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THE THYRISTOR CONVERTER INFLUENCE ON THE PULSATIONS OF THE ELECTROMAGNETIC TORQUE OF THE INDUCTION MOTOR AT PARAMETRICAL CONTROL

机译:晶闸管转换器对参数控制时感应电动机电磁扭矩的脉动的影响

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摘要

Purpose. The purpose of the work is to identify the parameters influence of the electric motor, the power circuits elements of the converters, built on resistor-thyristor modules, the static torque and the moment of inertia of the mechanism on the vibrational components of the induction motor’s electromagnetic moment. Methodology. The methodological basis for the solution of the task is an integrated approach. The application of the generalized control circuit for an induction electric motor and its mathematical description made it possible to analyze various power circuits of parametric control of an induction electric motor. To create a common control algorithm, effectively use the computer for calculations. To perform qualitative and quantitative analysis of the amplitudes and frequencies of the vibrational components of the electromagnetic torque of the electric motor. Results. The conducted researches allowed to reveal the peculiarities of the effect of the parameters of the elements of various types of power circuits of the parametric control converters on the vibrational components of the electromagnetic torque of an induction electric motor. Calculations and physical modeling have been performed, it has been possible to establish the conditions for the occurrence of electromagnetic pulsations and to determine the ways of their elimination. It was found that the magnitude of pulsations of the electromagnetic moment of an induction electric motor in quasi-permanent modes depends on the selected power circuit of the converter's stator and rotor commutators, the composition of the elements included in them, and the connection circuits. Comparison of calculated and experimental waveform when starting induction electric motors indicates that the pulsation of the electromagnetic torque is affected by: the size of the opening angle of the valves, their control methods, the rotor speed, the parameters of the electric motor and the mechanism are static and inertial moments. At the same time, it was revealed that the use of resistor-thyristor modules in the power circuits of the stator and rotary commutators reduces the magnitude of the pulsation of the electromagnetic torque of the induction electric motor. Increase the value of its maximum and average torques. Limit the magnitude of the shock and alternating torques when it starts and the transition from one speed to another. Scientific novelty. It is proposed to use a generalized circuit of parametric control of an induction electric motor for studying the change in the electromagnetic torque. The circuit consists of resistor – thyristor modules in stator and rotary commutators. The presented technique allowed simultaneously to investigate transients during the control of an induction electric motor by various power circuits of converters. The results of calculations allow choosing the necessary power circuit, taking into account the vibrational components of the electromagnetic torque of the induction motor.
机译:目的。该工作的目的是识别电动机的参数影响,转换器的电源电路元件,内置在电阻器 - 晶闸管模块上,静态扭矩和电动机振动部件的机构的惯性矩的惯性矩电磁矩。方法。任务解决方案的方法论是一种综合方法。广义控制电路对感应电动机的应用及其数学描述使得可以分析感应电动机的参数控制的各种功率电路。要创建公共控制算法,有效地使用计算机进行计算。对电动机的电磁扭矩的振动分量的振荡和频率进行定性和定量分析。结果。所进行的研究允许揭示参数控制转换器的各种电源电路的元件参数对感应电动机的电磁扭矩的振动分量的效果的特性。已经进行了计算和物理建模,已经可以建立电磁脉动发生的条件,并确定其消除的方式。结果发现,以准永久模式的感应电动机的电磁矩的脉动幅度取决于转换器定子和转子换向器的所选择的电源电路,包括在其中的元件的组成和连接电路。开始感应电动机时计算和实验波形的比较表明电磁扭矩的脉动受到:阀门的开口角度的尺寸,它们的控制方法,转子速度,电动机的参数和机构是静态和惯性时刻。同时,揭示了在定子和旋转换向器的电源电路中使用电阻器 - 晶闸管模块降低了感应电动机的电磁扭矩的脉动的幅度。增加其最大值和平均扭矩的值。当它开始和从一个速度到另一个速度的转变时,限制冲击和交替扭矩的大小。科学新颖。建议使用感应电动机的参数控制的通用电路来研究电磁扭矩的变化。电路由定子和旋转换向器中的电阻器 - 晶闸管模块组成。所提出的技术同时允许在通过转换器的各种电源电路控制感应电动机期间研究瞬态。计算结果允许选择必要的电源电路,考虑到感应电动机的电磁扭矩的振动分量。

著录项

  • 作者

    V. I. Lobov; K. V. Lobova;

  • 作者单位
  • 年度 2017
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng;rus;ukr
  • 中图分类

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