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The Effect of Excitation Capacitors on Induction Generators in Loss-of-Grid Events

机译:失电事件中励磁电容器对感应发电机的影响

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Induction generators require reactive power for voltage generation. The reactive power can be supplied from the excitation capacitor installed in the generator terminal. The reactive power also could be fed from the grid when the generator is connected to the grid. Under off-grid operations, the voltage and frequency generated by the generator are strongly influenced by the reactive power of the excitation capacitor. On the other hand, under on-grid operation, voltage and frequency are influenced by the grid. This paper describes the effect of excitation capacitors in off-grid operations, and under transition from on-grid to off-grid operation especially in the event of loss-of-grid. The study was conducted on 500 W 380 V three-phase induction generator. Machine parameters are known by laboratory measurements. Those parameters are used to simulate the operating conditions of the induction generator by using SIMULINK-Matlab. The results show that the operating point after the loss-of-grid events are strongly influenced by the excitation capacitor value and the load power factor conditions.
机译:感应发电机需要无功功率来产生电压。无功功率可以由安装在发电机端子中的励磁电容器提供。当发电机连接到电网时,无功功率也可以从电网馈送。在离网运行下,发电机产生的电压和频率会受到励磁电容器无功功率的强烈影响。另一方面,在并网操作下,电压和频率会受到电网的影响。本文描述了励磁电容器在离网运行中,以及在从并网过渡到离网运行时的影响,尤其是在电网失电的情况下。该研究是在500 W 380 V三相感应发电机上进行的。机器参数是通过实验室测量得知的。这些参数用于通过SIMULINK-Matlab模拟感应发电机的运行条件。结果表明,失电事件后的工作点受到励磁电容器值和负载功率因数条件的强烈影响。

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