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Improving the systems engineering process with multilevel analysis of interactions

机译:通过交互的多层次分析来改善系统工程流程

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The systems engineering V (SE-V) is an established process model to guide the development of complex engineering projects (INCOSE, 2011). The SE-V process involves decomposition and integration of system elements through a sequence of tasks that produce both a system design and its testing specifications, followed by successive levels of build, integration, and test activities. This paper presents a method to improve SE-V implementation by mapping multilevel data into design structure matrix (DSM) models. DSM is a representation methodology for identifying interactions between either components or tasks associated with a complex engineering project (Eppinger & Browning, 2012). Multilevel refers to SE-V data on complex interactions that are germane either at multiple levels of analysis (e.g., component versus subsystem) conducted either within a single phase or across multiple time phases (e.g., early or late in the SE-V process). This method extends conventional DSM representation schema by incorporating multilevel test coverage data as vectors into the off-diagonal cells. These vectors provide a richer description of potential interactions between product architecture and SE-V integration test tasks than conventional domain mapping matrices. We illustrate this method with data from a complex engineering project in the offshore oil industry. Data analysis identifies potential for unanticipated outcomes based on incomplete coverage of SE-V interactions during integration tests. In addition, assessment of multilevel features using maximum and minimum function queries isolates all the interfaces that are associated with either early or late revelations of integration risks based on the planned suite of SE-V integration tests.
机译:系统工程V(SE-V)是已建立的过程模型,用于指导复杂工程项目的开发(INCOSE,2011年)。 SE-V流程涉及通过一系列任务进行系统元素的分解和集成,这些任务产生系统设计及其测试规范,然后依次进行构建,集成和测试活动。本文提出了一种通过将多级数据映射到设计结构矩阵(DSM)模型中来改进SE-V实现的方法。 DSM是一种表示方法,用于识别与复杂工程项目相关的组件或任务之间的交互(Eppinger&Browning,2012)。多级是指复杂交互中的SE-V数据,这些数据在单个阶段内或在多个时间阶段(例如SE-V流程的早期或晚期)进行的多个分析级别(例如,组件与子系统)密切相关。 。该方法通过将多级测试覆盖率数据作为向量合并到非对角线单元中,从而扩展了传统的DSM表示方案。这些向量提供了比传统域映射矩阵更丰富的产品体系结构和SE-V集成测试任务之间潜在交互的描述。我们用来自海上石油行业的一个复杂工程项目的数据说明了这种方法。数据分析基于集成测试过程中SE-V交互作用的不完全覆盖,从而确定了意外结果的可能性。此外,基于计划的SE-V集成测试套件,使用最大和最小功能查询对多级功能进行评估可以隔离与集成风险的早期或晚期启示相关联的所有接口。

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