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首页> 外文期刊>International Journal of Power Electronics and Drive Systems >Field oriented control based on a 24-sector vector space decomposition for dual three-phase PMSM applied on electric ship propulsion
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Field oriented control based on a 24-sector vector space decomposition for dual three-phase PMSM applied on electric ship propulsion

机译:基于24扇区向量空间分解对电船推进的双三相PMSM的现场导向控制

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A Field Oriented Control (FOC) strategy based on a 24-Sector Vector Space Decomposition (24SVSD) technique used to control a Dual Three-Phase Permanent Magnet Synchronous Motor (DTP-PMSM) applied on electric ship propulsion prototype is presented in this paper. This machine is supplied by Dual Three-Phase Voltage Source Inverter (DTP-VSI). This study carried out on these multiphase machines has revealed that the large zero sequence harmonic current components on (zsub1/sub, zsub2/sub) subspace, constitutes major drawbacks; despite their advantages. The machine’s dynamic model is accomplished in three two-dimensional and orthogonal subspaces. In order to reduce more extra stator harmonic currents that produces losses, the current work is also concering of to consider the three different approaches for the sake of boosting the machine’s efficiency. Thus, the principle selection of the reference voltage vector and the time calculation method are presented in details. The proposed strategy effectiveness is validated by simulation results.
机译:本文提出了一种用于控制在电船推进原型上应用于电船推进原型的24扇形矢量空间分解(24SVSD)技术的基于24扇区矢量空间分解(24SVSD)技术的现场取向控制(FOC)策略。该机器由双三相电压源逆变器(DTP-VSI)提供。本研究在这些多相机器上进行的研究表明,大零序谐波电流分量(z 1 ,z 2 )子空间构成了主要缺点;尽管他们的优势。机器的动态模型是在三维二维和正交子空间中完成的。为了减少产生损失的更多额外定子谐波电流,目前的工作也是为了考虑三种不同方法,以提高机器的效率。因此,详细介绍了参考电压矢量的原理选择和参考电压矢量和时间计算方法。通过模拟结果验证了所提出的策略效果。

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