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Separation of different Saliencies Modulations for Zero Speed Sensorless Control of Induction Machines using Discrete Fourier Transform and on-line Window Length Adaptation

机译:使用离散傅里叶变换和在线窗口长度自适应对零速无传感器控制的不同炼钢调制

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Controlled operation of ac machines without mechanical sensor at the motor shaft at zero speed so far is only possible using signal injection methods and exploiting non-fundamental wave effects. By establishing a transient excitation of the machine with voltage pulses imposed by the inverter and evaluate the change of the machine line currents due to these pulses. This transient current change is influenced by the transient phase reactances and these in turn are modulated with the flux-and rotor position, which is the desired information for sensorless control. In this paper a special algorithm is proposed using DFT (Discrete Fourier Transform) method for tracking the saturation and slotting components from the measured saliency signal. The proposed algorithm depends on adaptive window length changing. For tracking of one distinct saliency, its modulation is fixed to a specific harmonic order by changing the window length inversely with the speed of the machine.
机译:到目前为止,迄今为止,在电机轴上没有机械传感器的AC机器的控制操作仅可能使用信号注入方法和利用非基波效应。通过建立具有由逆变器施加的电压脉冲的机器的瞬态激励,并根据这些脉冲评估机器线电流的变化。该瞬态电流变化受到瞬态相应的影响,并且通过磁通和转子位置调制它们,这是无传感器控制的期望信息。本文使用DFT(离散傅立叶变换)方法提出了一种特殊算法,用于跟踪来自测量显着信号的饱和度和时隙组件。所提出的算法取决于自适应窗口长度变化。为了跟踪一种不同的显着性,通过与机器速度成反比,通过改变窗口长度,将其调制固定为特定的谐波顺序。

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