电光与控制, 2022, 29 (9): 22, 网络出版: 2022-10-16  

考虑目标主动防御的空地弹药微分对策制导

Differential Game Guidance of Air-to-Ground Ammunition Considering Active Defense Target
作者单位
北京信息科技大学高动态导航技术北京市重点实验室, 北京 100000
摘要
针对攻击弹如何在地面目标发射防御弹的情况下对目标进行有效打击的问题, 建立了三方博弈交战运动学模型, 构造了融合脱靶量和需用过载的目标函数, 提出了一种考虑一阶自动驾驶仪动力学的微分对策制导律。在防御弹采用三点法制导拦截的前提下, 分别对攻击弹以比例导引和微分对策制导的制导策略进行仿真验证, 最后通过分析过载约束和终端条件证明了所提方法的有效性。
Abstract
Aiming at the problem of how the attacking missile strikes the ground target effectivelywhich defends the attacking missile by launching defensive missilea three-body game engagement kinematics model is establishedan objective function integrating miss distance and required acceleration is constructed and a differential game guidance law considering first-order kinetics autopilot is proposed.On the premise of three-point guidance and interception of defense missilethe guidance strategies of proportional guidance and differential game guidance of attack missile are simulated and verified respectively.Finallythe effectiveness of the proposed method is proved by analyzing acceleration constraints and terminal conditions.
参考文献

[1] ODEKUNLE AGAO WDAVARI M Net al.Reinforcement learning and non-zero-sum game output regulation for multi-player linear uncertain systems[J].Automatica2020112.doi:10.1016/j.automatica.2020.108672.

[2] 韩楠,罗建军,柴源.多颗微小卫星接管失效航天器姿态运动的微分博弈学习控制[J].中国科学:信息科学,2020,50(4):588-602.

[3] 张浩,张奕群,张鹏飞.拦截主动防御目标的微分对策制导律[J].系统工程与电子技术,2021, 43(5): 1335-1345.

[4] SHIMA T.Optimal cooperative pursuit and evasion strategies against a homing missile[J].Journal of Guidance Controland Dynamics201134(2):414-425.

[5] WEISS MSHIMA TCASTANEDA Det al.Combined and cooperative minimum-effort guidance algorithms in an active aircraft defense scenario[J].Journal of Guidance Control and Dynamics201740(5):1241-1254.

[6] GARCIA ECASBEER D WPACHTER M.Optimal target capture strategies in the target-attacker-defender differential game[C]//IEEE Annual American Control Conference (ACC).MilwaukeeWI:IEEE2018:68-73.

[7] GARCIA ECASBEER D WPACHTER M.Pursuit in the presence of a defender[J].Dynamic Games and Applications20199(3):652-670.

[8] VENKATESAN R HSINHA N K.A new guidance law for the defense missile of nonmaneuverable aircraft[J].IEEE Transactions on Control Systems Technology201523(6):2424-2431.

[9] 于飞,李擎,张昊.追逃定性微分对策中界栅的确定[J].电光与控制,2018,25(5):84-87,114.

[10] 车竞, 郑凤麒.基于微分对策的追逃对抗仿真[J].飞行力学,2014,32(4):372-375.

[11] 张士熊,刘新学,李斌,等.基于微分对策的拦截末段突防导弹机动突防制导律研究[J].导弹与航天运载技术,2015,1(2):81-84,92.

[12] 赵琳,周俊峰,刘源,等.三维空间“追逃防”三方微分对策方法[J].系统工程与电子技术, 2019, 41(2): 322-335.

[13] SHIMA TGOLAN O M.Linear quadratic differential games guidance law for dual controlled missiles[J].IEEE Transactions on Aerospace and Electronic Systems200743(3):834-842.

[14] 郭志强, 周绍磊.多弹协同微分对策制导律研究[J].兵器装备工程学报,2019,40(5):21-25.

[15] 郭志强,周绍磊,于运治.拦截机动目标的范数型协同微分对策制导律[J].计算机仿真,2020,37(3):23-26.

[16] 郭志强,孙启龙,周绍磊,等.主动防御飞行器的范数型微分对策制导律[J].北京航空航天大学学报,2019,45(9):1787-1796.

[17] 丁一波,毛伟,王小刚,等.三体追逃攻防博弈分析与新型拦截制导律研究[J].宇航总体技术,2018,2(6):10-18.

[18] SUN Q LQI N MXIAO L Xet al.Differential game strategy in three-player evasion and pursuit scenarios[J].Journal of Systems Engineering and Electronics 201829(2):352-366.

[19] 王亚帆,周韬,陈万春,等.基于脱靶量级数解的最优机动突防策略[J].北京航空航天大学学报,2020,46(1): 159-169.

[20] 陈泽宏,钟继鸿,赵宏宇,等.基于扩张状态观测器的有限时间收敛制导律[J].空天防御,2019,2(3):25-30.

[21] 刘念.不确定性系统的微分对策求解及其在飞行器控制中的应用[D].南京: 南京航空航天大学,2017.

李俊贤, 范军芳. 考虑目标主动防御的空地弹药微分对策制导[J]. 电光与控制, 2022, 29(9): 22. LI Junxian, FAN Junfang. Differential Game Guidance of Air-to-Ground Ammunition Considering Active Defense Target[J]. Electronics Optics & Control, 2022, 29(9): 22.

关于本站 Cookie 的使用提示

中国光学期刊网使用基于 cookie 的技术来更好地为您提供各项服务,点击此处了解我们的隐私策略。 如您需继续使用本网站,请您授权我们使用本地 cookie 来保存部分信息。
全站搜索
您最值得信赖的光电行业旗舰网络服务平台!