摘要
为研究国外精确打击武器领域发展现状并研判其发展趋势,对2023年世界主要军事国家和地区精确打击武器领域的发展进行了综述,从战略谋划、技术进展、主要活动等多个维度,深入分析了2023年美、日、澳等国家和地区精打武器领域发展趋势。分析表明:总体来看,美西方为备战高端战争,继续创新精确打击技术,推动其新一轮技术突破。出台相关战略文件;谋划精确打击技术发展,包括维持持续打击的低成本制导技术,寻求高超声速导弹变革发展的新型动力技术,以及追求精确打击高敏捷性、高机动性与协同性的新型控制、弹群协同等技术;同时在配套的组织管理体制、研发制造模式、演示验证手段等方面采取措施推进精确打击技术开发、部署和运用,加快推进精打能力变革。
In order to study the development status of foreign precision strike weapons and judge the development trends,an overview of the development of precision strike weapons in the world's major military countries and regions in 2023 is conducted,with in-depth analysis from multiple dimensions such as strategic planning,technological progress and main activities.The development trends in the field of precision weapons in the United States,Japan,Australia and other countries and regions in 2023 are summarized.Analysis shows that,overall,the foreign countries continue to innovate precision strike technology and promote a new round of technological breakthroughs in order to prepare for high-end wars.The relevant strategic documents are published.The development of precision strike technology is planned,including low-cost guidance technology to maintain sustained economic strikes,new power technologies for the revolutionary development of hypersonic missiles,and new control,missile group coordination and other technologies that pursue precision strike high agility,high mobility and coordination.At the same time,measures are taken to promote the development,deployment and application of precision strike technology in supporting organizational management systems,R&D and manufacturing models,demonstration and verification methods,so as to accelerate the transformation of precision strike capabilities.
作者
刘都群
王雅琳
郭冠宇
Liu Duqun;Wang Yalin;Guo Guanyu(Beijing HIWING Scientific and Technological Information Institute,Beijing 100074,China;Beijing Power Machinery Institute,Beijing 100074,China)
出处
《战术导弹技术》
北大核心
2024年第3期17-24,31,共9页
Tactical Missile Technology
关键词
精确打击
制导技术
推进技术
控制技术
网络化技术
高超声速技术
作战运用
数字工程
precision strike
guidance technology
propulsion technology
control technology
net⁃work technology
hypersonic technology
operational application
digital engineering