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首页> 外文期刊>IEE Proceedings. Part B >Application of nonlinear control to switched reluctance motors: a feedback linearisation approach
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Application of nonlinear control to switched reluctance motors: a feedback linearisation approach

机译:非线性控制在开关磁阻电机中的应用:反馈线性化方法

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摘要

The design of a feedback linearisation (FBL) controller for switched reluctance (SR) motor is presented. The mathematical model of the motor takes magnetic saturation into account. It has been shown through simulation studies that a FBL controller based on a linear control law provides better dynamic performance in comparison with a PI controller. However, the FBL controller based on a linear control law alone is not adequate to handle uncertainty in the SR motor model, and hence the corresponding torque ripple is substantial. To reduce torque ripple in the drive system the design of a robust FBL controller based on Lyapunov's second method, which takes care of model uncertainty is presented. Out of the three input variables to the SR motor, phase voltage, on-angle and off-angle; the phase voltage is used as the manipulated control variable in the drive system. Performance of the nonlinear model together with the robust FBL controller for a speed control application is examined through digital simulation. Simulation obtained confirm reduction in torque improved transient and steady-state performance and robustness of the controller to parameter variations under various types of disturbances.
机译:提出了一种用于开关磁阻(SR)电机的反馈线性化(FBL)控制器的设计。电动机的数学模型考虑了磁饱和。通过仿真研究表明,与PI控制器相比,基于线性控制律的FBL控制器具有更好的动态性能。但是,仅基于线性控制定律的FBL控制器不足以处理SR电机模型中的不确定性,因此相应的转矩波动很大。为了减少驱动系统中的转矩脉动,提出了一种基于李雅普诺夫第二种方法的鲁棒FBL控制器的设计,该控制器考虑了模型不确定性。 SR电动机的三个输入变量中,相电压,接通角和断开角;相电压用作驱动系统中的受控变量。通过数字仿真检查了非线性模型的性能以及用于速度控制应用的鲁棒FBL控制器。所获得的仿真结果证实,在各种类型的干扰下,转矩的降低可改善瞬态和稳态性能,以及控制器对参数变化的鲁棒性。

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