首页 | 官方网站   微博 | 高级检索  
     

基于最优机动参数的靶弹变轨研究
引用本文:毕开波,张翼飞,隋先辉.基于最优机动参数的靶弹变轨研究[J].海军航空工程学院学报,2017,32(3):284-289, 294.
作者姓名:毕开波  张翼飞  隋先辉
作者单位:大连舰艇学院导弹系,辽宁大连 116018,大连舰艇学院导弹系,辽宁大连 116018,大连舰艇学院导弹系,辽宁大连 116018
摘    要:在跃升机动、蛇行机动、摆式机动和螺旋机动4种机动的变轨通用控制指令形式基础上,以拦截弹脱靶量的大小作为评判靶弹突防效果的指标,建立了末端机动靶弹突防效果的脱靶量分析模型,并提出了上述4种形式变轨突防最优参数的设计方法。在这些最优参数的作用下,导弹靶弹的机动变轨可实现最佳的突防效果,从而提升防空导弹的实战训练效果。

关 键 词:导弹靶弹  突防效果  弹道变轨  机动参数ì

Research on the Variable Trajectory Maneuvers of Target Missiles Based on the Best Penetration Maneuvers Parameter
BI Kaibo,ZHANG Yifei and SUI Xianhui.Research on the Variable Trajectory Maneuvers of Target Missiles Based on the Best Penetration Maneuvers Parameter[J].Journal of Naval Aeronautical Engineering Institute,2017,32(3):284-289, 294.
Authors:BI Kaibo  ZHANG Yifei and SUI Xianhui
Affiliation:Department of Missile, Dalian Naval Academy, Liaoning Dalian 116018, China,Department of Missile, Dalian Naval Academy, Liaoning Dalian 116018, China and Department of Missile, Dalian Naval Academy, Liaoning Dalian 116018, China
Abstract:To solve the design problem of variable trajectory maneuver of target missiles, an integrated design model waspresented. By closely cooperating between the control signals of displacements and overloads, the integrated design modelcould make target missiles to realize the maneuver of jump trajectory, the maneuver of snake-wriggling trajectory, the ma.neuver of pendulum trajectory, the maneuver of spiral trajectory, and so on. On this basis, the penetration effect models ofvariable trajectory maneuvers of target missiles were studied. The design methods of the best penetration maneuvers param.eter were put forward. According to these parameters, target missiles could realize the best penetration effect, promote traineffect of air defense missile.
Keywords:target missile  penetration effect  variable trajectory maneuvers  maneuvers parameter
本文献已被 CNKI 等数据库收录!
点击此处可从《海军航空工程学院学报》浏览原始摘要信息
点击此处可从《海军航空工程学院学报》下载全文
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司    京ICP备09084417号-23

京公网安备 11010802026262号