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Optimization Model for Design and Operation of Transportation Networks in Seismic Regions

机译:地震区交通网络设计与运行优化模型

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Large infrastructure systems (e.g., transportation networks) cannot be designed and operated based only on standard regulations provided by codes of practice and operations manuals. It is necessary to consider not only safety and functionality, but also the socioeconomic context and the cost effectiveness of an investment throughout its life cycle. This paper presents a model to optimize both the design parameters and the inspection and maintenance policies by maximizing the net present value of a project. The model uses decision trees and simulation methods, which take into account the uncertainties and variability in the mechanical performance of the system and in the decision process. The proposed model is illustrated using both a single structure and an entire transportation network located in a seismic region. The results present the variability of the design parameters and the inspection policies within several seismic environments and life cycles of a project. They also show that structural and operational optimization along with the appropriate contextual restrictions (e.g., financial, length of life cycle), are significant for the management of existing systems as well as the development of future infrastructure systems.
机译:大型基础设施系统(例如,运输网络)不能仅根据业务守则和操作手册提供的标准规定进行设计和操作。不仅要考虑安全性和功能性,而且还要考虑投资在整个生命周期中的社会经济背景和成本效益。本文提出了一个通过最大化项目的净现值来优化设计参数以及检查和维护策略的模型。该模型使用决策树和仿真方法,其中考虑了系统机械性能和决策过程中的不确定性和可变性。使用位于地震区域的单个结构和整个运输网络来说明所提出的模型。结果显示了在几个地震环境和项目生命周期中设计参数和检查策略的可变性。它们还表明,结构和操作优化以及适当的上下文限制(例如,财务,生命周期的长度)对于现有系统的管理以及未来基础架构系统的开发都非常重要。

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