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Buffer sizing in critical chain project management by network decomposition

机译:通过网络分解在关键链项目管理中缓冲区大小

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Project management organizes about 30% of the world & rsquo;s economy. Many recent projects apply critical chain project management (CCPM) methodology, which requires the design of project and feeding buffers. Accurate sizing of these buffers is essential, because too small buffers result in emergency procedures to prevent late delivery, whereas too large buffers result in uncompetitive bids and lost contracts. Previous buffer sizing research, focused predominantly on the critical chain, typically results in excessive buffers, and in critical chains being challenged by feeding buffers during planning. This work also performs inconsistently, for example in makespan estimation, at execution. We propose a new procedure for buffer sizing based on network decomposition, which offers logical advantages over previous ones. First, the size of a feeding buffer is determined from all associated noncritical chains. Second, the project buffer incorporates safety margins outside the critical chain by comparing feeding chains with their parallel critical counterparts. Computational testing on a case study of a real project and extensive simulated data shows that our procedure delivers much greater accuracy in estimating project makespan, and smaller feeding buffers. Furthermore, the resulting critical chain is never challenged. Additional benefits include delayed expenditure, and reductions in work-in-process, rework, and multitasking.(c) 2020 Elsevier Ltd. All rights reserved.
机译:项目管理组织了大约30%的世界和rsquo的经济。许多最近的项目适用于关键链项目管理(CCPM)方法,这需要设计项目和喂养缓冲区。这些缓冲区的准确尺寸是必不可少的,因为太小的缓冲区导致紧急程序来防止延迟交付,而过大的缓冲区会导致非竞争性的出价和丢失的合同。以前的缓冲尺寸调整,主要集中在临界链上,通常导致缓冲过大,并且在规划期间通过喂养缓冲区来挑战临界链。这项工作也不一致地执行例如在Mepespan估计中,执行。我们提出了一种基于网络分解的缓冲尺寸的新程序,它提供了与之前的网络分解的逻辑优势。首先,从所有相关的非临界链确定馈电缓冲液的尺寸。其次,项目缓冲器通过将送料链与其平行的关键对应物进行比较来包括临界链以外的安全边缘。对真实项目和广泛的模拟数据的案例研究的计算测试表明,我们的程序在估计项目Mapspan和更小的馈电缓冲区方面具有更高的准确性。此外,由此产生的临界链永远不会挑战。额外的福利包括延迟支出,并减少工程,返工和多任务处理。(c)2020 Elsevier Ltd.保留所有权利。

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