联网和自动驾驶汽车的城市基础设施设计原则:以英国牛津为例

IF 2.6 Q2 COMPUTER SCIENCE, INTERDISCIPLINARY APPLICATIONS
Huazhen Liu, Miao Yang, ChengHe Guan, Yi Samuel Chen, Michael Keith, Meizi You, Monica Menendez
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引用次数: 0

摘要

联网和自动驾驶汽车(cav)正在重塑城市系统,需要大量的计算支持。虽然现有研究强调建立物理和虚拟基础设施以促进CAV集成的重要性,但在很大程度上仍然缺乏设计CAV相关基础设施原则的综合框架。本文介绍了一个整体框架,通过提出与cav相关的基础设施设计原则来解决当前文献中的空白。我们确定了对自动驾驶汽车至关重要的各种城市基础设施类型,每种类型都有复杂的考虑因素。根据现有文献,我们介绍了指导物理基础设施投资的五项原则,并补充了针对虚拟基础设施的四项原则。这些原则有望随着CAV的发展和相关技术的进步而发展。此外,我们通过在英国牛津的一个案例研究来举例说明这些原则的应用。在此过程中,我们评估了城市条件,确定了具有代表性的街道,并根据不同的街道特征设计了与汽车相关的城市基础设施。该框架为世界各地的城市准备越来越多地采用自动驾驶汽车提供了有价值的参考。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Urban infrastructure design principles for connected and autonomous vehicles: a case study of Oxford, UK
Abstract Connected and Autonomous Vehicles (CAVs) are reshaping urban systems, demanding substantial computational support. While existing research emphasizes the significance of establishing physical and virtual infrastructure to facilitate CAV integration, a comprehensive framework for designing CAV-related infrastructure principles remains largely absent. This paper introduces a holistic framework that addresses gaps in current literature by presenting principles for the design of CAV-related infrastructure. We identify diverse urban infrastructure types crucial for CAVs, each characterized by intricate considerations. Deriving from existing literature, we introduce five principles to guide investments in physical infrastructure, complemented by four principles specific to virtual infrastructure. These principles are expected to evolve with CAV development and associated technology advancements. Furthermore, we exemplify the application of these principles through a case study in Oxford, UK. In doing so, we assess urban conditions, identify representative streets, and craft CAV-related urban infrastructure tailored to distinct street characteristics. This framework stands as a valuable reference for cities worldwide as they prepare for the increasing adoption of CAVs.
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