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首页> 外文期刊>Renewable energy >Time-varying linear quadratic Gaussian optimal control for three-degree-of-freedom wave energy converters
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Time-varying linear quadratic Gaussian optimal control for three-degree-of-freedom wave energy converters

机译:三自由度波能转换器的时变线性二次高斯最优控制

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摘要

This paper presents a time-varying linear quadratic control for a three-degree-of-freedom (3-DoF) wave energy converter (WEC). The dynamic model for a heave-surge-pitch WEC has a linear coupling between pitch and surge modes, as well as anonlinear coupling between the heave and pitch modes that affect the pitch motion. It is observed, however, that the heave motion is decoupled from the other two modes, and that the heave effect on the pitch motion can be recognized as a time-varying stiffness. Hence it is proposed in this paper to design a time-varying linear quadratic control for the coupled pitch-surge modes. The goal is to maximize the energy harvested over a receding time horizon. Prediction of the excitation forces is needed and is obtained based an estimate of the excitation force at the current time. The latter is obtained using an extended Kalman filter. The WEC motion is assumed constrained in this study. The results show that the energy harvested using this 3-DoF WEC is about three-fold higher than the energy extracted in heave mode, depending on the sea state. The paper also shows, with proper design of the control, it is possible to exploit this coupling to harvest more energy. (C) 2019 Elsevier Ltd. All rights reserved.
机译:本文提出了一种用于三自由度(3-DoF)波能量转换器(WEC)的时变线性二次控制。升沉-喘振-音高WEC的动态模型在俯仰和喘振模式之间具有线性耦合,在升沉和俯仰模式之间具有影响俯仰运动的非线性耦合。然而,观察到,升沉运动与其他两种模式解耦,并且升沉对俯仰运动的影响可以被识别为随时间变化的刚度。因此,本文提出了一种针对耦合变桨模式设计时变线性二次控制的方法。目标是在后退的时间范围内最大化收集的能量。励磁力的预测是必要的,并且是基于当前时间的励磁力的估计而获得的。后者是使用扩展卡尔曼滤波器获得的。在本研究中假定WEC运动受约束。结果表明,根据海况,使用这种3-DoF WEC收集的能量比以升沉模式提取的能量大约高三倍。本文还显示,通过适当设计控件,可以利用这种耦合来收集更多的能量。 (C)2019 Elsevier Ltd.保留所有权利。

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