强度与IG输送的电力相比时,其强度相对较低。本文研究了一种新的方法来提高装有鼠笼IG的电力系统的暂态稳定性。为了提高稳定性,采用了感应电机的独特性能,即可以反转旋转磁通量的方向。在这种方法中,清除故障后,感应电机的运行模式会在短时间内从发电模式更改为插入模式。这导致旋转磁通和机械转矩之间的对立,从而阻止了发电机进一步加速。仿真结果表明,该方法可以有效地提高暂态稳定性。由于在该方法中不需要辅助设备,所以从经济角度来看,所提出的方法比以前的方法更具吸引力。

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