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首页> 外文期刊>IEEE Transactions on Industry Applications >Rotor-Position Estimation for Induction Machines at Zero and Low Frequency Utilizing Zero-Sequence Currents
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Rotor-Position Estimation for Induction Machines at Zero and Low Frequency Utilizing Zero-Sequence Currents

机译:利用零序电流在低频和低频感应电机的转子位置估计

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This paper considers the position and speed estimation at low- and zero-frequency operations in standard delta-connected cage induction machines (IMs). A rotor-slot detection technique is used, where test vectors are injected during the pulsewidth-modulation (PWM) periods and the resulting zero-sequence-current derivatives (ZSCDs) are measured using a non-integrating Rogowski coil. The rotor slotting in a near-standard 30-kW symmetric IM is utilized for rotor-position tracking. The rotor-slot number was selected to yield a measurable "position-dependent" ZSC. Experimental results show the variation of the measured current signals with rotor position and how these are used for tracking of the rotor position.
机译:本文考虑了在标准三角形连接笼式感应电机(IM)中低频和零频率运行时的位置和速度估计。使用转子槽检测技术,其中在脉宽调制(PWM)周期内注入测试矢量,并使用非积分Rogowski线圈测量所得的零序电流导数(ZSCD)。接近标准的30 kW对称IM的转子开槽用于转子位置跟踪。选择转子槽号以产生可测量的“位置相关” ZSC。实验结果表明,所测得的电流信号随转子位置的变化以及如何将其用于跟踪转子位置。

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