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Methodology for Comparing Worldwide Performance of Diverse Weight-Constrained High Energy Laser Systems

机译:比较重量受限高能激光系统全球性能的方法

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The Air Force Institute of Technology's Center for Directed Energy has developed a software model, the High Energy Laser End-to-End Operational Simulation (HELEEOS), under the sponsorship of the High Energy Laser Joint Technology Office (JTO), to facilitate worldwide comparisons across a broad range of expected engagement scenarios of expected performance of a diverse range of weight-constrained high energy laser system types. HELEEOS has been designed to meet JTO's goals of supporting a broad range of analyses applicable to the operational requirements of all the military services, constraining weapon effectiveness through accurate engineering performance assessments allowing its use as an investment strategy tool, and the establishment of trust among military leaders. HELEEOS is anchored to respected wave optics codes and all significant degradation effects, including thermal blooming and optical turbulence, are represented in the model. The model features operationally oriented performance metrics, e.g. dwell time required to achieve a prescribed probability of kill and effective range. Key features of HELEEOS include estimation of the level of uncertainty in the calculated P+k and generation of interactive nomographs to allow the user to further explore a desired parameter space. Worldwide analyses are enabled at five wavelengths via recently available databases capturing climatological, seasonal, diurnal, and geographical spatial-temporal variability in atmospheric parameters including molecular and aerosol absorption and scattering profiles and optical turbulence strength. Examples are provided of the impact of uncertainty in weight-power relationships, coupled with operating condition variability, on results of performance comparisons between chemical and solid state lasers.
机译:空军技术研究所定向能中心在高能激光联合技术办公室(JTO)的赞助下,开发了一种软件模型,即高能激光端对端运行模拟(HELEEOS),以促进全球比较在各种重量受限的高能激光系统类型的预期性能的广泛预期参与场景中。 HELEEOS旨在满足JTO的目标,即支持适用于所有军事部门作战需求的广泛分析,通过准确的工程性能评估来限制武器有效性(允许将其用作投资策略工具)以及在军事之间建立信任领导者。 HELEEOS被固定在受人尊敬的波动光学代码上,并且在模型中表示了所有显着的降级效果,包括热起霜和光学湍流。该模型具有面向操作的性能指标,例如达到规定的击杀概率和有效射程所需的停留时间。 HELEEOS的主要功能包括估计计算出的P + k中的不确定性水平以及生成交互式列线图,以允许用户进一步探索所需的参数空间。借助最近可用的数据库,可以在五个波长下进行全球范围的分析,这些数据库捕获了大气参数(包括分子和气溶胶吸收和散射曲线以及光学湍流强度)的气候,季节,昼夜和地理时空变化。举例说明了重量-功率关系的不确定性以及操作条件的可变性对化学激光器和固态激光器之间性能比较结果的影响。

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