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首页> 外文期刊>Industrial Electronics, IEEE Transactions on >Benefits of Direct Phase Voltage Measurement in the Rotor Initial Position Detection for Permanent-Magnet Motor Drives
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Benefits of Direct Phase Voltage Measurement in the Rotor Initial Position Detection for Permanent-Magnet Motor Drives

机译:永磁电动机驱动器转子初始位置检测中直接相电压测量的好处

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摘要

This paper shows how the problem of estimating the initial rotor position in permanent-magnet sensorless drives can benefit from the availability of a direct measurement of motor phase voltages. Two different estimation methods are presented for this purpose. The first is a readjustment of a classic procedure based on the detection, by means of the injection of voltage test pulses, of inductance variations due to motor saliencies, from which it is then possible to infer the position of the rotor. Since the application of irregular test pulses may increase the estimation uncertainties, the available voltage measurement is exploited to implement a closed-loop amplitude control of the test pulses. The second method is introduced both to overcome an issue related to the digital measurement approach adopted in this paper and to allow position estimation even in a motor with no relevant saliency, a case for which the first method is inappropriate. The effectiveness of the proposed solutions is validated by several experimental tests, which are carried out on two motors with different saliency properties.
机译:本文展示了如何在永磁无传感器驱动器中估算初始转子位置的问题如何受益于直接测量电动机相电压的方法。为此,提出了两种不同的估计方法。第一种是经典方法的重新调整,该方法基于通过注入电压测试脉冲来检测由于电机显着性引起的电感变化,然后可以从中推断出转子的位置。由于不规则测试脉冲的施加可能会增加估计的不确定性,因此可以利用可用的电压测量来实现测试脉冲的闭环幅度控制。引入第二种方法既可以克服与本文采用的数字测量方法相关的问题,又可以在没有相关显着性的电动机中进行位置估计,这是第一种方法不合适的情况。所提出的解决方案的有效性通过多个实验测试得到了验证,这些实验在具有不同显着性的两个电动机上进行。

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