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Novel Current Error Space Phasor Based Hysteresis Controller Using Parabolic Bands for Control of Switching Frequency Variations

机译:基于抛物线带的新型基于电流误差空间相量的磁滞控制器,用于控制开关频率变化

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摘要

A current error space phasor based simple hysteresis controller is proposed in this paper to control the switching frequency variation in two-level pulsewidth-modulation (PWM) inverter-fed induction motor (IM) drives. A parabolic boundary for the current error space phasor is suggested for the first time to obtain the switching frequency spectrum for output voltage with hysteresis controller similar to the constant switching frequency voltage-controlled space vector PWM-based IM drive. A novel concept of online variation of this parabolic boundary, which depends on the operating speed of motor, is presented. A generalized technique that determines the set of unique parabolic boundaries for a two-level inverter feeding any given induction motor is described. The sector change logic is self-adaptive and is capable of taking the drive up to the six-stepmode if needed. Steady-state and transient performance of proposed controller is experimentally verified on a 3.7-kW IM drive in the entire speed range. Close resemblance of the simulation and experimental results is shown.
机译:提出了一种基于电流误差空间相量的简单迟滞控制器,以控制两级脉宽调制(PWM)逆变器馈电感应电动机(IM)驱动器中的开关频率变化。首次建议使用电流误差空间相量的抛物线边界,以利用与基于恒定开关频率电压控制的空间矢量PWM的IM驱动类似的磁滞控制器获得输出电压的开关频谱。提出了这种抛物线边界在线变化的新概念,它取决于电动机的运行速度。描述了一种通用技术,该技术为给任何给定感应电动机的两电平逆变器确定一组唯一的抛物线边界。扇区更改逻辑是自适应的,并且在需要时能够使驱动器达到六步模式。在整个速度范围内的3.7 kW IM驱动器上,通过实验验证了所提出控制器的稳态和瞬态性能。显示了模拟和实验结果的相似之处。

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  • 年度 2007
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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