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Augmenting mobile 3G using WiFi

Published: 15 June 2010 Publication History

Abstract

We investigate if WiFi access can be used to augment 3G capacity in mobile environments. We rst conduct a detailed study of 3G and WiFi access from moving vehicles, in three different cities. We find that the average 3G and WiFi availability across the cities is 87% and 11%, respectively. WiFi throughput is lower than 3G through-put, and WiFi loss rates are higher. We then design a system, called Wiffler, to augments mobile 3G capacity. It uses two key ideas leveraging delay tolerance and fast switching -- to overcome the poor availability and performance of WiFi. For delay tolerant applications, Wiffler uses a simple model of the environment to predict WiFi connectivity. It uses these predictions to delays transfers to offload more data on WiFi, but only if delaying reduces 3G usage and the transfers can be completed within the application's tolerance threshold. For applications that are extremely sensitive to delay or loss (e.g., VoIP), Wiffler quickly switches to 3G if WiFi is unable to successfully transmit the packet within a small time window. We implement and deploy Wiffler in our vehicular testbed. Our experiments show that Wiffler significantly reduces 3G usage. For a realistic workload, the reduction is 45% for a delay tolerance of 60 seconds.

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      cover image ACM Conferences
      MobiSys '10: Proceedings of the 8th international conference on Mobile systems, applications, and services
      June 2010
      382 pages
      ISBN:9781605589855
      DOI:10.1145/1814433
      Permission to make digital or hard copies of all or part of this work for personal or classroom use is granted without fee provided that copies are not made or distributed for profit or commercial advantage and that copies bear this notice and the full citation on the first page. Copyrights for components of this work owned by others than ACM must be honored. Abstracting with credit is permitted. To copy otherwise, or republish, to post on servers or to redistribute to lists, requires prior specific permission and/or a fee. Request permissions from [email protected]

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      Published: 15 June 2010

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      Author Tags

      1. 3G augmentation
      2. applications
      3. vehicular network
      4. wifi

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      • (2024)Caching in Location Based Services: Approaches, Challenges and Emerging TrendsWireless Personal Communications: An International Journal10.1007/s11277-024-11132-0135:3(1581-1615)Online publication date: 1-Apr-2024
      • (2023)IoT-Based Big Data Secure Transmission and Management over Cloud System: A Healthcare Digital Twin ScenarioApplied Sciences10.3390/app1316916513:16(9165)Online publication date: 11-Aug-2023
      • (2023)Performance Impact of PQC KEMs on TLS 1.3 Under Varying Network CharacteristicsInformation Security10.1007/978-3-031-49187-0_14(267-287)Online publication date: 1-Dec-2023
      • (2022)Designing and analysis of a Wi-Fi data offloading strategy catering for the preference of mobile usersJournal of Industrial and Management Optimization10.3934/jimo.202103818:3(1665)Online publication date: 2022
      • (2022)Review on Tunnel Communication TechnologySustainability10.3390/su14181145114:18(11451)Online publication date: 13-Sep-2022
      • (2022)Task partitioning and offloading in IoT cloud-edge collaborative computing framework: a surveyJournal of Cloud Computing: Advances, Systems and Applications10.1186/s13677-022-00365-811:1Online publication date: 3-Dec-2022
      • (2022)Acoustic-WiFi: Acoustic Support for Wi-Fi Networks in Smart DevicesIEEE Transactions on Communications10.1109/TCOMM.2022.317183470:6(3977-3994)Online publication date: Jun-2022
      • (2022)Quantifying the Influence of Intermittent Connectivity on Mobile Edge ComputingIEEE Transactions on Cloud Computing10.1109/TCC.2019.292670210:1(619-632)Online publication date: 1-Jan-2022
      • (2022)Business Efficiency in Implementation of Wi-Fi Data Offloading Technique in Mobile NetworksInformation Systems and Technologies10.1007/978-3-031-04829-6_15(167-177)Online publication date: 11-May-2022
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