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Multidisciplinary Model-Based Engineering for Laser Weapons Systems: Recent Progress

机译:基于多学科模型的激光武器系统工程:最近进展

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We are working to develop a comprehensive, integrated software framework and toolset to support model-based engineering (MBE) of laser weapons systems. MBE has been identified by the Office of the Director, Defense Science and Engineering as one of four potentially "game-changing" technologies that could bring about revolutionary advances across the entire DoD research and development and procurement cycle. To be effective, however, MBE requires robust underlying modeling and simulation technologies capable of modeling all the pertinent systems, subsystems, components, effects, and interactions at any level of fidelity that may be required in order to support crucial design decisions at any point in the system development lifecycle. Very often the greatest technical challenges are posed by systems involving interactions that cut across two or more distinct scientific or engineering domains; even in cases where there are excellent tools available for modeling each individual domain, generally none of these domain-specific tools can be used to model the cross-domain interactions. In the case of laser weapons systems R&D these tools need to be able to support modeling of systems involving combined interactions among structures, thermal, and optical effects, including both ray optics and wave optics, controls, atmospheric effects, target interaction, computational fluid dynamics, and spatiotemporal interactions between lasing light and the laser gain medium. To address this problem we are working to extend Comet~(?), to add the addition modeling and simulation capabilities required for this particular application area. In this paper we will describe our progress to date.
机译:我们正在努力开发全面,集成的软件框架和工具集,以支持激光武器系统的基于模型的工程(MBE)。 MBE已被董事,国防科学和工程办公室识别,作为四个可能的“变化”技术之一,可以带来整个国防部的革命性进展和采购周期。然而,为了有效,MBE需要强大的基础建模和仿真技术,该技术能够在任何可能所需要的保真度下进行建模的所有相关系统,子系统,组件,效果和相互建模,以便在任何时候都支持关键设计决策系统开发生命周期。通常,最大的技术挑战是由涉及跨越两个或更多种不同的科学或工程领域的交互的系统构成;即使在存在用于建模每个域的优质工具的情况下,通常都不是这些特定于域的工具都不能用于建模跨域交互。在激光武器系统的情况下,这些工具需要能够支持涉及结构,热和光学效应之间的组合相互作用的系统的建模,包括射线光学和波光学,控制,大气效应,目标相互作用,计算流体动力学激光光和激光增益介质之间的时空相互作用。为了解决这个问题,我们正在努力扩展Comet〜(?),以添加此特定应用程序区域所需的添加建模和模拟功能。在本文中,我们将描述我们迄今为止的进展。

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