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An Induction Generator System Based on Instantaneous Torque Impulse Balance Control (ITIBC)

机译:基于瞬时转矩脉冲平衡控制(ITIBC)的感应发电机系统

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摘要

The induction machine, offering the merits of robust machine structure, brushless construction, and good voltage regulation capability, is a good choice used as a generator in the dc power system. For the induction generator, the instantaneous torque control (ITC) can achieve stable regulation of the output voltage and excellent dynamic performance of the electromagnetic torque. However, the proportional-integral controller of the voltage loop in the ITC can hardly guarantee the optimal dynamic performance of the output voltage, that is, during the response to the load sudden change, the output voltage exhibits several adjustments, overshoot, and relatively long recovery time. To solve this problem, an instantaneous torque impulse balance control (ITIBC) method is investigated in this paper. In the dynamic process, a group of optimal switch vectors is obtained to achieve the shortest recovery time and the minimum number of adjustments of the output voltage without overshoot. Thus, the optimal dynamic performance of the voltage can be achieved for the induction generator system. Simulation and experimental results verify the correctness and effectiveness of the ITIBC method.
机译:感应电机具有坚固的电机结构,无刷结构和良好的调压能力,是用作直流电源系统中的发电机的理想选择。对于感应发电机,瞬时转矩控制(ITC)可以实现输出电压的稳定调节,并具有出色的电磁转矩动态性能。但是,ITC中电压环路的比例积分控制器几乎不能保证输出电压的最佳动态性能,也就是说,在响应负载突然变化的过程中,输出电压会出现几次调整,过冲和相对较长的时间。恢复时间。为了解决这个问题,本文研究了瞬时转矩脉冲平衡控制(ITIBC)方法。在动态过程中,获得了一组最佳开关矢量,以实现最短的恢复时间和最少的输出电压调整次数,而不会出现过冲。因此,对于感应发电机系统,可以实现电压的最佳动态性能。仿真和实验结果验证了该方法的正确性和有效性。

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