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Multibody Modelling of Wave Energy Converters Using Pseudo-Spectral Methods With Application to a Three-Body Hinge-Barge Device

机译:使用伪谱方法的波能转换器的多体建模及其在三体铰链-驳船设备中的应用

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Multibody wave energy converters are composed of several bodies interconnected by joints. Two different formulations are adopted to describe the dynamics of multibody systems: the differential and algebraic equations (DAEs) formulation, and the ordinary differential equations (ODEs) formulation. While the number of variables required for the description of the dynamics of a multibody system is greater in the DAE formulation than in the ODE formulation, the ODE formulation involves an extra computational effort in order to describe the dynamics of the system with a smaller number of variables. In this paper, pseudo-spectral (PS) methods are applied in order to solve the dynamics of multibody wave energy converters using both DAE and ODE formulations. Apart from providing a solution to the dynamics of multibody systems, pseudo-spectral methods provide an accurate and efficient formulation for the control of multibody wave energy converters. As an application example, this paper focuses on the dynamic modeling of a three-body hinge-barge device, where wave-tank tests are carried out in order to validate the DAE and ODE models against experimental data. Comparison of the ODE and DAE PS methods against a reference model based on the straightforward (Runge-Kutta) integration of the equations of motion shows that pseudo-spectral methods are computationally more stable and require less computational effort for short time steps.
机译:多体波能转换器由多个通过关节相互连接的物体组成。采用两种不同的公式描述多体系统的动力学:微分和代数方程(DAE)公式以及常微分方程(ODE)公式。尽管描述多体系统动力学所需的变量数量在DAE公式中要比在ODE公式中要大,但ODE公式需要付出额外的计算努力才能用较少的数量来描述系统的动力学。变量。本文使用伪谱(PS)方法来解决使用DAE和ODE公式的多体波能量转换器的动力学问题。除了为多体系统的动力学提供解决方案之外,伪谱方法还为控制多体波能量转换器提供了准确而有效的公式。作为一个应用示例,本文着重于三体铰链-驳船设备的动态建模,其中进行了波箱测试,以针对实验数据验证DAE和ODE模型。基于运动方程的直接(Runge-Kutta)积分,将ODE和DAE PS方法与参考模型进行比较,结果表明伪谱方法在计算上更稳定,并且在较短的时间步中所需的计算量更少。

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