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Maneuvering simulation for water-jet propulsion unmanned surface vehicle

机译:喷水推进无人水面飞行器的操纵仿真

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According to the characteristic of unmanned surface vehicle(USV) based on water-jet propulsion, four-degree of freedom maneuvering motion equation was established. External forces acting on USV were divided into gravity, buoyancy, inertial hydrodynamic force, viscous hydrodynamic force, dynamic lift force and water-jet force. Momentum theorem was used to establish the model of the water-jet propulsion. With the mathematic model and USV shape model, the physical simulation model of USV is programmed by VC++6.0 in association with Vega. Finally, simulation experiments were done in different initial conditions. Results show that the proposed motion model can predict the maneuverability of USV.
机译:根据基于水射流推进的无人水面舰艇的特点,建立了四自由度机动运动方程。作用在USV上的外力分为重力,浮力,惯性流体动力,粘性流体动力,动态升力和水喷射力。动量定理被用来建立喷水推进的模型。通过数学模型和USV形状模型,USVC的物理仿真模型由VC ++ 6.0以及Vega进行编程。最后,在不同的初始条件下进行了仿真实验。结果表明,所提出的运动模型可以预测USV的机动性。

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