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首页> 外文期刊>Bulletin of the Polish Academy of Sciences. Technical Sciences >Effect of the mathematical model and integration step on the accuracy of the results of computation of artillery projectile flight parameters
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Effect of the mathematical model and integration step on the accuracy of the results of computation of artillery projectile flight parameters

机译:数学模型和积分步骤对炮弹飞行参数计算结果准确性的影响

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摘要

In the paper the three different mathematical models of motion of a spin-stabilized, conventional artillery projectile, possessing at least trigonal symmetry, have been introduced. The vector six-degrees-of-freedom (6-DOF) differential equations of motion are an updated edition of those published by Lieske and McCoy and are consistent with STANAG 4355 (Ed. 3). The mathematical models have been used to developing software for simulating the flight of the Denel 155mm Assegai M2000 series artillery projectile and to conduct comprehensive research of the influence of the applied model and integration step on the accuracy and time of computation of projectile trajectory.
机译:在本文中,介绍了至少具有三角对称性的自旋稳定的常规炮弹的三种不同的运动数学模型。矢量六自由度(6-DOF)运动微分方程是Lieske和McCoy发布的方程的更新版本,与STANAG 4355(Ed。3)一致。该数学模型已用于开发用于模拟Denel 155mm Assegai M2000系列火炮弹丸飞行的软件,并进行了广泛的研究,研究了应用模型和集成步骤对弹丸轨迹的准确性和时间的影响。

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