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作 者:郑振 盛沛 马蛟 ZHENG Zhen;SHENG Pei;MA Jiao(No.91129 Troops of PLA,Haikou 570311;College of Coastal Defence,Naval Aviation University,Yantai 264001)
机构地区:[1]中国人民解放军91129部队,海口570311 [2]海军航空大学岸防兵学院,烟台264001
出 处:《舰船电子工程》2023年第11期115-119,共5页Ship Electronic Engineering
摘 要:为了实现空中平台与舰船鱼雷发射系统的系统作战,提出基于空中平台与舰载系统目标几何结构联合约束分析的舰机协同鱼雷攻击全过程控制技术。建立极限定位精度下舰机协同鱼雷攻击的几何元结构模型,采用多个独立同分布的目标方位估计方法实现对鱼雷攻击的分布式目标模型构建,考虑相干分布源模型参宿,结合目标的方位信息及其它干扰源分布信息,采用空中平台与舰载系统目标几何结构联合约束控制方法实现最佳攻击参数解算,得到空中平台如无人机与目标的最优定位几何结构,根据目标观测角与机-目距离之间的关系实现对舰机协同鱼雷攻击全过程控制。仿真结果表明,采用该方法进行舰机协同的鱼雷攻击全过程控制,提高了攻击准确性和覆盖度,降低了己方损失的风险,提高了作战生存能力。In order to realize the systematic operation between aerial platform and ship torpedo launching system,the whole process control technology of ship-aircraft cooperative torpedo attack based on joint constraint analysis of aerial platform and ship-borne system target geometry structure is proposed.The geometric element structure model of ship-aircraft cooperative torpedo attack under the extreme positioning accuracy is established,and the distributed target model of torpedo attack is constructed by us⁃ing multiple independent and identically distributed target azimuth estimation methods.Considering the accommodation of coherent distributed source model,combined with the azimuth information of the target and the distribution information of other interference sources,the optimal attack parameters are calculated by using the joint constraint control method of target geometry of aerial plat⁃form and shipborne system,and the optimal positioning geometry of aerial platform such as UAV and target is obtained.According to the relationship between target observation angle and aircraft-target distance,the whole process control of ship-aircraft coopera⁃tive torpedo attack is realized.The simulation results show that this method is used to control the whole process of torpedo attack with ship-aircraft cooperation,which improves the attack accuracy and coverage,reduces the risk of own loss,and improves the combat survivability.
分 类 号:TJ63[兵器科学与技术—武器系统与运用工程]
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