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Design and Simulation of an Intelligent Controller for a Missile Avoiding Airplane

机译:导弹躲避飞机智能控制器的设计与仿真

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This paper presents the design and simulation of an intelligent fuzzy controller to control the flight movement of an airplane being present in the midst of targeted missiles. The objective is to have the in-flight airplane, when an imminent collision danger occurs, move in a direction so as to avoid being hit by any of the targeted missiles. The airplane senses the environment around it, acquiring the coordinates of the missiles, and determines the nearest missile forward. The airplane, then, alters its movement direction in order to escape that missile within a specified time step. The fuzzy controller is designed off-line and it can then be used on-line. This design is a data-driven one and it is accomplished using a previously developed learning algorithm for the modeling of Mamdani-type fuzzy controllers. This is done, however, after addressing and tackling some challenging issues related to the 3-D to 2-D conversion, data derivation method and time step determination. The obtained FLC is then simulated and tested in a complex scenario and its reliability is emphasized.
机译:本文介绍了一种智能模糊控制器的设计和仿真,该控制器可以控制目标导弹中存在的飞机的飞行运动。目的是使飞行中的飞机在发生迫在眉睫的碰撞危险时,朝一个方向移动,以避免被任何目标导弹击中。飞机感知周围的环境,获取导弹的坐标,并确定最近的导弹向前。然后,飞机改变其运动方向,以便在指定的时间步中逃脱该导弹。模糊控制器是离线设计的,然后可以在线使用。该设计是一种数据驱动的设计,它是使用先前开发的用于对Mamdani型模糊控制器建模的学习算法来完成的。然而,这是在解决并解决了一些与3D到2D转换,数据推导方法和时间步长确定有关的难题之后完成的。然后在复杂的情况下对获得的FLC进行仿真和测试,并强调其可靠性。

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