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Simulation Research on New Model of Air-to-Air Missile Attack Zone

机译:空空导弹攻击区新型模型的仿真研究

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The air-to-air missile attack zone is the key indicator for measuring air-to-air missile weapon systems. In the traditional air-to-air missile attack zone model, only when our aircraft is in the same line with the target, the missile can hit the target. The missile off-axis angle is added to make the missile hit the target at a certain angle. Firstly, the dichotomy is used to search for the boundary of the near-infrared attack zone. Secondly, the fourth-order Runge-Kutta method is used to calculate the missile trajectory to determine whether the hit condition is met. Finally, the boundary of the attack zone that satisfies the condition is calculated. The experimental simulation results show that the target entry angle is 0 degrees to 360 degrees, and the missile off-axis angle is between 0-30 degrees. When the missile off-axis angle is larger, the target entry angle is between 45 degrees and 150 degrees. The scope of the missile attack zone becomes smaller, and the range of the attack zone between 240 degrees and 360 degrees becomes larger. Simulation experiments show that even if our aircraft and the target are not in the same line, we can launch missiles, which has great application value for the pilot to decide whether to launch missile hit targets.
机译:空空导弹攻击区是测量空空导弹武器系统的关键指标。在传统的空对空导弹攻击区模型中,只有当我们的飞机与目标在同一条直线上时,导弹才能击中目标。添加导弹离轴角以使导弹以一定角度击中目标。首先,二分法用于搜索近红外攻击区域的边界。其次,采用四阶Runge-Kutta方法计算导弹弹道,确定是否满足命中条件。最后,计算满足条件的攻击区域的边界。实验仿真结果表明,目标进入角为0度〜360度,导弹离轴角为0〜30度。当导弹离轴角较大时,目标进入角在45度至150度之间。导弹攻击区域的范围变小,并且240度至360度之间的攻击区域的范围变大。仿真实验表明,即使我们的飞机与目标不在同一直线上,我们也可以发射导弹,这对于飞行员决定是否发射导弹打击目标具有重要的应用价值。

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