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Efficiency Optimization of Electric Drives with Full Variable Switching Frequency and Optimal Modulation Methods

机译:具有全变开关频率和最优调制方法的电动驱动效率优化

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In this paper, analysis and optimization of the efficiency of an electric drive with software control are discussed. The interaction between the electric machine and power electronics must be considered to increase the system efficiency with respect to the switching frequency or alternative modulation methods. The efficiency optimization is carried out considering various boundary conditions in the electric drive system such as voltage ripple and resonance effects in the high-voltage on-board network. The range of the electric vehicle can be extended by increasing the system efficiency. Or alternatively it is possible to save production costs per vehicle due to the lower battery capacity. At the same time, alternative modulation methods improve the continuous output power of the electric drive system. The losses in the inverter and the harmonic losses in the electric machine are calculated analytically. The analytical electric machine harmonic loss model is validated with finite element simulation for a fixed switching frequency. A system optimal switching frequency is measured and estimated for one operation point at a test bench and compared to the analytic calculated optimal switching frequency.
机译:本文讨论了具有软件控制的电动驱动效率的分析和优化。必须考虑电机和电力电子器件之间的相互作用,以提高相对于开关频率或替代调制方法的系统效率。考虑到电动驱动系统中的各种边界条件,如电压纹波和高压车载网络中的谐振效果,执行效率优化。通过提高系统效率,可以延长电动车辆的范围。或者,由于电池容量较低,可以每辆车节省生产成本。同时,替代调制方法改善了电驱动系统的连续输出功率。在分析上计算逆变器中的损耗和电机的谐波损失。分析电机谐波损耗模型验证了固定开关频率的有限元模拟。测量系统最佳开关频率并估计测试台的一个操作点,并与分析计算的最佳开关频率相比。

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