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Boundary control of three-dimensional inextensible marine risers

机译:三维不可扩展海洋立管的边界控制

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This paper present a design of boundary controllers actuated by hydraulic actuators at the top end for global stabilization of a three-dimensional riser system. First, a set of partial and ordinary differential equations describing motion of the riser and hydraulic systems is developed. Second, several important properties of the riser system are derived. Based on these properties, we show that the conventional formula to calculate the riser effective tension is oversimplified and a new formula is provided. Next, boundary controllers are designed based on Lyapunov's direct method, the backstepping technique, the derived properties of the riser system dynamics, and Poincare's inequalities. Finally, the Galerkin approximation method is used to prove existence and uniqueness of the solutions of the closed loop control system.
机译:本文提出了一种边界控制器的设计,该控制器由顶端的液压致动器驱动,以实现三维立管系统的整体稳定。首先,开发了一组描述立管和液压系统运动的偏微分方程和常微分方程。其次,得出立管系统的几个重要特性。基于这些性质,我们证明了用于计算立管有效张力的常规公式被简化了,并提供了一个新公式。接下来,基于Lyapunov的直接方法,反推技术,立管系统动力学的推导属性以及Poincare的不等式,设计边界控制器。最后,采用Galerkin逼近方法来证明闭环控制系统解的存在性和唯一性。

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