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Modified Direct Torque Control Method For Induction Motor Drives Based On Amplitude And Angle Control Of Stator Flux

机译:基于定子磁通幅度和角度控制的感应电动机驱动的改进直接转矩控制方法

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摘要

This paper proposes design and implementation of a direct torque controlled induction motor drive system. The method is based on control of separation between amplitude and angle of reference stator flux for determining reference stator voltage vector in generating PWM output voltage for induction motors. The objective is to reduce electromagnetic torque ripple and stator flux droop which result in a decrease in current distortion in steady-state condition. In addition, the proposed technique provides simplicity of a control system. The direct torque control is based on the relationship between instantaneous slip angular frequency and rotor angular frequency in adjustment of the reference stator flux angle. The amplitude of the reference stator flux is always kept constant at rated value. The system has been implemented to verify its capability such as torque and stator flux responses, stator phase current distortion both during dynamic and steady state with load variation, and low speed operation.
机译:本文提出了直接转矩控制感应电动机驱动系统的设计和实现。该方法基于控制参考定子通量的幅度和角度之间的间隔,以确定在产生感应电动机的PWM输出电压时确定参考定子电压矢量。目的是减少电磁转矩波动和定子磁通下降,从而在稳态条件下减小电流失真。另外,提出的技术提供了控制系统的简单性。直接转矩控制基于瞬时滑差角频率与转子角频率之间的关系来调节参考定子磁通角。参考定子磁通的振幅始终保持恒定在额定值。已实施该系统以验证其功能,例如转矩和定子磁通响应,动态和稳态(负载变化)以及低速运行时的定子相电流畸变。

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