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Garrett Grochowski 《Defense & Security Analysis》2015,31(2):152-158
The USA is currently facing an increasingly diverse range of threats, including non-state actors, particularly violent extremist organizations attempting to do harm. The national leadership has made it clear that for the near future it will employ Special Operations Forces (SOF) as the tool of choice in short-duration, high-intensity operations that have more in common with the battle of Takur Ghar, than those with a larger footprint. It is critical then that the lessons of the past are learnt now and are applied before employing SOF in the future. This becomes especially important given the short lead-time in concert with the short-duration/high-intensity tempo of their operations. In the Battle of Takur Ghar, during Operation Anaconda, rigid adherence to the joint functions, especially clearer and more robust Command and Control (C2) and Intelligence, Surveillance, and Reconnaissance (ISR) in the planning and execution of Operation Anaconda would have yielded a better operational outcome and saved lives. With the benefit of hindsight, many things could have been done differently, but several key issues stand out. The C2 structure must include all components from the outset to synchronize effects and rapidly re-task ISR. There must be multiple communications redundancies and adequate bandwidth. Finally, all SOF, conventional and interagency capabilities must be synchronized under one task force commander with a sufficiently robust C2 infrastructure to direct the entire effort. As our nation calls on SOF at an ever-increasing rate, we must take those lessons learned and apply them to future operations. 相似文献
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敏捷性的研究是信息时代的组织研究中的重要方面。设计一种敏捷的C2组织,以保证C2组织在执行任务时能够发挥最佳性能,以达到灵活应对任务、减少资源浪费和提升作战效能的目的,这样的组织称为敏捷C2组织。本文从敏捷C2组织形式化概念模型构建开始,对敏捷C2组织的敏捷性测度中的鲁棒性的含义及其测度方法进行详细的定义和阐述,并通过实验对方法进行分析研究验证。 相似文献
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面向C4ISR系统需求开发中的仿真支持问题,将复用作为一种的C4ISR系统需求模型的构建方法,可以快速形成一个有效的领域需求模型支持系统仿真验证。本文研究了C4ISR系统需求的领域性与领域需求共性问题,在此基础上研究了C4ISR系统需求工程中的需求框架、需求本体以及需求组件等不同粒度的复用方法,分别对上述三种方法在领域应用中的不同作用进行了对比分析。 相似文献
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C/SiC复合材料发动机具有重量轻、工作温度高等优势,已成为下一代高性能发动机的重要发展方向,其中C/SiC复合材料燃烧室的强度与壁厚设计是发动机设计的关键技术之一。本文以薄壳理论和第四强度理论为基础,以环向拉伸强度为基础数据,推导了C/SiC复合材料燃烧室壁厚计算公式,并对某型号发动机燃烧壁厚进行了计算。未验证计算结果准确性,利用复合材料燃烧室试件的爆破试验对计算结果进行了验证,并对根据计算结果研制的C/SiC复合材料燃烧室进行了热试车考核验证。本文提出的研究计算方法与结果对其他C/SiC复合材料燃烧室的壁厚设计具有指导意义。 相似文献