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Accuracy Improvement Capability of Advanced Projectile Based on Course Correction Fuze Concept

机译:基于课程更正引信概念的高级射弹准确性改进能力

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摘要

Improvement in terminal accuracy is an important objective for future artillery projectiles. Generally it is often associated with range extension. Various concepts and modifications are proposed to correct the range and drift of artillery projectile like course correction fuze. The course correction fuze concepts could provide an attractive and cost-effective solution for munitions accuracy improvement. In this paper, the trajectory correction has been obtained using two kinds of course correction modules, one is devoted to range correction (drag ring brake) and the second is devoted to drift correction (canard based-correction fuze). The course correction modules have been characterized by aerodynamic computations and flight dynamic investigations in order to analyze the effects on deflection of the projectile aerodynamic parameters. The simulation results show that the impact accuracy of a conventional projectile using these course correction modules can be improved. The drag ring brake is found to be highly capable for range correction. The deploying of the drag brake in early stage of trajectory results in large range correction. The correction occasion time can be predefined depending on required correction of range. On the other hand, the canard based-correction fuze is found to have a higher effect on the projectile drift by modifying its roll rate. In addition, the canard extension induces a high-frequency incidence angle as canards reciprocate at the roll motion.
机译:终端精度的提高是未来炮弹的重要目标。通常,它通常与范围扩展相关联。提出了各种概念和修改,以纠正炮弹射弹的范围和漂移,如课程更正引信。该课程更正引信概念可以为弹药准确性改进提供有吸引力和成本效益的解决方案。在本文中,已经使用两种校正模块获得的轨迹校正,其中致专用于范围校正(拖动环制动器),第二个被致专用于漂移校正(基于CANARD的校正引信)。课程校正模块的特点是空气动力学计算和飞行动态调查,以分析对射弹空气动力学参数的偏转的影响。仿真结果表明,可以提高使用这些课程校正模块的传统弹丸的冲击精度。发现拖动环制动器的强度能够进行范围校正。轨迹早期阶段的拖动制动器的部署导致大范围校正。可以根据所需的范围校正来预定校正时段时间。另一方面,通过修改其卷速,发现基于豆类的校正引信对射弹漂移具有更高的效果。另外,豆蔻酱延伸将高频入射角引起径向卷运动往复运动。

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