Investigation of the need to use the variable value of the ballistic coefficient when modeling the trajectory of the bullet in the shooter simulator

IF 0.3 Q4 MATHEMATICS
S. F. Egorov, A. Y. Vdovin
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引用次数: 0

Abstract

. When developing electronic shooting simulators for manual automatic weapons that do not use ammunition, it is necessary to achieve the maximum realistic modeling of the bullet flight path for each shot taking into account a set of factors. Traditionally, a system of differential equations of outer ballistics is used in modeling the trajectory. The use of a constant value of the ballistic coefficient in such a mathematical model does not allow to achieve high accuracy of modeling the trajectory for such important for solving the “task of the meeting” parameters as complete flight time and excess of the trajectory for all targeted range of small arms. The initial values in the mathematical model based on the system of differential equations of the outer ballistic are the casting angle (depends on the settings of the sight), the initial speed and the ballistic coefficient of the bullet, and such parameters as the current excess, range, time, speed and direction are calculated. Estimates of the errors of the calculation of the coordinates of the ballistic trajectory at various approaches to the use of the value of the ballistic coefficient are given. It is concluded that at the moment when modeling the flight trajectory of the bullet, simplification based on the use of a constant value of the ballistic coefficient is quite justified but with the relevant requirements of the tactical and technical task the study of ways to increase the accuracy of the trajectory modeling will become relevant. One of these paths is using the value of the ballistic coefficient, depending on the casting angle proposed in this article.
研究了在射击模拟器中对子弹的弹道进行建模时需要使用弹道系数的可变值
. 在开发不使用弹药的手动自动武器的电子射击模拟器时,需要考虑一系列因素,实现每次射击子弹飞行轨迹的最大逼真建模。传统上,外弹道的微分方程组是用来建立弹道模型的。在这种数学模型中使用弹道系数的恒定值,对于解决轻武器所有目标射程的完整飞行时间和弹道超出等重要参数的“相遇任务”,不能实现弹道建模的高精度。基于外弹道微分方程组的数学模型中的初始值为弹丸的投射角(取决于瞄准具的设置)、初始速度和弹道系数,并计算出剩余电流、射程、时间、速度和方向等参数。给出了利用弹道系数值计算弹道坐标的各种方法的误差估计。结果表明,在对子弹飞行轨迹进行建模时,采用弹道系数定值的简化方法是合理的,但随着战术技术任务的要求,研究提高弹道建模精度的方法是有必要的。其中一个路径是使用弹道系数的值,这取决于本文中提出的铸造角度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
0.70
自引率
0.00%
发文量
35
审稿时长
38 weeks
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