首页> 外文会议>International conference on ocean, offshore and arctic engineering;OMAE2009 >DIRECT ADAPTIVE REJECTION OF VORTEX-INDUCED DISTURBANCES FOR A POWERED SPAR PLATFORM
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DIRECT ADAPTIVE REJECTION OF VORTEX-INDUCED DISTURBANCES FOR A POWERED SPAR PLATFORM

机译:动力SPAR平台的涡激干扰的直接自适应抑制

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The Rapidly Deployable Stable Platform (RDSP) is a novel vessel designed to be a reconfigurable, stable at-sea platform. It consists of a detachable catamaran and spar, performing missions with the spar extending vertically below the catamaran and hoisting it completely out of the water. Multiple thrusters located along the spar allow it to be actively controlled in this configuration. A controller is presented in this work that uses an adaptive feedback algorithm in conjunction with Direct Adaptive Disturbance Rejection (DADR) to mitigate persistent, vortex-induced disturbances. Given the frequency of a disturbance, the nominal DADR scheme adaptively compensates for its unknown amplitude and phase. This algorithm is extended to adapt to a disturbance frequency that is only coarsely known by including a Phase Locked Loop (PLL). The PLL improves the frequency estimate on-line, allowing the modified controller to reduce vortex-induced motions by more than 95% using achievable thrust inputs.
机译:快速部署稳定平台(RDSP)是一种新颖的舰船,旨在成为可重新配置,稳定的海上平台。它由可拆卸的双体船和翼梁组成,执行任务时,翼梁在双体船下方垂直延伸,并将其完全吊出水面。沿翼梁定位的多个推进器可以在此配置中对其进行主动控制。在这项工作中提出了一种控制器,该控制器将自适应反馈算法与直接自适应干扰抑制(DADR)结合使用,以减轻持久性涡流诱发的干扰。给定干扰的频率,标称DADR方案会自适应地补偿其未知的幅度和相位。通过包括锁相环(PLL),扩展了该算法以适应仅粗略了解的干扰频率。 PLL改善了在线频率估计,从而使改进的控制器能够使用可实现的推力输入将涡流引起的运动降低95%以上。

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