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Reliability-based robust dynamic positioning for a turret-moored floating production storage and offloading vessel with unknown time-varying disturbances and input saturation

机译:基于可靠性的旋转浮动生产储存和卸载容器的可靠性,具有未知的时变扰动和输入饱和度

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In this paper, we derived a mathematical model for a floating production storage and offloading (FPSO) vessel and its buoy mooring system and developed a new robust positioning controller to keep vessels in a desired region in the presence of unknown time-varying disturbances with uncertainties and input saturation. Different materials (chain and polyester) and buoys are considered in the model of mooring system to make the developed model more realistic. We employed a disturbance observer to estimate the disturbances and designed an auxiliary dynamic system integrated with the structural reliability's derivative to quantify the input saturation's influence, and its states are used to the control design. Our proposed controller can keep the structural reliability and heading at desired values with arbitrarily small errors while guaranteeing the uniform ultimate boundedness of all signals in the closed-loop control system. It is easier for the control design because disturbances and input saturation are handled simultaneously and so is the stability analysis because only one Lyapunov function is needed. Simulations are conducted to demonstrate our proposed controller's effectiveness and a comparison with a robust controller based on hyperbolic tangent functions shows our proposed controller can avoid steady errors with desired control goals. (C) 2018 ISA. Published by Elsevier Ltd. All rights reserved.
机译:在本文中,我们为浮动生产储存和卸载(FPSO)容器及其浮标系泊系统产生了一种数学模型,并开发了一种新的稳健定位控制器,以在未知的时变扰动存在下保持所需区域的血管在不确定的情况下并输入饱和度。在系泊系统模型中考虑了不同的材料(链和聚酯)和浮标,使开发的模型更加现实。我们采用了一个干扰观察者来估计干扰,并设计了一种与结构可靠性的衍生物集成的辅助动态系统,以量化输入饱和度的影响,其状态用于控制设计。我们所提出的控制器可以通过任意小的误差保持结构可靠性和标题,同时保证闭环控制系统中所有信号的均匀终极界限。控制设计更容易,因为干扰和输入饱和度同时处理,因此稳定性分析也是如此,因为只需要一个Lyapunov功能。进行仿真以展示我们提出的控制器的效率和与基于双曲线切线函数的强大控制器的比较显示我们所提出的控制器可以避免使用所需的控制目标稳定误差。 (c)2018 ISA。 elsevier有限公司出版。保留所有权利。

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