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首页> 外文期刊>IEEE Transactions on Industry Applications >Indirect sensing for rotor flux position of permanent magnet AC motors operating over a wide speed range
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Indirect sensing for rotor flux position of permanent magnet AC motors operating over a wide speed range

机译:间接检测在宽速度范围内运行的永磁交流电机的转子磁通量位置

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摘要

This paper describes an indirect sensing, or sensorless, method for rotor flux position for brushless permanent magnet (BPM) motors operating over a wide speed range, while keeping maximum torque per ampere and/or maximum efficiency capabilities. The method described is particularly applicable to trapezoidal back emf type of BPM motors. The typical trapezoidal waveform of the motor internal voltages (or back emf) contains a fundamental and higher order frequency harmonics. In particular, the third harmonic component is extracted from the stator phase voltages while the fundamental and other polyphase components are eliminated via a simple summation of the three phase voltages. The resulting third harmonic signal keeps a constant phase relationship with the rotor flux for any motor speed and load condition, and is practically free of noise that can be introduced by the inverter switching, making this a robust sensing method. In contrast with indirect sensing methods based on detection of the back-emf signal that require heavy filtering, the third harmonic signal needs only a small amount of filtering to eliminate the switching frequency and its side bands. As a result, the method described here is not sensitive to filtering delays, allowing the motor to achieve a good performance over a wide speed range. Motor starting is also superior with this method since the third harmonic signal can be detected and processed at lower speeds than for the conventional method of back-emf sensing.
机译:本文介绍了一种间接感应或无传感器方法,该方法可在较宽的速度范围内运行的无刷永磁(BPM)电动机的转子磁通位置,同时保持每安培的最大转矩和/或最大效率。所描述的方法特别适用于梯形反电动势型BPM电机。电动机内部电压(或反电动势)的典型梯形波形包含基波和高次频率谐波。特别地,从定子相电压中提取三次谐波分量,而通过简单地将三相电压相加来消除基波和其他多相分量。在任何电动机速度和负载条件下,所产生的三次谐波信号都与转子磁通保持恒定的相位关系,并且几乎没有逆变器开关可能引入的噪声,这使其成为一种可靠的检测方法。与基于需要大量滤波的反电动势信号检测的间接检测方法相比,三次谐波信号仅需进行少量滤波即可消除开关频率及其边带。结果,此处描述的方法对滤波延迟不敏感,从而使电动机在较宽的速度范围内都能达到良好的性能。与传统的反电动势感测方法相比,该方法还可以以较低的速度检测和处理三次谐波信号,因此电动机的启动也更为出色。

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