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High-level stochastic project cost and duration planning methodology integrating earned duration, schedule and value, criticality, cruciality and downside risk metrics

机译:高级随机项目成本和持续时间规划方法集成赢得持续时间,日程和价值,关键性,关键性,关键风险指标

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摘要

A high-level methodology is described to integrate deterministic and stochastic calculations of project networks with parallel pathways of work items. It provides the systematic integration of earned value, earned schedule and earned duration metrics and derivative to-completion forecasts of project cost and duration with stochastically-derived quantitative measures of criticality, cruciality, uncertainty and downside risk measures at project, work item and budget levels. A project network consisting of up to about 50 high-level project work items (rather than hundreds of activities) is evaluated applying critical path analysis using a matrix template that derives the fraction of the project completed at regular intervals (e.g., 2% to 5%) along a baseline planned project schedule – the work-progress-breakdown diagram. This matrix is evaluated for each deterministic and stochastic case providing the key information to derive a spectrum established and novel earned value metrics, and to quantify uncertainty, down-side risk and criticality at the work-item, pathway and project levels.
机译:描述了一种高级别的方法,用于将项目网络的确定性和随机计算与工作项的并行路径集成。它提供了赚取的价值,赚取的时间表和持续时间指标的系统整合,并衍生地完成了项目成本和持续时间的预测,随机推导了项目,工作项目和预算水平的关键关键类型,关键,不确定性和下行风险措施的随机源性定量措施。由最多约50个高级项目工作项(而不是数百个活动组成的项目网络,使用矩阵模板应用关键路径分析,该模板源于定期完成项目的分数(例如,2%至5 %)沿基线计划项目时间表 - 工作 - 进展崩溃图。评估该矩阵的每个确定性和随机壳体,提供了用于导出建立的频谱的关键信息和新的赢取价值指标,并在工作项,途径和项目水平上量化不确定性,下侧风险和临界性。

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