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Power sharing algorithm for vector controlled six-phase AC motor with four customary three-phase voltage source inverter drive

机译:基于四相三相电压源逆变器驱动的矢量控制六相交流电动机功率分配算法

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摘要

This paper considered a six-phase (asymmetrical) induction motor, kept 30 phase displacement between two set of three-phase open-end stator windings configuration. The drive system consists of four classical three-phase voltage inverters (VSIs) and all four dc sources are deliberately kept isolated. Therefore, zero-sequence/homopolar current components cannot flow. The original and effective power sharing algorithm is proposed in this paper with three variables (degree of freedom) based on synchronous field oriented control (FOC). A standard three-level space vector pulse width modulation (SVPWM) by nearest three vectors (NTVs) approach is adopted to regulate each couple of VSIs. The proposed power sharing algorithm is verified by complete numerical simulation modeling (Matlab/ Simulink-PLECS software) of whole ac drive system by observing the dynamic behaviors in different designed condition. Set of results are provided in this paper, which confirms a good agreement with theoretical development.
机译:本文考虑了一种六相(非对称)感应电动机,在两组三相开放式定子绕组配置之间保持30相位移。该驱动系统由四个经典的三相电压逆变器(VSI)组成,所有四个直流电源都故意保持隔离状态。因此,零序/同相电流分量不能流动。本文提出了基于同步场定向控制(FOC)的具有三个变量(自由度)的原始有效功率共享算法。采用标准的三级空间矢量脉冲宽度调制(SVPWM)和最接近的三个矢量(NTV)方法来调节每对VSI。通过观察整个设计条件下的动态行为,通过整个交流传动系统的完整数值仿真模型(Matlab / Simulink-PLECS软件)对提出的功率共享算法进行了验证。本文提供了一组结果,证实了与理论发展的良好一致性。

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