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Effects of broken bars/end-ring connectors and airgap eccentricities on ohmic and core losses of induction motors in ASDs using a coupled finite element-state space method

机译:使用耦合有限元状态空间法测定骨箱/末端环连接器和气凝伤偏心对ASDS中感应电动机欧姆和核心损耗的影响

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In this paper, effects of rotor abnormalities such as broken squirrel-cage bars, broken cage connectors and airgap eccentricity on ohmic and core losses of induction motors are presented. In this investigation, a comprehensive time-stepping coupled finite element-state space (TSCFE-SS) model was fully utilized to compute the time-domain elemental flux density waveforms and various time-domain waveforms of motor winding currents useful for core loss and ohmic loss computations. Such investigation is feasible by use of the TSCFE-SS model due to its intrinsic nature and characteristics. The results obtained from the simulations of an example 1.2-HP induction motor clearly indicate that faults due to broken squirrel-cage bars/end-connectors can increase motor core losses in comparison to the normal case. The results also give the effect of saturation on the core loss distributions within the cross-section of the motor, and indicate the potential for possible excessive loss concentrations and consequent hot spots near zones of bar and connector breakages in the rotor. Effects of PWM inverter operation on motor losses are also studied.
机译:本文介绍了转子异常,如破裂的鼠笼式柱,破碎的笼式连接器和气隙偏心偏心,在欧姆和核心感应电动机的核心损失上。在该研究中,充分利用了全面的时刻耦合有限元状态空间(TSCFE-SS)模型来计算用于核心损耗和欧姆的电动机绕组电流的时域元素磁通密度波形和各种时域波形损耗计算。由于其内在性质和特征,这种调查是通过使用TSCFE-SS模型的可行性。从示例1.2-HP感应电动机的模拟获得的结果清楚地表明,与正常情况相比,鼠笼式柱/封端/终端连接器引起的故障可以提高电动机芯损耗。结果还提供了饱和对电动机横截面内的核心损耗分布的影响,并表明可能过度损失浓度和随后的杆和转子连接器断裂区域附近的热点。研究了PWM逆变器操作对电机损耗的影响。

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