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An improved stator flux estimation for speed sensorless stator flux orientation control of induction motors

机译:感应电动机无速度定子磁链定向控制的改进定子磁链估计

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This paper proposes a programmable low pass filter (LPF) to estimate stator flux for speed sensorless stator flux orientation control of induction motors. The programmable LPF is developed to solve the DC drift problem associated with a pure integrator and a LPF. The pole of the programmable LPF is located far from the origin in order to decrease the time constant with the increasing speed. In addition, the programmable LPF has a phase/gain compensator to estimate exactly stator flux in a wide speed range. Consequently, the drift problem is much improved and the stator flux is exactly estimated in the wide speed range. The validity of the proposed programmable LPF is verified by speed sensorless vector control of a 2.2 kW three-phase induction motor.
机译:本文提出了一种可编程的低通滤波器(LPF)来估计定子磁链,以用于感应电动机的无速度传感器定子磁链定向控制。开发可编程LPF是为了解决与纯积分器和LPF相关的DC漂移问题。可编程LPF的极点远离原点,以便随着速度的增加而减小时间常数。此外,可编程LPF具有一个相位/增益补偿器,可以在很宽的速度范围内精确估算定子磁通。因此,漂移问题得到了很大改善,并且可以在较宽的速度范围内精确估计定子磁通。通过对2.2 kW三相感应电动机进行无速度传感器矢量控制,可以验证所提出的可编程LPF的有效性。

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