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Capacitor Bank Sizing for Squirrel Cage Induction Generators Operating in Distributed Systems

机译:在分布式系统中运行的灰鼠笼式感应发电机的电容器组尺寸

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The design of the capacitor bank to be placed with the squirrel cage induction generator, when operating with a direct connection to the distribution system, is performed from the value of the magnetization reactance of the machine. Based on the experimental procedures, the necessary reactive power is simulated according to the induction generator loading. Therefore, with the increase in generated active power, a larger portion of reactive is required. The simulation indicates the values of ideal capacitors. Thus, an analysis is made of which magnetization reactance factor is ideal for the capacitor bank design designated for the generator. The characteristic curve for capacitor bank sizing is related to the load torque loading depending on the active power generated. Thus, this work contributes to the analysis of the self-excitation curve of the three-phase induction generator that operates in parallel with the steady-state power distribution network. Obtaining the active power generated as a function of the absorbed reactive power required for induction generator magnetization can be found.
机译:从机器的磁化电抗的值执行时,用直接连接的直接连接操作时,将电容器组的设计与鼠笼式感应发生器放置。基于实验程序,根据感应发电机负载模拟必要的无功功率。因此,随着产生的有功功率的增加,需要更大的反应部分。模拟表示理想电容器的值。因此,通过该分析,其中磁化电抗因子是为发电机指定的电容器组设计的理想选择。电容器组尺寸的特征曲线与负载扭矩负载相关,这取决于产生的有功功率。因此,该工作有助于分析与稳态配电网络并联操作的三相感应发生器的自激励曲线。可以找到获得作为感应发电机磁化所需的吸收无电功率的函数产生的有效功率。

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