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面向典型任务的有人/无人机协同效能评估 总被引:1,自引:0,他引:1
有人/无人机协同作战是C4ISR体系下的一种重要形式。本文以有人/无人机协同执行典型任务为研究背景,针对构建可靠、全面的有人/无人机协同效能理论评估方法的问题展开深入研究。首先分析了未来有人/无人机的协同模式和运用规则;然后采用协同系统综合指数模型,在单机能力模型的基础上,提出了一种有人/无人机编队协同效能评估方法;最后基于Xsim仿真系统平台在典型任务下,通过针对确定机型的多种编队组合仿真推演,将协同效能仿真结果与理论计算结果进行分析对比,协同效能排序的一致性验证了该理论评估方法具有一定的可靠性与可用性。可以预见,未来战争有人/无人机的协同作战将被广泛应用。 相似文献
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分析了无人作战飞机在各国的研究及使用情况,给出了有人/无人机协同作战指挥控制系统的结构,按照空间位置和主要完成任务的不同,将系统分为有人机、无人机两个平台,介绍了各平台的组成部分及相应的功能,归纳出协同作战所需要解决的关键技术:交互控制技术、协同态势感知、协同目标分配、协同航路规划技术、毁伤效能评估技术及智能决策技术,并且给出了一个在典型作战任务想定下的作战及信息处理流程.最后对无人作战飞机未来的发展方向进行了展望. 相似文献
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针对有人机动雷达/无人机集群(manned mobile radar/unmanned aerial vehicle cluster,MMR/UAVC)编队指挥控制系统结构设计问题进行了研究。以未来无人机蜂群探测任务为背景,提出MMR/UAVC协同探测作战模式,结合编队组织结构和作战流程,对指挥控制系统总体设计提出具体要求。在此基础上,设计了包括决策规划层、协同控制层和效能评估层的递阶式指挥控制系统结构,概括了各层次主要功能与逻辑关系。对指挥控制系统的关键模块和支撑技术进行了分析。 相似文献
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联合作战概念的出现和无人机多任务使命的实际运用,使得无人机联合作战成为世界各国研究发展的重点。基于协同作战和联合作战的内在联系及国内多无人机协同作战有关理论上的研究情况,分析了无人机协同试飞试验的条件和主要特点,总结归纳了无人机协同试飞试验的主要内容,提出了无人机编队的设计依据和关键问题,介绍了集中式、集散式、分布式控制的基本概念,论述了3种控制模式下的无人机协同试飞试验的实现方法和各控制模式之间的关系。 相似文献
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提出了智能化作战的基本概念,从作战空间、时间、感知、决策、打击、体系等6个方面分析其主要特征,辨析其制胜机理,对指挥控制提出新的要求。面向指挥端和平台端作战,分析人机共生对抗作战、有人/无人协同作战、无人自主作战、无人集群协同作战等4种典型智能化作战样式的作战流程、制胜的关键要素以及指挥控制能力需求,综合提出了智能指挥控制关键技术体系,为未来智能化指挥信息系统发展提供牵引。 相似文献
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《防务技术》2020,16(1):150-157
A formation model of manned/unmanned aerial vehicle (MAV/UAV) collaborative combat can qualitatively and quantitatively analyze the synergistic effects. However, there is currently no effective and appropriate model construction method or theory, and research in the field of collaborative capability evaluation is basically nonexistent. According to the actual conditions of cooperative operations, a new MAV/UAV collaborative combat network model construction method based on a complex network is presented. By analyzing the characteristic parameters of the abstract network, the index system and complex network are combined. Then, a method for evaluating the synergistic effect of the cooperative combat network is developed. This method provides assistance for the verification and evaluation of MAV/UAV collaborative combat. 相似文献
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低慢小无人机具有小型化、红外与雷达暴露征候小、飞行高度低、飞行轨迹不定以及购买使用几乎无门槛等特征,给当前全球军事区域和军事行动安全带来了新的挑战。本文首先分析了世界主要国家对低慢小无人机的界定、国内外管控情况和相关威胁事件;然后,从低慢小无人机的侦察袭击能力、军事区域现有安防措施和低慢小无人机对军事区域进行侦察的相关案例入手,讨论了低慢小无人机对军事区域的侦察袭击的威胁;最后从政策制度、营区部署与隐蔽伪装以及反制措施配置三方面对军事区域防低慢小无人机侦察袭击的手段与措施进行了分析和研究,重点就机动性、经济性、技术难度、可操作性、反应速度、打击效果、能否对抗集群目标以及适用场合等方面对当前各种反无人机的干扰、驱离、毁坏措施进行了对比。 相似文献
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《防务技术》2022,18(9):1697-1714
