TOD mode: study on land planning and land use optimization for urban rail transit station area

Q2 Engineering Archives of Transport Pub Date : 2023-06-30 DOI:10.5604/01.3001.0016.3126
Hongtian Shen, Guimin Ma
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引用次数: 1

Abstract

The rational planning of land around rail transit stations in cities can effectively improve the convenience of transportation and economic development of cities. This paper briefly introduced the transit-oriented development (TOD) mode of urban planning. We constructed a hierarchical structure for evaluating the quality of land plan-ning of urban rail transit stations through the analytic hierarchy process (AHP) method. The structure started from three large aspects, i.e., traffic volume, regional environmental quality, and regional economic efficiency, and every large aspect was divided into three small aspects. Then, an optimization model was established for land planning of rail transit stations. The land planning scheme was optimized by a genetic algorithm (GA). To enhance the optimization performance of the GA, it was improved by coevolution, i.e., plural populations iterated inde-pendently, and every population replaced the poor chromosomes in the other populations with its excellent chro-mosomes in the previous process. Finally, the Jinzhonghe street station in Hebei District, Tianjin city, was taken as a subject for analysis. The results suggested that the improved GA obtained a set of non-inferior Pareto solutions when solving a multi-objective optimization problem. The distribution of solutions in the set also indicated that any two objectives among traffic volume, environmental quality, and economic efficiency was improved at the cost of the remaining objectives. The land planning schemes optimized by the particle swarm optimization (PSO) algo-rithm, the traditional GA, and the improved GA, respectively, were superior than the initial scheme, and the opti-mized scheme of the improved GA was more in line with the characteristics of the TOD mode than the traditional one and the PSO algorithm, and the fitness value was also higher. In conclusion, the GA can be used to optimize the planning design of land in rail transit areas under the TOD mode, and the optimization performance of the GA can be improved by means of coevolution.
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TOD模式:城市轨道交通站点区域土地规划与土地利用优化研究
合理规划城市轨道交通站点周边用地,可以有效提高城市交通和经济发展的便利性。本文简要介绍了城市规划的公交导向发展模式。运用层次分析法构建了城市轨道交通站点用地规划质量评价的层次结构。该结构从交通量、区域环境质量和区域经济效率三个大方面开始,每个大方面都分为三个小方面。然后,建立了轨道交通站点用地规划的优化模型。利用遗传算法对土地规划方案进行了优化。为了提高遗传算法的优化性能,通过协同进化对其进行了改进,即多个群体独立迭代,每个群体在前一过程中用其优秀的chro mosome替换其他群体中较差的染色体。最后,以天津市河北区金中和街站为研究对象进行分析。结果表明,改进的遗传算法在求解多目标优化问题时得到了一组非劣Pareto解。解决方案在集合中的分布还表明,交通量、环境质量和经济效率中的任何两个目标都是以牺牲其余目标为代价来提高的。粒子群优化算法、传统遗传算法和改进遗传算法分别优化的土地规划方案均优于初始方案,改进遗传算法的优化方案比传统遗传算法、粒子群算法更符合TOD模式的特点,适应度也更高。综上所述,遗传算法可用于TOD模式下轨道交通用地规划设计的优化,通过协同进化可以提高遗传算法的优化性能。
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来源期刊
Archives of Transport
Archives of Transport Engineering-Automotive Engineering
CiteScore
2.50
自引率
0.00%
发文量
26
审稿时长
24 weeks
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