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Improved Sensorless Operation of a CSI-Based Induction Motor Drive: Long Feeder Case

机译:基于CSI的感应电动机驱动器的改进的无传感器操作:长馈线盒

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Various applications, like in underground mines and oil and gas industries, require remote operation of vector-controlled medium-voltage variable speed drives via a long motor feeder. The use of voltage source inverters in such cases leads to motor overvoltage and harmonic quality problems. The current source inverter (CSI) is ideally matched to these applications because of its motor-friendly voltage output. Speed sensorless operation is mandatory due to the long motor feeder. Although the model reference adaptive system (MRAS) is a powerful and proven speed estimation tool, its implementation in long motor feeder drives faces many challenges. Among them, and addressed in this paper, are inherent dc offset in its stator model, the need for actual motor voltage and current values, and oscillations in the estimated speed due to errors in the motor current measurement signals. In this paper, a sensorless CSI vector-controlled drive, suitable for long motor feeder applications, is studied. Improved speed estimation is achieved by proposing 1) a modified dc-offset eliminator for an MRAS speed estimation and 2) a compensation technique for motor current's measurement errors. Intensive experimental results, for a low-voltage scaled model, along with simulations validate the effectiveness of the proposed technique.
机译:诸如地下矿山和石油和天然气工业中的各种应用都需要通过长电动机馈线对矢量控制的中压变速驱动器进行远程操作。在这种情况下使用电压源逆变器会导致电机过压和谐波质量问题。电流源逆变器(CSI)由于具有电机友好的电压输出,因此非常适合这些应用。由于电机进给器较长,因此必须进行无速度传感器操作。尽管模型参考自适应系统(MRAS)是一种功能强大且久经考验的速度估算工具,但其在长电动机给料机驱动器中的实施面临许多挑战。其中,本文要解决的是其定子模型中固有的直流偏移,对实际电动机电压和电流值的需求以及由于电动机电流测量信号中的误差而导致的估计速度波动。在本文中,研究了一种适用于长电机馈线应用的无传感器CSI矢量控制驱动器。通过提出以下建议来实现改进的速度估算:1)改进的用于MRAS速度估算的直流偏移消除器,以及2)针对电动机电流的测量误差的补偿技术。低压比例模型的大量实验结果以及仿真结果验证了所提出技术的有效性。

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