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A Comprehensive and Practical Framework for Reliable Scheduling in Project Management

机译:项目管理中可靠调度的全面实用框架

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Schedule reliability is essential to successfully achieve EPC (engineering, procurement and constriction) project objectives. Several studies in the past were based on traditional risk management technique which has its own limitations that lack one to obtain a reliable project schedule. To overcome these limitations a comprehensive framework is developed based on the integration of risk management and Critical Chain Project Management (CCPM) that can give a much reliable project scheduling. In the proposed framework, risk analysis is first determined through fuzzy FMEA technique to provide identification of critical risk events (CRE). The effect of CRE on project schedule is then defined and total project time which considers risk factors is calculated. To support risk mitigation, fault tree and event tree analysis are combined which allows the root causes of the risk event be defined and also mitigation strategies determined to control each identified CRE. Eventually, CCPM is distributed which enable implementation of the project based on initial plan and to obtain reasonable Feeding Buffer time on risky tasks. This paper presents the proposed framework using a real case study on construction phases of EPC projects in an electrical power industry.
机译:安排可靠性对于成功实现EPC(工程,采购和收缩)项目目标至关重要。过去的几项研究是基于传统风险管理技术,这具有自身限制,缺乏一个可靠的项目时间表。为了克服这些限制,基于风险管理和关键链项目管理(CCPM)的整合开发了全面框架,可以提供众多可靠的项目调度。在拟议的框架中,首先通过模糊的FMEA技术确定风险分析,以提供临界风险事件(CRE)的识别。然后,计算CRE对项目时间表的影响,并计算了考虑风险因素的项目时间。为了支持风险缓解,结合了故障树和事件树分析,这允许定义风险事件的根本原因,并且还确定控制每个已识别的CRE的缓解策略。最终,分发CCPM,它能够根据初始计划实现项目的实现,并在危险任务上获取合理的馈送缓冲时间。本文介绍了拟议的框架,使用了电力工业中EPC项目的建设阶段的实际研究。

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