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| Review of the Global Air and Missile Defense Weapon System Development in 2025 |
| XU Pei, CHEN Tianyu, LI Xingan, LIANG Zhuang |
| Shanghai Electro-Mechanical Engineering Institute,Shanghai 201109,China |
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Abstract In 2025, amid intensifying geopolitical confrontations and the rapid transformation of air and space offensive threats, traditional air and missile defense firepower equipment faces unprecedented penetration challenges. Particularly under combat conditions and system-of-systems empowerment, such equipment is undergoing accelerated evolution and upgrading. This paper reviews the development dynamics and technological trends of global air and missile defense firepower equipment in 2025. Firstly, it analyzes the progress in three domains: air defense, missile defense, and new-quality capabilities: across key nations and regions including the United States, Russia, Europe, and Israel. Secondly, it systematically summarizes the main characteristics in traditional equipment modernization, new-quality force development, and frontier technology exploration. Finally, it provides an assessment of global air and missile defense technological development trends, aiming to offer reference for the future construction of air and space defense capabilities.
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Received: 30 January 2026
Published: 06 May 2026
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WEI Gaole, HE Chenggang, RUAN Kaizhi, YANG Haiming. Overview of the Development of Distributed Cross-Domain Collaborative Unmanned Operations Technology[J]. Air & Space Defense, 2026, 9(3): 9-17. |
| [2] |
WANG Shuobo, SONG Dian, ZHAI Guohua. Development Status and Prospect of Intelligent Air Defense Operations Technology[J]. Air & Space Defense, 2026, 9(3): 18-25. |
| [3] |
CUI Kexin, YAO Qinglu, LI Xinjie, PAN Jun, SUI Yi. Research on Intelligent Combat Architecture Based on Cloud-Edge-End Collaboration[J]. Air & Space Defense, 2026, 9(3): 26-34. |
| [4] |
XU Qiang, HUANG Kai, MA Yuehua, MU Wenpeng, QUAN Xinyi, XU Ke, PAN Jun. Neural Network Verification Method for Automatic Target Recognition Based on Multidimensional Radar Echoes[J]. Air & Space Defense, 2026, 9(3): 148-156. |
| [5] |
WANG Huaji, SUN Liang, LEI Rongqiang, LI Jie, LIANG Xiao. Technologies for Intelligent Reconfiguration of Counter-UAV Swarm Kill-Chain[J]. Air & Space Defense, 2026, 9(2): 33-40. |
| [6] |
LI Xinjie, SU Tao, FENG An'an, ZHANG Peng. Research on Intelligent Support Technology for Weapon Equipment Systems Based on Full Life Cycle[J]. Air & Space Defense, 2026, 9(2): 80-86. |
| [7] |
LIU Jie, WANG Chuangwei. Analysis of Foreign Air and Missile Defense Development in 2025[J]. Air & Space Defense, 2026, 9(2): 87-96. |
| [8] |
LAI Wenxing, CHEN Tianyu. A Survey of Foreign Near-Space Defense Equipment Development in 2025[J]. Air & Space Defense, 2026, 9(2): 97-104. |
| [9] |
XIA Xiaojing, TANG Chuchun, YANG Chuang, SANG Chen, HUI Wenzhi. Review of Foreign Air-to-Air Missiles Development in 2025[J]. Air & Space Defense, 2026, 9(2): 105-115. |
| [10] |
SANG Chen, SHI Xinyu, CHENG Wei, WEI Liming, TANG Chuchun. Analysis and Trend Assessment of Foreign Intelligent Airborne Equipment Development in 2025[J]. Air & Space Defense, 2026, 9(2): 124-134. |
| [11] |
SHEN Tong, CHEN Jingxian, ZHONG Ping. Robustness of Radar Intelligent Recognition Models Under Adversarial Samples Attacks[J]. Air & Space Defense, 2026, 9(1): 46-51. |
| [12] |
ZHANG Yusheng, XU Yonghui, ZHOU Yuqi, DU Jiang, WEI Changan. LLM-Based Intelligent Association Between Protocol Templates and Object Models[J]. Air & Space Defense, 2025, 8(6): 94-102. |
| [13] |
ZHANG Chang, JIANG Xiaoming, YIN Xiang, TONG Yun, ZHU Yulong, ZHAO Zheng. Intelligentization Development Prospects for Missile Launching System in the Kill Web Combat Style[J]. Air & Space Defense, 2025, 8(4): 46-50. |
| [14] |
WANG Chaochen, JIANG Hongru, WANG Buli, XIA Qiaowei, ZHANG Xianchun. From Kill Chain to Kill Web: A Survey on Modeling, Evaluation, and Optimization[J]. Air & Space Defense, 2025, 8(4): 1-8. |
| [15] |
WANG Gang, YANG Ke, QUAN Wen, GUO Xiangke, ZHAO Xiaoru. Research on Construction Method of Digital-Intelligent Parallel Battlefield for Air Defense and Anti-Missile Based on Digital Twin[J]. Air & Space Defense, 2025, 8(3): 1-13. |
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