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A Design Change, Knowledge, and Project Management Flight Simulator for Product and Project Success

机译:用于产品和项目成功的设计变更,知识和项目管理飞行模拟器

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摘要

Cost overruns and schedule delays are pervasive in complex projects despite the use of systems engineering and traditional project management models and tools. These disciplines can often work in isolation leading to inconsistencies in product information, tracking of design changes, and challenges in decision-making. While the literature proposes theoretical approaches to integrating these disciplines, there does not appear to be a practical approach offered. In response, this article presents a management flight simulator that represents a digital twin of set-based design, design change, knowledge, and agile project management practices. It integrates discipline-specific submodels through key linkages that are derived from the intrinsic properties of a system case study and intangible assets such as knowledge, communication, culture, and process maturity. It captures the techno-socio-economic and cultural factors involved in design change decisions and project management. The simulator provides immediate feedback on whether a change is going to help or disrupt design integrity through the monitoring of system attribute trends and cues. It also provides the impact on lifecycle management curves using a system dynamics submodel. From this feedback, several system, policy, and process levers are available within the simulator for what-if scenarios with the goal to improve product, organizational, and project performance.
机译:尽管使用系统工程和传统的项目管理模型和工具,但成本超支和计划延迟在复杂项目中是普遍存在的。这些学科通常可以孤立地工作,导致产品信息不一致,跟踪设计变更以及决策中的挑战。虽然文献提出了整合这些学科的理论方法,但似乎没有提供实用的方法。作为回应,本文介绍了一个管理飞行模拟器,代表了基于集的设计,设计变更,知识和敏捷项目管理实践的数字双胞胎。它通过源于系统案例研究和无形资产的关键联系来整合纪律特定的子模型,例如知识,通信,文化和过程成熟度。它捕获了设计变更决策和项目管理的技术 - 社会经济和文化因素。模拟器通过监视系统属性趋势和提示,提供有关改变是否会帮助或扰乱设计完整性的即时反馈。它还使用系统动态子模型提供对生命周期管理曲线的影响。从此反馈,若干系统,策略和处理杠杆可在模拟器中获得用于改进产品,组织和项目性能的目标。

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