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DC-Link Current Minimization for High-Power Current-Source Motor Drives

机译:大功率电流源电机驱动器的直流链路电流最小化

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摘要

In this paper, a loss reduction and dc-link current minimization strategy for a high-power current-source inverter (CSI) fed drive is proposed. The proposed strategy consists of an inverter maximum modulation index control scheme and a flux optimization algorithm. Specifically, in the inverter modulation index control, the CSI modulation index is kept at the maximum value while the current-source rectifier (CSR) is used to regulate a reduced variable dc-link current, and therefore, to control the motor current magnitude. This control scheme can effectively reduce the dc-link current, and at the same time, improve the line-side and motor-side waveforms. On the other hand, for the optimized flux control, the relationship between the rotor flux and the dc-link current is first investigated thoroughly. Based on this analysis, the dc-link current from the maximum inverter modulation index control can be minimized further by optimizing the rotor flux according to system variables such as the motor speed, the applied torque, and the motor-side capacitor size. With the proposed dc current minimization strategy, the losses in the semiconductor devices and the dc link can be reduced, and the drive current rating could be lowered. Both simulation and experimental results on a 4.16-kV 600-hp CSI-fed drive system are obtained to verify the effectiveness of the proposed strategy.
机译:本文提出了一种用于大功率电流源逆变器(CSI)馈电驱动器的损耗降低和直流链路电流最小化策略。所提出的策略包括逆变器最大调制指数控制方案和磁通优化算法。具体地说,在逆变器调制指数控制中,CSI调制指数保持在最大值,而电流源整流器(CSR)用于调节减小的可变直流母线电流,从而控制电动机电流大小。该控制方案可以有效降低直流环节电流,同时改善线路侧和电动机侧的波形。另一方面,为了优化磁通量控制,首先要彻底研究转子磁通量与直流母线电流之间的关系。基于此分析,可以根据系统变量(例如电机速度,施加的扭矩和电机侧电容器的尺寸)优化转子磁通,从而最大程度地减小来自最大逆变器调制指数控制的直流母线电流。利用提出的直流电流最小化策略,可以减少半导体器件和直流链路中的损耗,并且可以降低驱动电流额定值。获得了在4.16-kV 600 hp CSI馈送驱动系统上的仿真和实验结果,以验证所提出策略的有效性。

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