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Smooth and Fast Mode Transition of Synchronous Optimal Modulation for Two-Level Inverter Fed High-Speed PMSM Drives

机译:双层逆变器同步最佳调制的平滑和快速模式过渡,请馈线高速PMSM驱动器

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Synchronous optimal modulation (SOM) can minimize current distortions for high-speed permanent magnet synchronous machine (PMSM) drives when the ratio of switching frequency to fundamental frequency (SFR), also known as pulse number is limited. However, the mode transition associated with changes in pulse number or pulse pattern can cause large transient overshoots of current. To solve this problem, this paper presents a novel smooth and fast transition scheme. The proposed method is based on the analysis of optimal switching vector patterns (OSVPs) and optimal flux trajectories (OFTs) of SOM and the two general properties identified in the analysis. It can start the mode transition at any position of a voltage space vector and complete the transition within 1/6 fundamental cycle. The smooth and fast mode transition can be achieved between any two SOM modes i.e. different pulse numbers and continuous sets of optimal switching angle. Moreover, the proposed transition is very simple and almost add no cost to the drive system. Extensive simulation and experiments on a high-speed prototype machine have been performed and the proposed method validated.
机译:同步最佳调制(SOM)可以最小化当时的开关频率与基频(SFR)的比率时最小化高速永磁同步机(PMSM)驱动器的电流失真,也称为脉冲数为有限。但是,与脉冲数或脉冲模式的变化相关联的模式转换会导致电流的大瞬态过冲。为了解决这个问题,本文提出了一种新颖的平滑和快速过渡方案。所提出的方法基于对SOM的最佳切换矢量模式(OSVPS)和最佳通量轨迹(OFTTS)的分析以及分析中识别的两个通用性质。它可以在电压空间矢量的任何位置开始模式过渡,并在1/6基础周期内完成过渡。可以在任何两个SOM模式之间实现平滑和快速模式转换,即不同的脉冲数和连续的最佳切换角度。此外,所提出的过渡非常简单,几乎没有到驱动系统的成本。已经进行了广泛的仿真和实验,并进行了高速原型机的实验,并验证了所提出的方法。

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