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A multi-objective optimization approach to balancing economic efficiency and equity in accessibility to multi-use paths

机译:多目标优化方法来平衡多用途路径可达性的经济效率和公平

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Improving public health through active transpiration investments has increasingly become a new research focus in transportation planning. This study is to propose a multi-objective optimization modeling framework, through an optimal allocation of active transportation investments, to maximize the total accessibility while minimizing the total differences in accessibility over a city. Accessibility to multi-use paths is calculated for Fresno, California that measures the total length of multi-use paths a resident could reach with a 30-min cycling ride. Then, a geographically weighted regression (GWR) model is used to capture the local relationships between accessibility outcome and previous transportation investments. The marginal-effect analysis for the GWR results indicates economically efficient, inefficient, and indifferent locations for further investments. This study is one of the few to incorporate such a GWR model into a multi-objective optimization modeling framework to improve accessibility to multi-use paths and address inequality issues in transportation. Solving the multi-objective optimization model provides decision-makers a new insight into the making of an economically efficient and socially equal active transportation plan to improve public health.
机译:通过积极的蒸发投资提高公共卫生越来越多地成为交通规划的新研究。本研究是通过最佳的积极运输投资提出多目标优化建模框架,以最大限度地提高总可访问性,同时最大限度地减少城市可访问性的总差异。为加利福尼亚州Fresno计算多用途路径的可访问性,测量多用途路径的总长度,居民可以通过30分钟的循环骑行达到。然后,地理加权回归(GWR)模型用于捕获可访问性结果与以前的运输投资之间的本地关系。 GWR结果的边缘效应分析表明进一步投资的经济有效,低效和无动于衷的位置。本研究是少数少数将这种GWR模型融入多目标优化建模框架中的少数,以改善对多用途路径的可访问性和运输中的地址不等式问题。解决多目标优化模型为决策者提供了一种新的洞察,以制定经济上有效和社会平等的积极运输计划,以改善公共卫生。

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