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A systems architecture-based approach to assess candidate upgrades to complex systems

机译:一种基于系统架构的方法,用于评估复杂系统的候选升级

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摘要

The Compatibility Assessment Method (CAM), a new structured process for assessing compatibility between parent systems and child subsystems is proposed and applied to several cases where subsystems are being replaced in legacy systems. CAM is a screening process intended to be used by project managers who need to replace components of complex systems. The functional model-based process uses an extension of the Integrated Definition Modeling Language of IDEFO. The IDEFO method is used for defining compatibility measures based on each of the four constituent arrows that show inputs, controls, outputs, and mechanisms (ICOM). In this extension, the control constituents are replaced with constraints. Each of the ICOM constituents is expanded with parameters which include metrics and values. The ICOMs with their parameters and metrics are then used to characterize two or more subsystems in a matrix format. The differences between these matrices are entered into the sparse "Delta Matrix" which shows analysts the differences between the systems. These differences can be assigned to the appropriate levels of technical expertise to be analyzed and to determine feasibility of the child subsystem in the parent system. The process is compared to current practices in government unmanned aircraft system program offices to determine the usefulness of adopting this compatibility assessment process. This dissertation outlines the need for and development of the method for application by practitioners responsible for replacing subsystems on legacy systems. The development includes evaluations of the method and an experiment with cohorts of student system engineers to compare the output of the Compatibility Assessment Method to less-structured methods. This research contributes additional insight into system architecting theory and proposes a structured method for practitioners to use to improve the processes to perform part replacement in legacy systems. While others have offered methods to measure aspects of system architecture, this proposed method moves beyond the extant literature with tools for practitioners.
机译:提出了一种兼容性评估方法(CAM),一种用于评估父系统与子子系统之间的兼容性的新结构化过程,该方法适用于在传统系统中替换子系统的几种情况。 CAM是一种筛选过程,旨在供需要更换复杂系统组件的项目经理使用。基于功能模型的过程使用IDEFO的“集成定义建模语言”的扩展。 IDEFO方法用于根据显示输入,控件,输出和机制(ICOM)的四个组成箭头中的每个来定义兼容性度量。在此扩展中,控件组成部分将替换为约束。 ICOM的每个组成部分都使用包括度量和值的参数进行扩展。然后,将ICOM及其参数和度量标准用于以矩阵格式表征两个或多个子系统。这些矩阵之间的差异被输入到稀疏的“增量矩阵”中,该矩阵向分析人员显示了系统之间的差异。可以将这些差异分配给要分析的技术专长的适当级别,并确定子子系统在父系统中的可行性。将该过程与政府无人驾驶飞机系统计划办公室的当前做法进行比较,以确定采用这种兼容性评估过程的有用性。本文概述了负责替换传统系统中子系统的从业人员对应用方法的需求和开发。开发内容包括对该方法的评估以及与一组学生系统工程师进行的实验,以将兼容性评估方法的输出与结构较少的方法进行比较。这项研究为系统架构理论提供了额外的见解,并为从业人员提出了一种结构化方法,可用于改进传统系统中执行零件更换的过程。尽管其他人已经提供了用于度量系统体系结构各个方面的方法,但是该提议的方法超越了现有文献中针对从业人员的工具。

著录项

  • 作者

    Long David Scott Andrew;

  • 作者单位
  • 年度 2012
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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