Sensorless control of PMSM drives

G. Foo, Xinan Zhang, M. F. Rahman
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Abstract

When compared to induction motors, permanent magnet synchronous motors (PMSMs) feature higher torque density, improved efficiency and increased constant power speed range. These distinct advantages have resulted in PMSMs being employed in a myriad of industrial applications. Traditionally, the open -loop V/f control scheme has been the preferred method for PMSM drives owing to its inherent simplicity. Nevertheless, as this method is derived from the steady-state model of the machine and does not rely on any motor feedback information, it offers very poor dynamic performance and is susceptible to external disturbances. Thus, its adoption is limited to applications whose transients are relatively unimportant or occur over long intervals. If high torque and speed dynamic performance is required, the vector control method becomes a necessity.
无传感器控制的永磁同步电机驱动器
与感应电机相比,永磁同步电机(pmms)具有更高的转矩密度,更高的效率和更大的恒功率速度范围。这些独特的优势导致pmms被用于无数的工业应用。传统上,开环V/f控制方案由于其固有的简单性一直是永磁同步电机驱动器的首选方法。然而,由于该方法来源于机器的稳态模型,不依赖于任何电机反馈信息,因此动态性能很差,容易受到外界干扰。因此,它的采用仅限于瞬态相对不重要或发生时间间隔较长的应用程序。如果需要高转矩和高速度的动态性能,矢量控制方法就成为必要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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