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Exact project reliability for a multi-state project network subject to time and budget constraints

机译:受时间和预算约束的多州项目网络的确切项目可靠性

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In a project, the duration of every activity is uncertain because of weather, availability of machines, human resources, and unexpected situations, and the cost is influenced by the duration. For modeling the uncertain durations, a multi-state project network (MPN) is proposed. To understand the performance of an MPN, project reliability is calculated and defined as the probability that a project can be completed within time and budget constraints. All feasible project state vectors are contained in upper and lower boundary points. The previous literature only calculated an estimated project reliability. To obtain the exact project reliability, a decomposition approach is developed to obtain subsets of feasible project state vectors. Each subset is firstly formed in terms of one upper boundary point and all lower boundary points. Each subset is further simplified to reduce the number of lower boundary points for computational efficiency. An algorithm with the decomposition approach is subsequently proposed to evaluate the exact project reliability. A real project of new manufacturing lines is demonstrated with several combinations of time and budget constraints to show the effectiveness of the proposed algorithm, and project managers can make decisions based on project reliability.
机译:在一个项目中,由于天气,机器的可用性,人力资源和意外情况,每个活动的持续时间都是不确定的,并且成本受持续时间的影响。为了对不确定的持续时间进行建模,提出了一种多状态项目网络(MPN)。为了了解MPN的性能,计算项目可靠性并将其定义为在时间和预算限制内可以完成项目的概率。所有可行的项目状态向量都包含在上下边界点中。先前的文献仅计算了估计的项目可靠性。为了获得精确的项目可靠性,开发了一种分解方法来获得可行项目状态向量的子集。首先根据一个上边界点和所有下边界点形成每个子集。每个子集被进一步简化以减少下边界点的数量,以提高计算效率。随后提出了一种具有分解方法的算法,以评估确切的项目可靠性。通过时间和预算约束的几种组合来演示新生产线的真实项目,以显示所提出算法的有效性,并且项目经理可以根据项目的可靠性做出决策。

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