首页> 外文会议>2010 23rd Canadian Conference on Electrical and Computer Engineering >A Permanent Magnet Synchronous Motor drive employing a three-level Very Spars Matrix Converter with soft switching and SVM hysteresis current control
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A Permanent Magnet Synchronous Motor drive employing a three-level Very Spars Matrix Converter with soft switching and SVM hysteresis current control

机译:永磁同步电动机驱动器,采用带软开关和SVM滞环电流控制的三级甚稀疏矩阵转换器

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Proposed in this paper is a three-phase three-level Very Sparse Matrix Converter (VSMC) fed Permanent Magnet Synchronous Motor (PMSM). Such a system may be designed to draw and sinusoidal input current, have high efficiency and is free of a DC-link energy storage element (inductor and/or capacitor). As discussed in this paper, the three-level inverter output stage produces reduced distortion waveforms with low switch voltage stress. Controlling the PMSM by hysteresis current control (HCC) based vector control is an efficient method especially when the flux has a sinusoidal distribution. However, a hard switching problem may arise. In this paper, a new soft switching HCC technique based on space vector modulation (SVM) combined with field oriented control (FOC) is proposed. This technique uses the zero voltage vector (ZVV) to generate the matrix converter switching signals. The proposed technique employs three modes of compensation based directly on the motor current error making the technique reliable in operation. Simulation results of three-phase three-level VSMC drives are obtained to verify this proposed switching technique.
机译:本文提出的是三相三级非常稀疏的矩阵转换器(VSMC)馈电永磁同步电动机(PMSM)。这种系统可以设计成绘制和正弦输入电流,具有高效率并且不含DC连杆能量存储元件(电感器和/或电容器)。如本文中所讨论的,三级逆变器输出级产生具有低开关电压应力的减小的失真波形。通过滞后电流控制(HCC)控制PMSM的载体控制是一种有效的方法,尤其是当助焊剂具有正弦分布时。然而,可能出现硬切换问题。本文提出了一种基于空间向量调制(SVM)的新型软交换HCC技术与场取向控制(FOC)组合。该技术使用零电压矢量(ZVV)来生成矩阵转换器开关信号。该技术采用三种基于电机电流误差的补偿模式,使得该技术在操作中可靠。获得三相三级VSMC驱动器的仿真结果,以验证这一提出的切换技术。

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