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Passivity-based control of a class of Blondel-Park transformable electric machines

机译:一类Blondel-Park可变形电机的基于无源性的控制

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Concerns the extension to the general rotating electric machine model of the passivity-based controller method for induction motors. The motor's passivity properties are used at 2 levels. First, we prove that the motor model can be decomposed as the feedback interconnection of two passive subsystems (essentially, the electrical and mechanical dynamics). Then, we design a torque-tracking controller that preserves passivity for the electrical subsystem and leaves the mechanical part as a passive disturbance. This leads to the cascaded controller structure which is typically analyzed involving time-scale separation. Our aim is to characterize a class of machines for which such a passivity-based controller solves the output feedback torque-tracking problem. The class consists of machines whose nonactuated dynamics are damped and whose dynamics can be decoupled. This requires that the air-gap magnetomotive force must be suitably approximated by the first harmonic in its Fourier expansion. These conditions have a clear physical interpretation in terms of the couplings between its dynamics and are satisfied by many machines. The passivity-based controller presented reduces to the well-known indirect vector controller for current-fed induction machines. Our developments constitute an extension to voltage-fed machines of this de facto standard in industrial applications.
机译:有关感应电动机基于无源性的控制器方法的通用旋转电机模型的扩展。电机的无源特性在2个级别上使用。首先,我们证明电机模型可以分解为两个无源子系统的反馈互连(本质上是电气和机械动力学)。然后,我们设计了一个扭矩跟踪控制器,该控制器可保留电气子系统的无源性,而将机械零件留为被动干扰。这导致了级联的控制器结构,通常会对其进行分析,包括时间标度分离。我们的目标是描述一类机器,此类机器基于这种基于无源性的控制器可以解决输出反馈转矩跟踪问题。该类由其非致动动力学被阻尼并且其动力学可以解耦的机器组成。这要求气隙磁动势必须通过其傅立叶展开中的一次谐波适当地近似。这些条件就其动力学之间的耦合而言具有清晰的物理解释,并且可以被许多机器满足。所提出的基于无源性的控制器简化为用于电流感应电机的众所周知的间接矢量控制器。我们的发展是对工业应用中该事实标准的电压馈电机器的扩展。

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