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Recent developments of modulation and control for high-power current-source-converters fed electric machine systems

机译:高功率电流 - 源 - 转换器对电机系统的调制与控制的最新进展

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The pulse-width-modulated (PWM) current-source converters (CSCs) fed electric machine systems can be considered as a type of high reliability energy conversion systems, since they work with the long-life DC-link inductor and offer high fault-tolerant capability for short-circuit faults. Besides, they provide motor friendly waveforms and four-quadrant operation ability. Therefore, they are suitable for high-power applications of fans, pumps, compressors and wind power generation. The purpose of this paper is to comprehensively review recent developments of key technologies on modulation and control of high-power (HP) PWM-CSC fed electric machines systems, including reduction of low-order current harmonics, suppression of inductor-capacitor (LC) resonance, mitigation of common-mode voltage (CMV) and control of modular PWM-CSC fed systems. In particular, recent work on the overlapping effects during commutation, LC resonance suppression under fault-tolerant operation and collaboration of modular PMW-CSCs are described. Both theoretical analysis and some results in simulations and experiments are presented. Finally, a brief discussion regarding the future trend of the HP CSC fed electric machines systems is presented.
机译:脉冲宽度调制(PWM)电流源转换器(CSCS)美联储电机系统可以被认为是一种高可靠性能量转换系统,因为它们与长寿命的直流连接电感器一起工作并提供高故障 - 对短路故障的耐受能力。此外,它们提供了电机友好的波形和四象限的操作能力。因此,它们适用于风扇,泵,压缩机和风力发电的大功率应用。本文的目的是全面审查高功率(HP)PWM-CSC进料电机系统调制和控制的关键技术的最新发展,包括降低低阶电流谐波,抑制电感 - 电容器(LC)共振,缓解共模电压(CMV)和模块化PWM-CSC馈电系统的控制。特别地,描述了在换向期间的重叠效果的最新工作,描述了在容错操作和模块化PMW-CSC的发生的LC谐振抑制。介绍了理论分析和一些导致模拟和实验的结果。最后,提出了关于HP CSC馈电电机系统的未来趋势的简要讨论。

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