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作 者:程祥珍 张建新 刘红良 冯春早 段于辉 高军营 CHENG Xiangzhen;ZHANG Jianxin;LIU Hongliang;FENG Chunzao;DUAN Yuhui;GAO Junying(Unit 32391 of PLA,Guangzhou 510515,China;Jiangshan Heavy Industries Co.Ltd.,NORINCO GROUP,Xiangyang 441057,China)
机构地区:[1]32391部队,广东广州510515 [2]中国兵器工业集团江山重工研究院有限公司,湖北襄阳441057
出 处:《陆军工程大学学报》2024年第6期32-38,共7页Journal of Army Engineering University of PLA
摘 要:针对传统地雷不可移动、杀伤半径小、战后危害大等问题,提出了一种通过火箭布设的智能巡飞地雷系统概念,并基于蒙特卡洛算法建立了该巡飞地雷的作战效能分析模型,探究了布设系统的横、纵向密集度,巡飞地雷的数量、感知能力与飞行能力等因素对作战效能的影响。结果表明,较传统地雷,智能巡飞地雷作战效率大幅提升,打击概率与布雷系统射击密集度存在最佳匹配。此外,该系统作战效能受目标的机动能力,巡飞地雷的飞行速度、侦察感知范围等性能参数的影响,增大巡飞地雷的侦察感知半径、提高飞行速度有助于提升智能巡飞地雷的封控效果。研究结果能够为巡飞地雷的指标论证、方案设计、效能评估和作战运用提供技术支撑。To address the issues such as the immobility,small killing radius,and significant post-war hazards of traditional landmines,a type of intelligent loitering landmine system deployed by rockets has been proposed.The combat effectiveness analysis model of the loitering landmine was established based on the Monte Carlo algorithm,used to explore the influences of some parameters like the lateral and longitudinal firing dispersion of the rocket launcher,the quantity,the perception capability and flight capability of loitering landmines.The results indicate that compared with traditional landmines,the operational efficiency of the intelligent loitering landmine has been significantly enhanced,and there exists an optimal matching effect between the strike probability and the firing dispersion of the rocket launcher.Additionally,the combat effectiveness is affected by performance parameters such as the mobility of the target,the flight speed and perception range of the loitering landmine.Enlarging the perception radius of the loitering landmine and increasing the flight speed are conducive to improving the blocking and control effect of the intelligent loitering landmine.The findings of this paper can provide technical support for the index demonstration,scheme design,effectiveness evaluation and operational application of the loitering landmine.
关 键 词:火箭弹 巡飞地雷 作战效能 蒙特卡洛算法 密集度
分 类 号:TJ765.4[兵器科学与技术—武器系统与运用工程]
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