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Robust control of PMSM using geometric model reduction and μ-synthesis

机译:使用几何模型归约和μ合成的PMSM鲁棒控制

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In this paper we design a linear time-invariant (LTI) two-input-two-output (TITO) controller for the Permanent Magnet Synchronous Motor (PMSM). First the nonlinear system of a PMSM is approximated using a linear system with structured uncertainties according to the PMSM geometric structures. We then design a linear controller for the approximated linear system using a standard μ-synthesis robust control method. The main contribution of this paper is that a unified LTI controller is designed for the nonlinear PMSM plant using mature modern control theory, without referring to classical PID control. Thus largely reducing the design effort. The newly designed robust controller is not only easy to calculate, it is also easy to implement and requires less sensors. By virtue of modern robust control theory, it responds fast to exogenous inputs, and robust against parameter uncertainties as well.
机译:在本文中,我们为永磁同步电动机(PMSM)设计了线性时不变(LTI)两进两出(TITO)控制器。首先,根据具有线性不确定性的线性系统,根据PMSM的几何结构来近似PMSM的非线性系统。然后,我们使用标准的μ综合鲁棒控制方法为近似线性系统设计线性控制器。本文的主要贡献在于,使用成熟的现代控制理论为非线性PMSM设备设计了统一的LTI控制器,而没有参考经典的PID控制。从而大大减少了设计工作量。新设计的鲁棒控制器不仅易于计算,而且易于实施且需要更少的传感器。借助现代鲁棒控制理论,它可以快速响应外来输入,并且对参数不确定性也具有鲁棒性。

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