多同心优化充电警戒线设计

A. Sumalee
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引用次数: 45

摘要

道路收费计划的实际设计和实施情况会有很大不同。方案的设计通常也受到一些实用性要求的约束。收费方案的拓扑结构是本文研究的实用性要求之一。定价方案的警戒线形状是首选,因为它的用户友好性(即方案可以很容易地理解)。这是几个现实世界案例(例如伦敦、新加坡和挪威的方案)的设计概念。本文提出了一种利用遗传算法确定多同心收费警戒线方案最优位置的方法。采用分支树结构表示一种有效的收费警戒线方案,该方案可以用两串节点数和下行节点数进行编码。这种分支树结构适用于单个警戒线,然后扩展到具有多个同心充电警戒线的情况。然后利用遗传算法进化设计了一种封装在双链染色体中的多同心充电带方案。开发的算法被称为GA-AS,然后在英国爱丁堡市的网络中进行测试。结果表明,与判断式收费警戒线方案相比,优化收费警戒线方案的效益有了实质性的提高,这说明了该算法的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
MULTI-CONCENTRIC OPTIMAL CHARGING CORDON DESIGN
The performance of a road pricing scheme varies greatly by its actual design and implementation. The design of the scheme is also normally constrained by several practicality requirements. One of the practicality requirements which is tackled in this paper is the topology of the charging scheme. The cordon shape of the pricing scheme is preferred due to its user-friendliness (i.e. the scheme can be understood easily). This has been the design concept for several real world cases (e.g. the schemes in London, Singapore, and Norway). The paper develops a methodology for defining an optimal location of a multi-concentric charging cordons scheme using Genetic Algorithm (GA). The branch-tree structure is developed to represent a valid charging cordon scheme which can be coded using two strings of node numbers and number of descend nodes. This branch-tree structure for a single cordon is then extended to the case with multi-concentric charging cordons. GA is then used to evolve the design of a multi-concentric charging cordons scheme encapsulated in the two-string chromosome. The algorithm developed, called GA-AS, is then tested with the network of the Edinburgh city in UK. The results suggest substantial improvements of the benefit from the optimised charging cordon schemes as compared to the judgemental ones which illustrate the potential of this algorithm.
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来源期刊
Transportmetrica
Transportmetrica 工程技术-运输科技
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