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Decision Models to Support Greenhouse Gas Emissions Reduction from Transportation Construction Projects

机译:支持交通建设项目减少温室气体排放的决策模型

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摘要

In this paper, an optimization-based methodology is proposed to permit a construction firm to assess its equipment needs while accounting for the GHG emissions resulting from equipment use and policy makers to set carbon price, caps, and penalties for noncom-pliance. Specifically, the problem of optimally selecting equipment for project tasks to simultaneously minimize emissions and project costs given project duration, workload, compatibility, working conditions, equipment availability, and regulatory constraints is formulated as a multiperiod, biobjective, mixed integer program (MIP). Two techniques are considered for its solution: a weighting technique, which seeks to create the Pareto-frontier, and a constraint approach whereby costs are minimized while maintaining an emissions cap. Off-the-shelf MIP solvers, such as CPLEX, can be used to provide solutions once the model input data and parameters are specified for a particular application. These techniques are applied on a case study involving construction of a roadway in Maryland. The developed approach is generic and can be applied over varying geographic locations, site elevations, soil properties, and other factors that affect equipment operation and productivity.
机译:在本文中,提出了一种基于优化的方法,以允许建筑公司评估其设备需求,同时考虑由设备使用和政策制定者设定的碳价格,上限和违规处罚而造成的温室气体排放。具体而言,在项目持续时间,工作量,兼容性,工作条件,设备可用性和法规约束条件下,针对项目任务最佳选择设备以同时最小化排放和项目成本的问题被表述为多周期,双目标,混合整数程序(MIP)。解决方案考虑了两种技术:一种加权技术(试图创建Pareto边界);一种约束方法,在保持排放上限的同时将成本最小化。一旦为特定应用指定了模型输入数据和参数,就可以使用现成的MIP求解器(例如CPLEX)来提供解决方案。这些技术应用于涉及马里兰州道路建设的案例研究。所开发的方法是通用的,可以应用于不同的地理位置,工地标高,土壤性质以及其他影响设备运行和生产率的因素。

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