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Design ride control system using two stern flaps based 3 DOF motion modeling for wave piercing catamarans with beam seas

机译:基于梁刺穿梁海岸的三处运动模型设计骑行控制系统3 DOF运动模型

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摘要

A ride control system (RCS) based linear quadratic regulator (LQR) and genetic algorithm (GA) design is presented, to reduce the heave, roll and pitch motion (three degrees of freedom motion (3 DOF motion)) of the wave piercing catamarans (WPC) in beam waves. A detailed 3 DOF ride control model which consists of the coupling and decoupling relationships between longitudinal and transverse motion is proposed for the WPC vessel. And the complex hydrodynamic coefficients and disturbances induced by beam waves are analyzed. Moreover, two stern flaps are designed for the system in the way of alternate flapping. In the controller design, the LQR method based on GA method is adopted to reduce the 3 DOF motion of the ship. Depending on the robust search mechanism and global optimum of GA, weighting parameters can be obtained to calculate the desired gain. Finally, the motion reduction and motion sickness incidence (MSI) results demonstrate the feasibility and effectiveness of the proposed controller, and the comfort of passengers and crews can also be improved.
机译:提出了基于乘坐控制系统(RCS)的线性二次调节器(LQR)和遗传算法(GA)设计,以减少波刺穿双体船的波浪,卷和俯仰运动(三度自由运动(3 DOF运动)) (WPC)在光束波中。为WPC容器提出了一种由纵向和横向运动之间的耦合和去耦关系组成的详细的3 DOF乘坐控制模型。分析了由梁波引起的复杂的流体动力系数和扰动。此外,两个船尾襟翼设计用于替代拍打的系统。在控制器设计中,采用基于GA方法的LQR方法来减少船舶的3个DOF运动。根据稳健的搜索机制和GA的全局最优,可以获得加权参数来计算所需的增益。最后,运动减少和运动疾病发病率(MSI)结果表明了所提出的控制器的可行性和有效性,以及乘客和船员的舒适性也可以得到改善。

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