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STUDY ON ATTITUDE CONTROL OF A CABIN-SUSPENDED CATAMARAN BY USING A DOUBLE-LOOP CONTROL SYSTEM

机译:双环控制系统对客舱悬挂双体船姿态控制的研究

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A series of cabin-suspended ships, named Wave Harmo-nizer, has been developed since 2008. The model ship consists of cabin part, hull part and conjunction part which is mounted in-between the cabin and the hull. The possibility and feasibility of introducing suspensions into small vessels are investigated. Effectiveness evaluations are made in two aspects: motion reduction of the cabin and wave energy harvesting through the oscillating cabin. According to the research results obtained in 2015 and 2016, it was found that the deck of the cabin may bear obvious inclination while weights were loading or unloading from it. Moreover, in relative long waves, the effectiveness of the motion reduction of the skyhook controller was insufficient. To solve those problems, an attitude control strategy is proposed. It is adopted as an outer-loop of the existing controller. Inclination sensors are employed to collect the rotational angle of the cabin in terms of pitch and roll. After finishing the design and construction of the double-loop control system, open loop tests are carried out in dry and wet conditions. The chain mechanism of the ship is investigated. Then a bench test is operated to validate the control concept and performance of the double-loop control system. Finally, tank tests are implemented to examine the inclination reduction of the cabin at regular head waves. In this paper, the development of the double-loop control system is described, experimental results are demonstrated with respect to the heave and pitch motion reduction of the cabin at the condition of with/without the outer control loop. It shows that the inclination reduction at the loading/unloading condition and the walking-on-deck condition are significant. However, in waves the effectiveness is not clearly verified. It suggests that the influence of the apparent gravity on the inclination measurement in waves should be investigated and solutions to accurately detect the inclination of the cabin should be sought.
机译:自2008年以来,已经开发了一系列名为Wave Harmo-nizer的船舱悬吊船。该模型船由安装在船舱和船体之间的船舱部分,船体部分和连接部分组成。研究了将悬浮液引入小型容器的可能性和可行性。有效性评估从两个方面进行:机舱的运动减少和通过振荡机舱的波能收集。根据2015年和2016年获得的研究结果,发现机舱甲板可能在配重加载或卸载时出现明显的倾斜。此外,在相对长的波浪中,天钩控制器的运动减小的有效性不足。为了解决这些问题,提出了一种姿态控制策略。它被用作现有控制器的外环。倾角传感器用于收集俯仰和侧倾方面的驾驶室旋转角度。完成双环控制系统的设计和构造后,在干燥和潮湿条件下进行开环测试。研究了船舶的链条机制。然后进行台架试验以验证双环控制系统的控制概念和性能。最后,进行油箱测试,以检查船首在常规头波下的倾角减小。本文描述了双环控制系统的发展,在有/无外控制环的情况下,关于机舱的升沉和俯仰运动降低的实验结果得到了证明。结果表明,在装卸条件和甲板上行走条件下的倾角减小是显着的。但是,在波浪中,有效性尚未得到明确验证。它建议应研究表观重力对波浪中倾角测量的影响,并应寻求精确检测机舱倾角的解决方案。

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