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A vector controlled current-source PWM rectifier with a novel current damping method

机译:具有新型电流阻尼方法的矢量控制电流源PWM整流器

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摘要

Three-phase current-type pulse width modulation (PWM) rectifiers are becoming increasingly popular as the front-end converter unit in power electronic systems due to tighter electromagnetic compatibility (EMC) regulations. In this paper the control of the current source PWM rectifier in the synchronously rotating reference frame is discussed. A control system is presented in which the active and reactive power are independently controlled with real and imaginary axis components of the supply current vector. A new damping method for supply current oscillations is introduced. The method operates in an open-loop manner and is very suitable for microcontroller implementation since the calculation power demand is low. Furthermore, it is shown that in the synchronously rotating coordinates, where the sinusoidal variables appear as DC quantities, the compensation of the reactive power drawn by the supply filter can be done very easily. The proposed control methods are realized using a single-chip Motorola MC68HC916Y1 microcontroller. The experimental tests show excellent performance in both steady state and transient conditions.
机译:三相电流型脉宽调制(PWM)整流器由于更严格的电磁兼容性(EMC)法规而成为电力电子系统中的前端转换器单元,正变得越来越流行。本文讨论了同步旋转参考系中电流源PWM整流器的控制。提出了一种控制系统,其中有功功率和无功功率由电源电流矢量的实轴和虚轴分量独立控制。介绍了一种用于电源电流振荡的新阻尼方法。该方法以开环方式操作,并且由于计算功率需求低,因此非常适合微控制器实现。此外,还表明,在同步旋转的坐标系中,正弦变量以直流量出现,可以很容易地完成对电源滤波器汲取的无功功率的补偿。所提出的控制方法是使用摩托罗拉单芯片MC68HC916Y1微控制器实现的。实验测试表明,在稳态和瞬态条件下均具有出色的性能。

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