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Prediction-based control of linear input-delay system subject to state-dependent state delay - Application to suppression of mechanical vibrations in drilling

机译:基于预测的线性输入延迟系统控制,其依赖状态延迟 - 抑制钻井机械振动的应用

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In this paper, we consider linear dynamics subject to a distributed state-dependent delay and a pointwise input-delay. We propose a prediction-based controller which exponentially stabilizes the plant. The controller design is based on a backstepping approach where delays are reformulated as hyperbolic transport PDEs. Infinity-norm stability analysis of the corresponding closed-loop system is addressed. We show that this result is of interest to suppress mechanical vibrations arising in drilling facilities, which have been attributed recently to a coupling between torsional and vertical displacement involving an implicit state delay equation. Numerical simulations illustrate the merits of our controller in this context.
机译:在本文中,我们考虑对分布式状态延迟的线性动力学和尖延迟。我们提出了一种基于预测的控制器,其指数稳定了植物。控制器设计基于延迟被重新重新重新重整为双曲线传输PDE的反向插入方法。对应的闭环系统的无限常态稳定性分析。我们表明,该结果是抑制钻井设施中产生的机械振动的感兴趣,该机械振动最近归因于涉及隐式状态延迟方程的扭转和垂直位移之间的耦合。数值模拟在此上下文中说明了我们的控制器的优点。

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