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首页> 外文期刊>Industry Applications, IEEE Transactions on >Impact of Undercompensation and Overcompensation of Dead-Time Effect on Small-Signal Stability of Induction Motor Drive
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Impact of Undercompensation and Overcompensation of Dead-Time Effect on Small-Signal Stability of Induction Motor Drive

机译:滞后时间补偿不足和补偿过度对感应电动机驱动器小信号稳定性的影响

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摘要

Inverter dead-time is known to make open-loop induction motor drives oscillatory, while operating at light-loads in particular. While dead-time compensation schemes exist, precise compensation of the same is often challenging as it involves factors such as device and driver delays and switching transition times, which are difficult to be quantified accurately. Hence, the effect of dead-time could be under or overcompensated. This paper presents a comprehensive analysis of the impact of such undercompensation and overcompensation on the stability of a 100-kW induction motor drive, along with experimental investigations of the same. The effects of undercompensation and overcompensation on the inverter output voltage are analyzed on a switching-cycle average basis. Further, small-signal models are proposed for an open-loop drive, when it is undercompensated and overcompensated. Stability analysis of the above motor drive is reported, which predicts oscillatory behavior with both under and overcompensation, over certain fundamental frequency ranges, respectively. Further, two different types of oscillatory behavior, characterized by different oscillating frequencies, are observed for the cases of under and overcompensation. The analyses are supported by simulations. Experimental investigations carried out also support the analyses and simulation results.
机译:众所周知,逆变器的死区时间会使开环感应电动机产生振荡,特别是在轻负载下运行。尽管存在死区时间补偿方案,但对其进行精确补偿通常具有挑战性,因为它涉及诸如设备和驱动器延迟以及切换过渡时间等因素,这些因素难以准确量化。因此,停滞时间的影响可能不足或过度补偿。本文对这种补偿不足和补偿过度对100 kW感应电动机驱动器的稳定性的影响进行了综合分析,并对其进行了实验研究。在开关周期平均值的基础上,分析了补偿不足和补偿过度对逆变器输出电压的影响。此外,当开环驱动补偿不足和补偿过度时,建议使用小信号模型。报告了上述电动机驱动器的稳定性分析,该分析分别预测了在某些基本频率范围内补偿不足和补偿过度时的振荡行为。此外,对于补偿不足和补偿过度的情况,观察到两种不同类型的振荡行为,其特征在于不同的振荡频率。分析得到仿真的支持。进行的实验研究也支持分析和仿真结果。

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