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Adaptive compensation technique for nonlinear dynamic and static models of friction

机译:非线性动静摩擦模型的自适应补偿技术

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Friction is a nonlinear phenomenon which appears in mechanical devices with moving parts and has malicious effects on behavior of systems and sometimes leads to fail designed controllers to perform appropriately. Therefore, friction compensation is a vital process in these systems. An adaptive approach is presented in this paper to compensate friction effects. It works for nonlinear static and dynamic models of friction such as Classic, Exponential, and LuGre. This technique is described and tested on simple inverted pendulum on a cart where friction is considered between cart and ground. However, suggested technique is applicable on any mechanical system. Finally, high performance and effectiveness of the proposed approach is shown by simulations.
机译:摩擦是一种非线性现象,它出现在带有运动部件的机械设备中,对系统的行为产生恶意影响,有时会导致设计的控制器无法正常运行。因此,在这些系统中,摩擦补偿是至关重要的过程。本文提出了一种自适应方法来补偿摩擦效应。它适用于摩擦的非线性静态和动态模型,例如Classic,Exponential和LuGre。对该技术进行了描述并在推车上的简单倒立摆上进行了测试,其中考虑了推车与地面之间的摩擦。但是,建议的技术适用于任何机械系统。最后,仿真结果表明了该方法的高性能和有效性。

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