To solve the problem of realizing autonomous aerial combat decision-making for unmanned combat aerial vehicles (UCAVs) rapidly and accurately in an uncertain environment, this paper proposes a decision-making method based on an improved deep reinforcement learning (DRL) algorithm: the multi-step double deep Q-network (MS-DDQN) algorithm. First, a six-degree-of-freedom UCAV model based on an aircraft control system is established on a simulation platform, and the situation assessment functions of the UCAV and its target are established by considering their angles, altitudes, environments, missile attack performances, and UCAV performance. By controlling the flight path angle, roll angle, and flight velocity, 27 common basic actions are designed. On this basis, aiming to overcome the defects of traditional DRL in terms of training speed and convergence speed, the improved MS-DDQN method is introduced to incorporate the final return value into the previous steps. Finally, the pre-training learning model is used as the starting point for the second learning model to simulate the UCAV aerial combat decision-making process based on the basic training method, which helps to shorten the training time and improve the learning efficiency. The improved DRL algorithm significantly accelerates the training speed and estimates the target value more accurately during training, and it can be applied to aerial combat decision-making. 相似文献
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Ralph Rotte 《African Security Review》2016,25(1):85-94
While unmanned aerial vehicles (UAVs) have become a standard element of modern armed forces, African countries have been reluctant to acquire remotely piloted aircraft for military purposes until recently. This is mainly due to a lack of industrial capabilities and, for military purposes so far, procurement policies that have concentrated on small arms and light weapons, more prestigious armoured vehicles and combat aircraft. Moreover, counter-insurgency strategies in Africa tend to focus on manoeuvre warfare, co-opting rebels or fighting them using armed proxies. As a consequence, international counterterrorism operations against fanatical and reckless groups like al-Qaeda in the Islamic Maghreb and Boko Haram in sub-Saharan Africa are characterised by a strong dependence on Western forces providing UAV-based reconnaissance and, in some cases for the United States, military strikes by drones. This essay reviews some of the incentives and problems of the use of UAVs in the African context. Given the geographical and military conditions of asymmetric warfare in Africa, and potential problems concerning international law, ethical aspects of the use of arms, and civil–military relations notwithstanding, it is argued that African security forces should develop their own UAV capabilities by intensifying their cooperation with Western armed forces. 相似文献
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大量无人机和巡飞弹的参战成为亚美尼亚与阿塞拜疆在纳卡地区持续四十多天的冲突的焦点,引发世界各国对无人机作战应用的关注。本文回顾了冲突过程,对比了两国战损情况,介绍了主要参战无人机的技术指标与性能优势。无人机在冲突中能够实时获取高清战场图像,发挥情报侦察优势,对重点军事目标进行精准而有效的打击,发挥了较高的作战效能;同时,采取灵活高效的诱饵探测、饱和攻击以及心理威慑等战术,能够进一步提升无人机作战能力。通过分析纳卡冲突中无人机在性能、体系运用方面的不足,本研究提出应根据不同作战需求,在低烈度战争中发挥无人机性价比优势,现代空中作战开展近距支援作战,面向未来战争要在目标识别等方面发展智能信息处理技术,结合无人机不同功能构建新型无人机战术与作战体系,以实现无人机智能化作战。 相似文献