Investigation of Core Loss in Electric Vehicle Induction Motor Using Finite Element Analysis for Performance Enhancement

Sachin S, K. Manickavasagam, A. T. Sriram
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Abstract

Temperature rise in a 3ϕ, Totally Enclosed Fan Cooled (TEFC)., Squirrel Cage Induction Motor (SCIM) used in Electric Vehicles (EV) is effected by core loss. The temperature rise is a function of core loss and other losses. Since, the core loss components eddy current and hysteresis losses are a function of flux and flux density, Finite Element Method (FEM) is used to obtain average maximum flux density at different loads. Core loss is varying with respect to load and hence temperature rise, resistance value, starting torque to maximum torque $(\displaystyle \frac{T_{st}}{T_{\max}})$ ratio and current drawn at $(\displaystyle \frac{T_{st}}{T_{\max}})$ also varies which is so far assumed constant in reality. The analysis is made on the effect of core loss on SCIM used in EV for performance enhancement. The results reveals that when the variable core loss is considered, temperature rise is reduced and the SCIM rating is enhanced for 20%.
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利用有限元分析研究电动汽车感应电机的铁芯损耗以提高性能
电动汽车(EV)中使用的 3 轴全封闭风扇冷却(TEFC)松鼠笼感应电机(SCIM)的温升受铁芯损耗的影响。温升是铁芯损耗和其他损耗的函数。由于铁芯损耗中的涡流和磁滞损耗是磁通和磁通密度的函数,因此采用有限元法 (FEM) 获得不同负载下的平均最大磁通密度。磁芯损耗随负载而变化,因此温升、电阻值、起始扭矩与最大扭矩 $(\displaystyle \frac{T_{st}}{T_{\max}})$ 的比率和 $(\displaystyle \frac{T_{st}}{T_{\max}})$ 时的电流也随之变化,而这些在现实中都是假定不变的。我们分析了磁芯损耗对电动汽车中用于提高性能的 SCIM 的影响。结果表明,当考虑到可变磁芯损耗时,温升降低,SCIM 额定值提高了 20%。
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