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H_(infinity) robust control technology applied to the design of a combined steering/stabiliser system for warships

机译:H_(INFINITY)鲁棒控制技术适用于舰船组合转向/稳定系统的设计

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The role of the Navy creates the requirement for modem warships to be able to operate effectively in the most severe of weather and sea conditions. Wave induced roll motions in ship operation can seriously degrade the perofrmance of mechanical and personnel effectiveness. In order to alleviate roll motions, most warships are equipped with fin stabilisers. Rudders can also generate roll motions which can be harnessed to function in congress with the fins to accrue enhanced levels of roll stabilisation. An integrated rudder and fin stabilisation control strategy is proposed. Rudder roll controllers and autopilots are devleoped using the H_(infinity) optimisation technique and their performance compared with the classical counterparts. This integrated control philosophy is simulated to quantify the performance of the designed controllers. The interaction present between the roll and yaw control loops is also quantified. It is concluded that the performance of the H_(infinity) RRS controller and autopilot is superior to that of the classical type. The level of interaction between the two loops can be suitably modified by varying the performance weighting functions. Existing sensors and actuators can be utilised to achieve rudder roll stabilisation. The proposed integrated strategy gives the command the flexibility to choose the mode by which stabilisation is achieved by the selection of the appropriate roll controller.
机译:海军的作用为调制解调器战舰的作用创造了能够在最严重的天气和海洋状况中有效运行的要求。船舶运行中的波浪诱导辊运动可以严重降低机械和人才有效性的杂项。为了减轻滚动运动,大多数战舰都配有鳍稳定剂。舵手还可以产生辊式运动,可以利用翅片在国会中使用鳍片,以赋予增强的卷稳定水平。提出了一种集成的方向舵和鳍稳定控制策略。使用H_(INFINITY)优化技术及其性能与经典同行相比,舵辊控制器和自动驾驶仪进行了斜坡。模拟该综合控制理念以量化设计控制器的性能。还量化了卷筒和偏航控制环之间的相互作用。结论是,H_(INFINITY)RRS控制器和自动驾驶仪的性能优于经典类型的性能。通过改变性能加权函数可以适当地修改两个环之间的相互作用水平。现有的传感器和致动器可用于实现方向舵卷稳定。所提出的集成策略使命令能够灵活地选择通过选择适当的滚动控制器来实现稳定的模式。

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