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Warfighter decision making performance analysis as an investment priority driver

机译:战斗机决策使绩效分析作为投资优先级驱动程序

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Estimating the relative value of alternative tactics, techniques and procedures (TTP) and information systems requires measures of the costs and benefits of each, and methods for combining and comparing those measures. The NATO Code of Best Practice for Command and Control Assessment explains that decision making quality would ideally be best assessed on outcomes. Lessons learned in practice can be assessed statistically to support this, but experimentation with alternate measures in live conflict is undesirable. To this end, the development of practical experimentation to parameterize effective constructive simulation and analytic modelling for system utility prediction is desirable. The Land Battlespace Systems Department of Dstl has modeled human development of situational awareness to support constructive simulation by empirically discovering how evidence is weighed according to circumstance, personality, training and briefing. The human decision maker (DM) provides the backbone of the information processing activity associated with military engagements because of inherent uncertainty associated with combat operations. To develop methods for representing the process in order to assess equipment and non-technological interventions such as training and TTPs we are developing componentized or modularized timed analytic stochastic model components and instruments as part of a framework to support quantitative assessment of intelligence production and consumption methods in a human decision maker-centric mission space. In this paper, we formulate an abstraction of the human intelligence fusion process from the Defence Science and Technology Laboratory's (Dstl's) INCIDER model to include in our framework, and synthesize relevant cost and benefit characteristics.
机译:估计替代策略,技术和程序(TTP)和信息系统的相对值需要各种成本和益处的测量以及组合和比较这些措施的方法。命令和控制评估的最佳实践的北约代码解释说,理想情况下,决策质量将是最佳评估结果。可以在统计上进行统计评估实践中的经验教训,以支持这一点,但在实际冲突中的替代措施的实验是不可取的。为此,理想的是,开发实际实验以参数化有效建设性仿真和系统实用程序预测的分析建模。 DSTL的土地战斗空间系统已经通过经验发现根据情况,人格,培训和简报的证据如何称重,建模人类发展的情境意识,以支持建设性模拟。人类决策者(DM)提供了与军事交往相关的信息处理活动的骨干,因为与战斗行动相关的固有的不确定性。开发用于代表该过程的方法,以评估培训和TTP等设备和非技术干预我们正在开发组件化或模块化的定时分析随机模型组件和仪器,作为支持智能生产和消费方法的定量评估的框架的一部分在人类决策者为中心​​的任务空间。在本文中,我们制定了防御科学和技术实验室(DSTL)潮流模型的人类智能融合过程的抽象,包括在我们的框架中,并综合相关成本和益处特征。

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