Sensorless Stator Flux Oriented Control of Induction Motors Using PLPF with Flux Error Compensator

Sang-soo Lee, Gi-hyoung Park, Myung-kil Jung
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引用次数: 2

Abstract

In this paper, the way to compensate for flux error caused by estimated stator resistance error will be suggested when PLPF is utilized as flux estimator, which is used for sensorless vector control of induction motor. For the highly efficient sensorless control, flux estimation method using PLPF has been widely used. To accurately obtain flux using PLPF, it is significant to estimate synchronous angular velocity. Therefore, the way to make use of PLPF's phase lag error has been suggested; however, to be more accurate, flux magnitude error should be seriously considered and compensated. Error of flux magnitude usually takes place because of estimation error of stator resistance. For this reason, this paper works out a way to make up for the flux magnitude error while using PLPF and it would be proved with simulations and experimental results.
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带磁链误差补偿器的PLPF感应电机无传感器定子磁链定向控制
本文提出了利用PLPF作为磁链估计器用于异步电机无传感器矢量控制时,如何补偿由估计定子电阻误差引起的磁链误差。为了实现高效的无传感器控制,基于PLPF的磁链估计方法得到了广泛的应用。为了准确地获得磁通,同步角速度的估计是非常重要的。因此,提出了利用PLPF相位滞后误差的方法;但是,为了更准确,需要认真考虑通量大小误差并进行补偿。由于定子电阻的估计误差,通常会产生磁链大小的误差。为此,本文提出了一种弥补PLPF使用时磁链大小误差的方法,并将通过仿真和实验结果加以验证。
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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