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Mitigation Controller: Adaptive Simulation Approach for Planning Control Measures in Large Construction Projects

机译:缓解控制器:大型建筑项目规划控制措施的自适应仿真方法

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摘要

Probabilistic Monte Carlo simulations are often used to determine a project's completion time given a required probability level. During project execution, schedule changes negatively affect the probability of meeting the project's completion time. A manual trial and error approach is then conducted to find a set of mitigation measures to again arrive at the required probability level. These are then implemented as scheduled activities. The mitigation controller (MitC) proposed in this paper automates the search for finding the most cost-effective set of mitigation measures using multiobjective linear optimization so that the probability of timely completion remains at the required level. It considers different types of uncertainties and risk events in the probabilistic simulation. Moreover, it removes the fundamental modeling error that exists in the traditional probabilistic approach by incorporating human control and adaptive behavior in the simulation. Its usefulness is demonstrated using an illustrative example derived from a recent Dutch construction project in which delay is not permitted. It is shown that the MitC is capable of identifying the most effective mitigation strategies allowing for substantial cost savings.
机译:概率蒙特卡罗模拟通常用于确定所需概率水平的项目的完成时间。在项目执行期间,计划变化对满足项目完成时间的可能性产生负面影响。然后进行手动试验和错误方法以查找一套缓解措施,以便再次到达所需的概率水平。然后将这些作为预定活动实施。本文提出的缓解控制器(MITC)可自动搜索使用多目标线性优化找到最具成本效益的缓解措施,以便及时完成的​​概率仍保持在所需的水平。它考虑了概率模拟中的不同类型的不确定性和风险事件。此外,它通过在模拟中包含人类控制和自适应行为来消除传统概率方法中存在的基本建模错误。使用来自最近荷兰建筑项目的说明性示例来证明其有用性,其中荷兰建筑项目不允许延迟。结果表明,MITC能够识别最有效的缓解策略,允许大量成本节省。

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