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A Novel Thyristor-Based CSI Topology With Multilevel Current Waveform for Improved Drive Performance

机译:一种新颖的基于晶闸管的CSI拓扑,具有多级电流波形,可改善驱动性能

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Load-commutated inverters (LCIs), combined with wound-field synchronous machines (WFSMs), can be an excellent solution for high power drives, but their present technology suffers from important drawbacks related to low power factor, large torque pulsations, and poor starting performance. This paper presents a new LCI design intended to overcome the mentioned limitations. An SCR-based forced-commutation circuit is added to the common inverter topology to obtain a five-level waveform for the stator current. This leads to significantly reduced current harmonics and torque pulsations, in addition to bringing benefits in terms of lower additional losses. As a further advantage, the proposed design allows for a significant power factor enhancement. Finally, it enables the WFSM to be started with a much smoother torque compared to the traditional pulsed operating mode of conventional LCI drives. Simulation studies are conducted on a high-power drive scheme to show the aforementioned improvements. Also, a reduced-scale laboratory prototype of a WFSM drive system is tested to verify the feasibility of the proposed converter.
机译:负载换流逆变器(LCI)与绕线励磁同步电机(WFSM)结合在一起,可以成为高功率驱动器的出色解决方案,但是其现有技术遭受着与低功率因数,大转矩脉动和不良启动相关的重大缺陷性能。本文提出了一种旨在克服上述限制的新型LCI设计。将基于SCR的强制换向电路添加到公共逆变器拓扑中,以获得定子电流的五电平波形。除了带来较低附加损耗方面的好处外,这还导致电流谐波和转矩脉动显着降低。作为进一步的优点,提出的设计允许显着提高功率因数。最后,与传统LCI驱动器的传统脉冲操作模式相比,它使WFSM能够以更平滑的转矩启动。对高功率驱动方案进行了仿真研究,以显示上述改进。此外,还对WFSM驱动系统的缩小规模的实验室原型进行了测试,以验证提出的转换器的可行性。

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