无轨电车网络建模:一个关键的评论

R. Barbone, Riccardo Mandrioli, M. Ricco, R. F. Paternost, Vincenzo Cirimele, G. Grandi
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引用次数: 3

摘要

无轨电车系统已经成为几个大城市城市环境的一部分。鉴于智能城市的出现,无轨电车电网如何成为城市电网中更活跃的一部分似乎是合理的。然而,目前采用的基础设施设计方法使得目前的无轨电车网络设计过度,无法处理不可能出现的最坏交通情况。因此,无轨电车供电系统既未充分利用,又过大。通过建模、仿真以及一组实测的无轨电车和相应的网络数据,可以探索各种新的功能,其中包括电动汽车充电器和辅助设备的通电,从而实现更可持续和智能的无轨电车电网。本文合并了作者的工程知识和文献中有关设计和建模无轨电车网络的可用资源,并对它们进行了批判性审查,为提出可能的最佳替代方案奠定了基础。由于博洛尼亚市有多个基本或复杂拓扑的电力区域,因此选择了相应的无轨电车系统作为案例研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modelling Trolleybus Networks: a Critical Review
The trolleybus system is already part of the urban environment of several metropolitan cities. In view of the emergence of smart cities, it appears reasonable to look at how the trolleybus grid can become a more active part of the urban’s electricity network. However, the infrastructure design approaches adopted so far make the current trolleybus networks overdesigned to handle the improbable worst-traffic case scenarios. Consequently, the trolleybus electrical supply system is both underutilized and oversized. Through modeling, simulations, and a cluster of measured trolleybus and corresponding network data, various new functionalities may be explored, among which electric vehicle chargers and energization of auxiliary equipment, towards a more sustainable and smart trolleybus grid. This paper merges the authors’ engineering knowledge and sources available in the literature on designing and modelling trolleybus networks and performs a critical review of them to lay the foundations for proposing possible optimal alternatives. Being the city of Bologna organized with multiple electrically powered zones with either basic or complex topologies, the respective trolleybus system has been chosen as a case study.
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