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作 者:狄凌松 宋海博 DI Lingsong;SONG Haibo(Unit 94259,Yantai 265607,China)
出 处:《国防科技》2021年第6期93-98,共6页National Defense Technology
摘 要:根据当前地空导弹武器系统受干扰吊舱和反辐射导弹威胁导致其作战能力下降的作战实践,本文首先提出了一种可有效打击进犯之敌、保全自身的侧击战术;其次,对该侧击战术进行军事建模,分析了飞行器从开始转弯到照射制导雷达进入其攻击范围期间,飞行器速度、攻击角度范围、转弯时的坡度角及航线与雷达间的航路捷径等因素对飞行器转弯时间造成的影响,并结合防空作战过程、避开空中威胁相关因素,给出了照射制导雷达辐射时机的标准;最后提出了确保侧击战术成功运用应的意见建议,并根据其操作难度指出人工智能运用于军事领域的必要性。希冀本研究能够为地面防空兵应对干扰吊舱和反辐射导弹的侧击战术提供一定理论参考。Given that prevalent Air Defense Missile such as SAM weapon systems can be interfered with through jamming pods,and the threat posed by Anti-radiation Missiles(ARMs)degrades their combat capability,this paper proposes side-attack tactics to thwart the invading enemy and ensure preservation.The military modeling of the side-attack tactics is carried out,and the effects of aircraft speed,range of attack angles,slope,short route between flight path and radar on time it takes for the aircraft to turn from the beginning of the turn until the radar is within the aircraft’s range of attack are analyzed.By combining air defense operations while avoiding factors that enhance aerial threat,the radiation timing standard of an irradiation guidance radar is given.We also offer suggestions to ensure the successful application of side-attack tactics,and point out the need for using AI in military applications to ease operational difficulty.
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