Please wait a minute...
空天防御  2025, Vol. 8 Issue (2): 34-43    
0
  战略与体系研究 本期目录 | 过刊浏览 | 高级检索 |
空天防御作战体系的发展论述
张鹏1, 冯柯1, 侯林健2, 刘凯3, 宫建成1, 武雁秋1
1. 陆军工程大学 野战工程学院,江苏 南京 210007; 2. 中国人民解放军93459部队,天津 301700; 3. 安丘市退役军人事务局,山东 潍坊 262100
Discussion on the Development of Aerospace Defense Combat System
ZHANG Peng1, FENG Ke1, HOU Linjian2, LIU Kai3, GONG Jiancheng1, WU Yanqiu1
1. College of Field Operations Engineering, Army Engineering University of PLA, Nanjing 210007, Jiangsu, China; 2. Chinese People's Liberation Army 93459 Unit, Tianjin 301700, China; 3. Anqiu Veterans Affairs Bureau, Weifang 262100, Shandong, China
全文: PDF(1917 KB)  
输出: BibTeX | EndNote (RIS)      
摘要 当前,空天作战环境日趋复杂,空袭武器装备呈现远程化、高速化、精确化、无人化、隐身化、智能化和低成本等特点。为应对空天威胁快速发展的挑战,防御作战任务从防御作战飞机拓展至防御弹道导弹、巡航导弹等精确打击武器,并在作战领域、打击目标种类等方面进一步发展。面对不断演进的空天威胁,空天防御武器必然向智能化、自主化、一体化、协同化方向发展。对于空天防御作战体系的论述是装备体系发展论证中的一个课题,科学合理的体系论证,对优化作战体系、改进体系作战部署、提高体系作战效能等具有重要意义。本文通过分析空天防御作战体系的本质属性、构成、作战能力,以及空天防御作战体系的地位、作用和发展方向,对空天防御作战体系的发展趋势进行了论述。
服务
把本文推荐给朋友
加入引用管理器
E-mail Alert
RSS
作者相关文章
关键词 空天防御作战作战体系体系论述发展趋势    
Abstract:The current aerospace combat environment is becoming increasingly complex, and air strike weapons and equipment are characterised by remote, high-speed, precise, unmanned, stealth, intelligent, and low-cost capabilities. In response to the challenges posed by aerospace threats, defense combat missions have expand from defending traditional combat aircraft to defending against precision strike weapons, including ballistic missiles and cruise missiles, and further develop in terms of combat domains and target types. Faced with the constantly evolving aerospace threats, aerospace defense weapons will inevitably develop towards a systematic direction of intelligence, autonomy, integration, and collaboration. The discussion was based on the aerospace defense combat system, a topic in the development demonstration of equipment systems. Scientifically and reasonably demonstrating the system is critical for optimising the combat system, benefiting the system's deployment, and enhancing the system's combat effectiveness. By analysing and discussing the essential attributes, composition, and combat capabilities of the aerospace defense combat system, as well as its position, role, and development direction, a discourse on the development trend of the aerospace defense combat system was proposed in this paper.
Key wordsair defense operations    combat system    system discourse    development trend
收稿日期: 2024-11-05      出版日期: 2025-05-23
ZTFLH:  E 08  
基金资助:军事类研究生资助课题(JY2023C089)
作者简介: 张鹏(1993—),男,硕士,助理工程师。
引用本文:   
张鹏, 冯柯, 侯林健, 刘凯, 宫建成, 武雁秋. 空天防御作战体系的发展论述[J]. 空天防御, 2025, 8(2): 34-43.
ZHANG Peng, FENG Ke, HOU Linjian, LIU Kai, GONG Jiancheng, WU Yanqiu. Discussion on the Development of Aerospace Defense Combat System. Air & Space Defense, 2025, 8(2): 34-43.
链接本文:  
https://www.qk.sjtu.edu.cn/ktfy/CN/      或      https://www.qk.sjtu.edu.cn/ktfy/CN/Y2025/V8/I2/34

参考文献
[1] 蒋瑞琪, 徐金龙, 倪寒琦, 施星宇, 张伟, 何子述. 美军NIFC-CA杀伤链体系仿真设计与评估[J]. 空天防御, 2024, 7(5): 82-89.
[2] 何永鹏, 杨艺, 程志君, 程洋, 张陆进, 王泉. 反辐射导弹发展的挑战、现状及展望[J]. 空天防御, 2024, 7(4): 38-46.
[3] 李勇, 张顺家, 朱玉虎, 孔晓俊, 杜泽弘. 2023年美俄典型机载导弹发展动态与趋势分析[J]. 空天防御, 2024, 7(4): 30-37.
[4] 阮开智, 孙学安, 仝云, 梁硕, 徐天洋. 未来智能杀伤网构想[J]. 空天防御, 2024, 7(3): 27-33.
[5] 赵仁星, 王玲, 冯明月, 贾文通. “马赛克战”作战概念构想及对策分析[J]. 空天防御, 2021, 4(3): 48-54.
[6] 罗承昆,陈云翔,胡旭,薛丁元. 基于作战环和自信息量的装备体系贡献率评估方法[J]. 上海交通大学学报, 2019, 53(6): 741-748.
[7] 张伟.  空天防御信息体系关键技术研究[J]. 空天防御, 2018, 1(1): 13-17.
沪ICP备15013849号-1
版权所有 © 2017《空天防御》编辑部
主管单位:中国航天科技集团有限公司 主办单位:上海机电工程研究所 上海交通大学出版社有限公司