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Inverter losses minimization using variable switching frequency based on multi-objective optimization

机译:基于多目标优化的使用可变开关频率的逆变器损耗最小化

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This article presents the result of an VSI-losses minimization technique based on multi-objective convex optimization for a salient-pole PMSM with a two-level VSI for an automotive application. The optimization, using the switching frequency as control variable, is based on a multi-objective cost function defined by the combination of VSI-losses and electromagnetic torque peak-peak ripple, analytically expressed using time-domain current predictions. The optimization target is to keep an optimum balance between VSI-losses and electromagnetic torque ripple, using variable switching frequency (VSF). The primary objective with this article is the presented design methodology. Simulations are used to verify functionality as well as influence of different scaling factors. In addition, the NEDC driving cycle is used to further quantify the results for two different cost function setups.
机译:本文介绍了一种基于多目标凸优化的VSI损耗最小化技术的结果,该技术用于汽车应用中具有两级VSI的凸极PMSM。使用开关频率作为控制变量的优化基于多目标成本函数,该函数由VSI损耗和电磁转矩峰-峰值脉动的组合定义,并使用时域电流预测进行了分析表示。优化目标是使用可变开关频率(VSF)在VSI损耗和电磁转矩纹波之间保持最佳平衡。本文的主要目标是提出的设计方法。仿真用于验证功能以及不同缩放比例的影响。此外,NEDC驾驶周期用于进一步量化两个不同成本函数设置的结果。

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