舰船科学技术
艦船科學技術
함선과학기술
SHIP SCIENCE AND TECHNOLOGY
2014年
10期
78-82
,共5页
张松涛%孙明晓%梁利华%姜见龙
張鬆濤%孫明曉%樑利華%薑見龍
장송도%손명효%량리화%강견룡
穿浪双体船%T型水翼%纵向运动%垂向加速度%状态反馈H∞算法%晕船率
穿浪雙體船%T型水翼%縱嚮運動%垂嚮加速度%狀態反饋H∞算法%暈船率
천랑쌍체선%T형수익%종향운동%수향가속도%상태반궤H∞산법%훈선솔
wave piercing catamaran%T-foil%longitudinal motion%vertical acceleration%state-feedback H∞ algorithm%MSI
穿浪双体船在海洋中高速航行时,纵向运动会对其性能造成不利影响,产生的垂向加速度使乘员晕船,设备短期失效。为了解决此问题,首先建立穿浪双体船纵摇和垂荡运动模型,然后运用切片理论求解运动方程中的水动力系数,将随机海浪作为外界干扰,以T型水翼为纵向运动稳定装置,进而建立带T型水翼的穿浪双体船纵向运动模型。最后以90 m长的穿浪双体船为研究对象,利用状态反馈H∞控制策略设计控制器,对船体的纵摇和垂荡进行仿真实验。结果表明:状态反馈H∞控制器可有效地减小船舶纵向运动,降低晕船率,为减小高速船纵向运动提供可靠实用的方法。
穿浪雙體船在海洋中高速航行時,縱嚮運動會對其性能造成不利影響,產生的垂嚮加速度使乘員暈船,設備短期失效。為瞭解決此問題,首先建立穿浪雙體船縱搖和垂盪運動模型,然後運用切片理論求解運動方程中的水動力繫數,將隨機海浪作為外界榦擾,以T型水翼為縱嚮運動穩定裝置,進而建立帶T型水翼的穿浪雙體船縱嚮運動模型。最後以90 m長的穿浪雙體船為研究對象,利用狀態反饋H∞控製策略設計控製器,對船體的縱搖和垂盪進行倣真實驗。結果錶明:狀態反饋H∞控製器可有效地減小船舶縱嚮運動,降低暈船率,為減小高速船縱嚮運動提供可靠實用的方法。
천랑쌍체선재해양중고속항행시,종향운동회대기성능조성불리영향,산생적수향가속도사승원훈선,설비단기실효。위료해결차문제,수선건립천랑쌍체선종요화수탕운동모형,연후운용절편이론구해운동방정중적수동력계수,장수궤해랑작위외계간우,이T형수익위종향운동은정장치,진이건립대T형수익적천랑쌍체선종향운동모형。최후이90 m장적천랑쌍체선위연구대상,이용상태반궤H∞공제책략설계공제기,대선체적종요화수탕진행방진실험。결과표명:상태반궤H∞공제기가유효지감소선박종향운동,강저훈선솔,위감소고속선종향운동제공가고실용적방법。
When wave piercing catamaran sails at high speed in the sea, longitudinal motion has a harmful influence on its performance. The vertical acceleration makes crew seasickness and equipments out of work in a short term. In order to solve this problem, pitching and heaving motion model of wave piercing catamaran is established. Then strip theory is used to solve hydrodynamic coefficients of motion equation. Considering random ocean wave as external interference and T-foil as stability device of longitudinal motion, the longitudinal motion model of wave piercing catamaran with T-foil is established. The pitching and heaving motion is experimenting with the 90 -meters wave piercing catamaran using state-feedback H∞algorithm as controller. The results show that state-feedback H∞ controller could reduce the longitudinal motion of the ship and the rate of seasickness effectively. This paper has provided a reliable and practical method to reduce the longitudinal motion of wave piercing catamaran.