1 |
魏群烁, 于澎. 美军"穿透性制空"作战概念的分析与应对[J]. 航天电子对抗, 2023, 39(2): 61-64.
|
|
WEI Qunshuo, YU Peng. Analysis and Response to the "Penetrating Counter Air" Operational Concept of the US Military[J]. Aerospace Electronic Warfare, 2023, 39(2): 61-64.
|
2 |
郭涛, 陈朝, 程瀚, 等. 美军的2030年制空优势项目——“下一代空中主宰”(NGAD)项目发展启示[J]. 航天电子对抗, 2022, 38(5): 50-53, 64.
|
|
GUO Tao, CHEN Zhao, CHENG Han, et al. Development of Next-Generation Air Dominance Project of U.S. Military for Air Superiority 2030[J]. Aerospace Electronic Warfare, 2022, 38(5): 50-53, 64.
|
3 |
王悦, 张少卿, 王言伟, 等. 面向智能空战的它机协同试飞验证方法[J]. 导航定位与授时, 2022, 9(5): 91-99.
|
|
WANG Yue, ZHANG Shaoqing, WANG Yanwei, et al. Cooperative Test Flight Platform Verification Method for Intelligent Air Combat[J]. Navigation Positioning and Timing, 2022, 9(5): 91-99.
|
4 |
李磊. 国外典型有人机/无人机协同作战项目发展分析[J]. 无人系统技术, 2020, 3(4): 83-90.
|
|
LI Lei. Development Analysis of Typical Manned/Unmanned Aerial Vehicle Collaborative Operations Projects Abroad[J]. Unmanned Systems Technology, 2020, 3(4): 83-90.
|
5 |
杨佳会. AI!美空军研究实验室首次实现智能软件控制XQ-58A无人机[EB/OL].[2020-08-06].. .
|
6 |
李飞, 王世梅, 吕永健, 等. 智能化对未来空中作战的重塑——有人无人协同空中作战制胜机理[J]. 军事文摘, 2022(7): 20-24.
|
|
LI Fei, WANG Shimei, Yongjian LÜ, et al. The Reshaping of Future Air Operations by Intelligence: the Winning Mechanism of Collaborative Air Operations Between Humans and Unmanned Forces[J]. Military Digest, 2022(7): 20-24.
|
7 |
张涛, 李清, 张长水, 等. 智能无人自主系统的发展趋势[J]. 无人系统技术, 2018, 1(1): 11-22.
|
|
ZHANG Tao, LI Qing, ZHANG Changshui, et al. Current Trends in the Development of Intelligent Unmanned Autonomous Systems[J]. Unmanned Systems Technology, 2018, 1(1): 11-22.
|
8 |
张旭东, 吴利荣, 肖和业, 等. 由美军作战概念出发的有人机/无人机智能协同作战解析[J]. 无人系统技术, 2020, 3(4): 91-96.
|
|
ZHANG Xudong, WU Lirong, XIAO Heye, et al. Analysis on Concept of Intelligent Cooperative Combat of Manned/Unmanned Aerial Vehicle Evolving from the Combat Concept of American[J]. Unmanned Systems Technology, 2020, 3(4): 91-96.
|
9 |
王超磊, 樊会涛. 美军新型制空作战概念研究[J]. 航空兵器, 2022, 29(3): 8-13.
|
|
WANG Chaolei, FAN Huitao. Research on New Air Combat Concepts of US Military[J]. Aero Weaponry, 2022, 29(3): 8-13.
|
10 |
张佳琦, 曹毅. 穿透性制空作战建模仿真研究[J]. 指挥控制与仿真, 2022, 44(5): 112-116.
|
|
ZHANG Jiaqi, CAO Yi. Research on Modeling and Simulation Related to the Penetrating Counter Air[J]. Command Control & Simulation, 2022, 44(5): 112-116.
|
11 |
李铭浩, 毕文豪, 张安, 等. 穿透性制空下无人飞行器发射母机作战体系及关键技术[J]. 系统仿真学报, 2022, 34(9): 1920-1932.
|
|
LI Minghao, BI Wenhao, ZHANG An, et al. Unmanned Air Vehicles Launching Aircraft Combat System and Key Technologies for Penetrating Counterair[J]. Journal of System Simulation, 2022, 34(9): 1920-1932.
|
12 |
王红军, 王龙涛, 刘振兴. 复杂电磁环境舰艇电子对抗仿真系统研究[J]. 指挥控制与仿真, 2016, 38(2): 80-83.
|
|
WANG Hongjun, WANG Longtao, LIU Zhenxing. Research on EW Simulation System for Complex Electromagnetic Environment[J]. Command Control & Simulation, 2016, 38(2): 80-83.
|
13 |
王枭, 王峰辉, 孙其峰. 联合作战中若干种典型的电子对抗行动[J]. 电子信息对抗技术, 2019, 34(4): 65-69.
|
|
WANG Xiao, WANG Fenghui, SUN Qifeng. Several Typical of Electronic Countermeasure Operations in Jointed Operation[J]. Electronic Information Warfare Technology, 2019, 34(4): 65-69.
|
14 |
杨斌. 空中分布式作战概念及关键技术分析[J]. 电讯技术, 2022, 62(6): 826-835.
|
|
YANG Bin. Concepts and Key Technology Analysis for Air Distributed Operations[J]. Telecommunication Engineering, 2022, 62(6): 826-835.
|