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A multi-objective reliability-based decision support system for incorporating decision maker utilities in the design of infrastructure

机译:基于多目标可靠性的决策支持系统,用于将决策者实用程序纳入基础架构设计中

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Infrastructure comprises the most fundamental facilities and systems serving society. Because infrastructure exists in economic, social, and environmental contexts, all lifecycle phases of such facilities should maximize utility for society, occupants, and designers. However, due to uncertainties associated with the nature of the built environment, the economic, social, and environmental (i.e., triple bottom line) impacts of infrastructure assets must be described as probabilistic. For this reason, optimization models should aim to maximize decision maker utilities with respect to multiple and potentially conflicting probabilistic decision criteria. Although stochastic optimization and multi-objective optimization are well developed in the field of operations research, their intersection (multi-objective optimization under uncertainty) is much less developed and computationally expensive. This article presents a computationally efficient, adaptable, multi-objective decision support system for finding optimal infrastructure design configurations with respect to multiple probabilistic decision criteria and decision maker requirements (utilities). The proposed model utilizes the First Order Reliability Method (FORM) in a systems reliability approach to assess the reliability of alternative infrastructure design configurations with regard to the probabilistic decision criteria and decision maker defined utilities, and prioritizes the decision criteria that require improvement. A pilot implementation is undertaken on a nine-story office building in Los Angeles, California to illustrate the capabilities of the framework. The results of the pilot implementation revealed that "high-performing" design configurations (with higher initial costs and lower failure costs) had a higher probability of meeting the decision maker's preferences than more traditional, low initial cost configurations. The proposed framework can identify low-impact designs that also maximize decision maker utilities.
机译:基础设施包括为社会服务的最基本的设施和系统。由于基础设施存在于经济,社会和环境环境中,因此此类设施的所有生命周期阶段都应使社会,居住者和设计师的效用最大化。但是,由于与建筑环境的性质相关的不确定性,必须将基础设施资产的经济,社会和环境影响(即三重底线)描述为概率性的。因此,优化模型应旨在针对多个且可能相互冲突的概率决策标准,最大化决策者的效用。尽管随机优化和多目标优化在运筹学领域中得到了很好的发展,但它们的交集(不确定性下的多目标优化)发展较差且计算量很大。本文介绍了一种计算效率高,适应性强,多目标决策支持系统,用于针对多个概率决策标准和决策者要求(公用事业)找到最佳基础架构设计配置。所提出的模型在系统可靠性方法中利用了一阶可靠性方法(FORM)来评估关于概率决策标准和决策者定义的效用的替代基础架构设计配置的可靠性,并确定需要改进的决策标准的优先级。在加利福尼亚州洛杉矶的一幢9层办公楼中进行了试点实施,以说明该框架的功能。试点实施的结果表明,“高性能”设计配置(具有较高的初始成本和较低的故障成本)比传统的,较低的初始成本配置更有可能满足决策者的偏好。提议的框架可以确定影响最小的设计,这些设计也可以最大限度地提高决策者的实用性。

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