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Active vibration control of a flexible rod moving in water: Application to nuclear refueling machines

机译:水中柔性杆的主动振动控制:核加油机的应用

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This paper addresses a simultaneous control of the positions of the bridge and trolley and the vibrations of the load of a nuclear refueling machine (RM) that transports nuclear fuel rods to given locations in the nuclear reactor. Hamilton's principle is used to develop the equations of motion of the RM. The lateral and transverse vibrations of the fuel rods during their transportation in water are analyzed. In deriving the control law, the nonlinear hydrodynamic forces acting on the rod are considered. Then, a boundary control scheme is developed, which suppresses the lateral and transverse vibrations simultaneously in the course of the transportation of the fuel rod to the desired locations. Furthermore, Lyapunov function based stability analyses are performed to prove the uniform ultimate boundedness of the closed loop system as well as the simultaneous control of the positions of the bridge and trolley under the influence of nonlinear hydrodynamic forces. Finally, experimental and simulation results are provided to demonstrate the effectiveness of the proposed control scheme. (C) 2018 Elsevier Ltd. All rights reserved.
机译:本文解决了桥梁和手推车的位置的同时控制核加油机(RM)的振动,将核燃料棒输送到核反应堆的给定位置。汉密尔顿的原则用于开发RM运动的方程。分析了在水中运输过程中燃料杆的横向和横向振动。在得出控制法时,考虑作用在杆上的非线性流体动力力。然后,开发边界控制方案,其在将燃料棒的运输到所需位置的过程中同时抑制横向和横向振动。此外,执行基于Lyapunov功能的稳定性分析,以证明闭环系统的均匀终极界限以及在非线性流体动力学力的影响下同时控制桥梁和手推车的位置。最后,提供了实验和仿真结果以证明所提出的控制方案的有效性。 (c)2018年elestvier有限公司保留所有权利。

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