Multiple Control Surface Coordinated Allocation Strategy for Hovercraft Sailing on Polar Region

Chen Wu, Le Zha, Shihai Lv, Song Gao
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Abstract

In order to reduce sideslip and tail flick for Polar Region Hovercraft on snow and ice layer, a multiple control surface coordinated distributed allocation strategy with air propeller, air rudder and bow nozzle is proposed. First of all, a mathematical model for the maneuverability of the hovercraft traveling on ice surfaces is established, and the tail swing characteristics of hovercrafts traveling on ice and snow surfaces are obtained. Then multi-surface coordinated control allocation is realized with air propeller for speed control, air rudder for heading control, and bow nozzle for sidelip control. Finally, simulations for hovercraft turning on ice surfaces are carried out to valid the effectiveness of the control allocation strategy.
极地气垫船航行多控制面协调分配策略
为了减少极地气垫船在冰雪层上的侧滑和尾弹现象,提出了一种由空气螺旋桨、空气舵和艏喷管组成的多控制面协调分配策略。首先,建立了气垫船在冰面上行驶的机动性数学模型,得到了气垫船在冰雪路面上行驶时的尾翼摆动特性。以空气螺旋桨控制速度,空气舵控制航向,船首喷管控制侧滑,实现多面协调控制分配。最后,对气垫船在冰面上转弯进行了仿真,验证了控制分配策略的有效性。
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