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An Extended-Speed Low-Ripple Torque Control of Switched Reluctance Motor Drives

机译:开关磁阻电机驱动器的扩展速度低纹波转矩控制

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摘要

In this paper, an extended-speed low-ripple torque control of switched reluctance motor (SRM) drives using torque sharing function (TSF) is proposed. Two operational modes are defined for the online TSF during commutation: In Mode I, absolute value of rate of change of flux linkage (ARCFL) of incoming phase is higher than outgoing phase; in Mode II, ARCFL of outgoing phase is higher than incoming phase. In order to compensate the torque error produced by imperfect tracking of phase current, a proportional and integral compensator with torque error is added to the torque reference of outgoing phase in Mode I and incoming phase in Mode II. Therefore, the total torque is determined by the phase with lower ARCFL rather than the phase with higher ARCFL as in conventional TSFs. The maximum torque-ripple-free speed of the proposed TSF is increased to more than ten times as the best case in conventional TSFs. Finally, the proposed TSF is verified by both simulations and experiments with a 2.3 kW, 6000 rpm, three-phase 12/8 SRM operating in both linear magnetic and saturated magnetic regions. Results show that the proposed TSF has higher average torque, and much lower torque ripples compared to conventional TSFs.
机译:本文提出了一种使用转矩共享功能(TSF)的开关磁阻电动机(SRM)驱动器的高速低波动转矩控制。为换相期间的在线TSF定义了两种工作模式:在模式I中,输入相的磁链的变化率(ARCFL)的绝对变化率高于输出相。在模式II中,输出阶段的ARCFL高于输入阶段。为了补偿由于不完全跟踪相电流而产生的转矩误差,将具有转矩误差的比例积分补偿器添加到模式I的输出相和模式II的输入相的转矩参考中。因此,总扭矩由具有较低ARCFL的相位而不是像常规TSF中具有较高ARCFL的相位确定。所提出的TSF的最大无转矩波动速度增加到传统TSF最佳情况的十倍以上。最后,通过在线性磁区和饱和磁区中运行的2.3 kW,6000 rpm三相12/8 SRM的仿真和实验对所提出的TSF进行了验证。结果表明,与传统的TSF相比,提出的TSF具有更高的平均转矩,并且转矩脉动要低得多。

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