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Performance modeling of the advanced field artillery tactical data system

机译:先进野战炮兵战术数据系统的性能建模

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Planning of complex activities is a deliberative process and automation support for re-planning activities should provide for cognitive modeling of the planning process. One approach for modeling military planning systems is to partition the process into separable components and analyze the components individually. The paper takes the position that the cognitive model should contain details of the domain being supported and, especially for support of online re-planning, knowledge of the system implementation architecture, including performance modeling of the implementation architecture. A possible issue is the failure of the separable components assumption when the system is composed of components. We discuss these thoughts in some detail and provide an overview of a test bed framework being implemented to perform experiments on the validity of this approach. In particular, we are interested in creating analysis tools that apply metrics to sensed data to assist in determining when a re-planning activity is required and in prioritizing re-planning activities. The framework is intended to support experiments with military decision making and, in particular, with re-planning activities that support execution of a military operation order (OPORD). We are investigating use of a simulation tool to accumulate information at the message-packet-level and perform analysis at the network-application-level. We discuss use of this framework for pattern recognition of activities distributed in time and space. We provide an introduction to our approach for partitioning the problem space and some ideas on design of experiments using this approach.
机译:复杂活动的计划是一个审议过程,对重新计划活动的自动化支持应为计划过程提供认知建模。建模军事计划系统的一种方法是将流程分为可分离的组件,然后分别分析组件。本文的立场是,认知模型应包含所支持域的详细信息,尤其是对于在线重新规划的支持,应包含系统实现体系结构的知识,包括实现体系结构的性能建模。一个可能的问题是当系统由组件组成时,可分离组件假设的失败。我们将更详细地讨论这些想法,并概述测试床框架的实现,该框架正在实施以对这种方法的有效性进行实验。特别是,我们有兴趣创建将指标应用于感测数据的分析工具,以帮助确定何时需要重新计划活动并确定重新计划活动的优先级。该框架旨在通过军事决策支持实验,尤其是通过支持执行军事行动命令(OPORD)的重新计划活动来支持实验。我们正在研究使用仿真工具在消息包级别累积信息并在网络应用程序级别执行分析。我们讨论了使用此框架进行时空分布活动的模式识别。我们介绍了划分问题空间的方法,并提供了使用该方法设计实验的一些想法。

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