利用公共交通网络的高效内容交付基础设施

Qiankun Su, K. Jaffrès-Runser, G. Jakllari, C. Poulliat
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引用次数: 6

摘要

随着世界人口日益城市化和特大城市的激增,城市领导人已经制定了计划,呼吁建立所谓的智慧城市,依靠使用移动设备即时获取信息来智能管理资源。再加上智能手机作为访问互联网的主要平台的出现,这为迫在眉睫的无线带宽危机创造了条件。本文提出了一种基于现有技术和公共交通网络(PTN)的内容传输基础设施,旨在缓解城市中心的无线带宽紧张。我们的解决方案建议在选定的公共汽车站和公共汽车上安装WiFi接入点,并将后者用作数据骡子,创建一个能够承载用户在使用公共交通工具时可以访问的内容的延迟容忍网络。构建这样的基础设施会带来几个挑战,包括主要枢纽的拥塞点和安全通信所需的额外硬件成本。为了应对这些挑战,我们提出了一种三层架构,以保证端到端交付并最大限度地降低硬件成本。来自欧洲三个主要城市巴黎、赫尔辛基和图卢兹的基于轨迹的模拟证明了我们设计选择的可行性。特别是,3层架构被证明可以保证端到端连接,并将部署成本降低几倍,同时至少传输与基线架构一样多的数据包。
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An Efficient Content Delivery Infrastructure Leveraging the Public Transportation Network
With the world population becoming increasingly urban and the multiplication of mega cities, urban leaders have responded with plans calling for so called smart cities relying on instantaneous access to information using mobile devices for an intelligent management of resources. Coupled with the advent of the smartphone as the main platform for accessing the Internet, this has created the conditions for the looming wireless bandwidth crunch. This paper presents a content delivery infrastructure relying on off-the-shelf technology and the public transportation network (PTN) aimed at relieving the wireless bandwidth crunch in urban centers. Our solution proposes installing WiFi access points on selected public bus stations and buses and using the latter as data mules, creating a delay tolerant network capable of carrying content users can access while using the public transportation. Building such an infrastructure poses several challenges, including congestion points in major hubs and the cost of additional hardware necessary for secure communications. To address these challenges we propose a 3-Tier architecture that guarantees end-to-end delivery and minimizes hardware cost. Trace-based simulations from three major European cities of Paris, Helsinki and Toulouse demonstrate the viability of our design choices. In particular, the 3-Tier architecture is shown to guarantee end-to-end connectivity and reduce the deployment cost by several times while delivering at least as many packets as a baseline architecture.
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