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Fuzzy logic enhanced speed control of an indirect field-oriented induction machine drive

机译:间接磁场定向感应电机驱动器的模糊逻辑增强速度控制

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Field orientation control (FOC) of induction machines has permitted fast transient response by decoupled torque and flux control. However, field orientation detuning caused by parameter variations is a major difficulty for indirect FOC methods. Traditional probability density function (PID) controllers have trouble meeting a wide range of speed tracking performance even when proper field orientation is achieved. PID controller performance is severely degraded when detuning occurs. This paper presents a fuzzy logic design approach that can meet the speed tracking requirements even when detuning occurs. Computer simulations and experimental results obtained via a general-purpose digital signal processor (DSP) system are presented.
机译:感应电机的磁场定向控制(FOC)通过扭矩和磁通量控制的分离实现了快速的瞬态响应。但是,由参数变化引起的场定向失谐是间接FOC方法的主要困难。传统的概率密度函数(PID)控制器即使实现正确的磁场定向,也难以满足广泛的速度跟踪性能要求。发生失谐时,PID控制器的性能会严重下降。本文提出了一种即使在发生失谐时也能满足速度跟踪要求的模糊逻辑设计方法。介绍了通过通用数字信号处理器(DSP)系统获得的计算机仿真结果和实验结果。

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