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A voltage unbalance factor coding technique for three-phase induction motors

机译:三相感应电动机的电压不平衡因数编码技术

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This work investigates the effect of voltage unbalance on the starting and steady-state performances of squirrel cage induction motors. Emphasis is placed on the rotor flux and slip. Both copper losses accumulated during the run up and at steady state are investigated. Five motor ratings of up to 4000kVA operating at partial and at full load are studied. Because the same voltage unbalance factor may result in different behaviors, a voltage code is proposed to simplify referring to the individual per unit phase magnitudes. Full load operation at a voltage unbalance factor higher than 3.5% showed an increase of copper losses of more than 50%. Voltage unbalance cases that fail to pull up the motor to at least 50% of the rated speed show rotor fluxes too low to generate the required torque.
机译:这项工作研究了电压不平衡对鼠笼式感应电动机的启动和稳态性能的影响。重点放在转子磁通和打滑上。研究了在启动过程中和稳态时积累的铜损耗。研究了在部分负载和满载条件下运行的最高额定功率为4000kVA的五个电动机。由于相同的电压不平衡因数可能导致不同的行为,因此提出了一种电压代码来简化对每个单位相位幅值的引用。电压不平衡系数高于3.5%的满载运行表明铜损增加超过50%。电压不平衡情况无法将电动机提升至额定速度的至少50%,表明转子磁通过低而无法生成所需的转矩。

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