An ε-Constraint Multi-objective Algorithm for Transit Route Design with Subsidy Consideration

Li-Wen Chen, Ta-Yin Hu, Le-Chi Shih, T. Liao
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引用次数: 1

Abstract

Smart City has been proposed to be a total solution for cities around the world. Public transportation, as one of the basic element in a Smart City, provides shared transport service, such as bus, light rail transit (LRT), and mass rapid transit (MRT), to save energy, reduce air pollution and relieve congestion. For transit operators, how to provide efficient and effective service in traffic networks with limited budget is an important issue. As more public transportation is deployed under the same budget, how to balance bus route and subsidy becomes a new issue. The research proposes a multi-objective formulation to design the optimal bus routes under three conflicting objectives, including travel cost, demand, and subsidy. The solution algorithm is constructed based on the ε-constraint method to solve the problem. Numerical experiments based on a realistic network in Chiayi (Taiwan) are conducted to illustrate the proposed algorithm.
考虑补贴的公交路线设计ε约束多目标算法
智慧城市被认为是世界各地城市的整体解决方案。公共交通作为智慧城市的基本要素之一,提供公共汽车、轻轨交通(LRT)、捷运(MRT)等共享交通服务,以节约能源、减少空气污染、缓解拥堵。如何在预算有限的情况下,在交通网络中提供高效有效的服务,是交通运营商面临的一个重要问题。在预算不变的情况下,随着公共交通的增加,如何平衡公交线路和补贴成为一个新的问题。在交通成本、需求和补贴三个相互冲突的目标下,提出了公交线路优化设计的多目标公式。在ε-约束方法的基础上构造了求解算法。以台湾嘉义的实际网络为例,进行了数值实验。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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