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Extending passivity-based control beyond mechanics: a synchronous motor example

机译:将基于无源性的控制扩展到机械之外:同步电动机示例

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The potential success of a new controller design in practical applications hinges upon its ability to improve the performance of the existing engineering schemes, as well as its compatibility with current practice. While the first one is a widely accepted sine qua non condition, the latter builds up confidence on the proposition and facilitates the communication between practitioners and control theorists. The purpose of this paper is to bring to the readers attention a nonlinear controller design technique - passivity-based control (PBC) - that enjoys these two essential features. PBC concentrates on the energy properties of the controlled system and its final aim is to assign to the closed-loop a desired energy function. In this way, the desired performance is specified in terms of energy, a fundamental concept which is well-understood in engineering practice. This "energy-shaping" approach to control is well-known in robotics and has been recently extended, e.g. to cover electrical and electromechanical systems, adopting two different perspectives. We illustrate both approaches in this paper with their application to the control of synchronous motors.
机译:新控制器设计在实际应用中的潜在成功取决于其改善现有工程方案性能的能力以及与当前实践的兼容性。第一个条件是被广泛接受的正弦条件,而第二个条件则建立了对该命题的信心,并促进了实践者与控制理论家之间的交流。本文的目的是引起读者注意,非线性控制器设计技术-基于无源控制(PBC)-具有这两个基本特征。 PBC专注于受控系统的能量特性,其最终目标是为闭环分配所需的能量函数。以此方式,根据能量来指定期望的性能,这是工程实践中众所周知的基本概念。这种“能量整形”的控制方法在机器人技术中是众所周知的,并且最近得到了扩展,例如。涵盖电气和机电系统,采用两种不同的观点。我们将在本文中说明这两种方法及其在同步电动机控制中的应用。

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