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作 者:代宇 吴辉[1] 钟小兵[1] 赵凤 DAI Yu;WU Hui;ZHONG Xiaobing;ZHAO Feng(Southwest Institute of Technical Physics,Chengdu 610041,Sichuan,China)
出 处:《火炮发射与控制学报》2022年第6期81-87,共7页Journal of Gun Launch & Control
摘 要:炮射导弹是一种在传统炮弹中设计加入制导装置并利用传感技术来提升命中精确度的新型弹药,与传统炮弹相比,炮射导弹具有射程远、精度高、破甲能力强等优点,其旋转机制对此功不可没,但是也导致了利用图像导引头的第三代炮射导弹成像困难的问题。为保证制导精确度必须对成像系统进行抗旋转处理,同时在炮射导弹的特殊场景下,还需克服高过载、与火炮难配合和转速测量困难等问题。在分析炮射导弹抗旋转技术领域难点的基础上,结合工程实际情况,整理了目前解决炮射导弹成像问题的主要方案,分析了各种抗旋转方案的优劣势,为相关研究人员提供了思路和启发。The gun-launched missile is a new type of ammunition which incorporates guidance device into the traditional projectile and uses sensing technology to improve the accuracy of hitting. Compared with the traditional shell, the gun-launched missile has the advantages of longer range, higher accuracy and stronger armour penetrating ability. Its rotation mechanism contributes greatly to this, but it also leads to the imaging difficulty of the third generation gun-launched missile using an image seeker. In order to ensure guidance accuracy, anti-rotation processing must be carried out in the imaging system, and problems such as high overload, difficulties of matching with the gun and speed measurement must be overcome in the special situation where gun-launched missile is used. Based on the analysis of the difficulties in the field of gun-launched missile anti-rotation technology, combined with actual enginee-ring practice, this paper summarizes the main solutions for gun-launched missile imaging problems, and analyzes the advantages and disadvantages of various anti-rotation solutions, which provides some ideas and enlightenment for relevant researchers.
分 类 号:TJ413.6[兵器科学与技术—火炮、自动武器与弹药工程]
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