高压感应电动机电驱动的机电模型和工作模式。第1部分:冲击扭矩和电流

S. Rachev, D. Koeva, I. Ivanov
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引用次数: 11

摘要

感应电动机在瞬态过程中产生较大的电磁转矩,数倍于额定转矩、起动转矩甚至最大转矩。这些力矩是机电系统运动链元件产生危险机械应力的原因。在评估电传动的运行可靠性时,应考虑这些因素。电机中瞬态过程流动的性质常常决定整个系统的行为,而整个系统的一个组成部分就是电机。本文讨论了泵机组大功率电力驱动启动时的瞬态过程。研究了供电电压和电驱动总惯性转矩对产生的冲击转矩、电流和起动时间的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Electromechanical model and operating modes of high-voltage induction motor electric drive — Part I: Impact torque and currents
The induction electric motor develops in transient processes significant sized electromagnetic torques, several times exceeding rated, starting and even maximum ones. These torques are the reason for the occurrence of dangerous mechanical stresses in the elements of the kinematic chain of electromechanical system. They should be considered when assessing the reliability of operation of the electric drive. The nature of the flow of transient processes in the electrical machine often determines the behavior of the entire system, an element of which is the machine. Paper deals with transient processes when starting a powerful electric drive for pump unit. The influence of the supply voltage and the total torque of inertia of the electric drive on arising impact torques and currents and starting time have been investigated.
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