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Modeling of an airborne torpedo attack and implementation on a simulation environment

机译:机载鱼雷攻击的建模和在仿真环境下的实现

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Airborne torpedoes are effective weapons that are used against surface and subsurface entities. A carrying platform, which may be a helicopter or plane, drops the weapon with or without a parachute. After a travelling period in the air, the torpedo hits the water and penetrates through it, forming a splash and a cavity. The initial conditions for the movement of the torpedo in the water are produced as a result of velocity at the water entrance and pitch angle and resistance force generated by the water itself. Under the water, the weapon transforms through its internal phases with the aim of a possible target hit. In this work, a certain part of the developed military training simulator is given in order to investigate an airborne torpedo attack scenario. For this purpose, aircraft and torpedo dynamic models, as well as guidance and control laws, are derived; torpedo fall and water entry analyses are also performed. Simulation results are given for each model and/or analysis separately. Modules and libraries for these model simulations are integrated into the component architecture of a commercial computer-generated forces toolkit simulation engine, namely VR-Forces. An original control architecture that is able to manage a wide variety of simulation components with different infrastructures has also been realized.
机译:机载鱼雷是对付地面和地下实体的有效武器。可以是直升机或飞机的运载平台可以在有或没有降落伞的情况下放下武器。在空中飞行一段时间后,鱼雷击中水并穿透其中,形成飞溅物和空腔。鱼雷在水中运动的初始条件是由于进水口的速度,俯仰角和水本身产生的阻力而产生的。在水下,该武器通过其内部阶段进行转换,以期可能命中目标。在这项工作中,将提供已开发的军事训练模拟器的某些部分,以调查机载鱼雷的攻击情况。为此,推导了飞机和鱼雷动力学模型以及制导和控制定律。鱼雷跌落和入水分析也进行了。为每个模型和/或分析分别给出了仿真结果。这些模型仿真的模块和库已集成到商用计算机生成的力量工具箱仿真引擎(即VR-Forces)的组件体系结构中。也已经实现了一种原始控制体系结构,该体系结构能够使用不同的基础结构来管理各种仿真组件。

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