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Comparison of time-harmonic and transient finite element calculation of a squirrel cage induction machine for electric vehicles

机译:电动汽车鼠笼式感应电机时谐和瞬态有限元计算的比较

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For predicting the performance characteristics of highly utilized induction machines, commonly finite element analysis (FEA) is applied. If only the stationary behavior is of interest, both time-harmonic and transient calculations are feasible. Both procedures offer benefits and drawbacks regarding precision and computing time. In this paper the stationary torque-slip-characteristic of a squirrel cage induction machine for electric vehicle application is calculated by means of time-harmonic and transient FEA. The simulation results are compared to measurements taken on the test bench. For low saturation levels the time-harmonic and transient simulation produce nearly equivalent stationary torque results. For high saturation levels, the commonly used approach for nonlinear time-harmonic calculation is to use a corrected magnetization curve. It is shown that the assumption of sinusoidal time variation of the magnetic field strength usually made in this case results in a torque error increasing with the saturation level for the time-harmonic calculation.
机译:为了预测高效利用的感应电机的性能特征,通常使用有限元分析(FEA)。如果仅关注平稳行为,则时谐和瞬态计算都是可行的。两种程序在精度和计算时间方面都有优缺点。本文利用时谐和瞬态有限元分析法计算了电动汽车用鼠笼式感应电机的静态转矩-滑移特性。将模拟结果与在测试台上进行的测量进行比较。对于低饱和水平,时谐和瞬态仿真产生几乎相等的固定扭矩结果。对于高饱和度,非线性时谐计算的常用方法是使用校正后的磁化曲线。结果表明,在这种情况下通常假设磁场强度呈正弦时间变化,会导致转矩误差随饱和度的增加而增加,以进行时间谐波计算。

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