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Packet-Level Open-World App Fingerprinting on Wireless Traffic

  • Jianfeng Li
  • , Shuohan Wu
  • , Hao Zhou
  • , Xiapu Luo
  • , Ting Wang
  • , Yangyang Liu
  • , Xiaobo Ma
  • Hong Kong Polytechnic University
  • Xi'an Jiaotong University

Research output: Chapter in Book/Report/Conference proceedingConference contributionpeer-review

44 Scopus citations

Abstract

Mobile apps have profoundly reshaped modern lifestyles in different aspects. Several concerns are naturally raised about the privacy risk of mobile apps. Despite the prevalence of encrypted communication, app fingerprinting (AF) attacks still pose a serious threat to users' online privacy. However, existing AF attacks are usually hampered by four challenging issues, namely i) hidden destination, ii) invisible boundary, iii) app multiplexing, and iv) open-world recognition, when they are applied to wireless traffic. None of existing AF attacks can address all these challenges. In this paper, we advance a novel AF attack, dubbed PACKETPRINT, to recognize user activities associated with the app of interest from encrypted wireless traffic and tackle the above challenges by proposing two novel models, i.e., sequential XGBoost and hierarchical bag-of-words model. We conduct extensive experiments to evaluate the proposed attack in a series of challenging scenarios, including i) open-world setting, ii) packet loss and network congestion, iii) simultaneous use of different apps, and iv) cross-dataset recognition. The experimental results show that PACKETPRINT can accurately recognize user activities associated with the apps of interest. It achieves the average F1-score 0.884 for open-world app recognition and the average F1-score 0.959 for in-app user action recognition.

Original languageEnglish
Title of host publication29th Annual Network and Distributed System Security Symposium, NDSS 2022
PublisherThe Internet Society
ISBN (Electronic)1891562746, 9781891562747
DOIs
StatePublished - 2022
Event29th Annual Network and Distributed System Security Symposium, NDSS 2022 - Hybrid, San Diego, United States
Duration: Apr 24 2022Apr 28 2022

Publication series

Name29th Annual Network and Distributed System Security Symposium, NDSS 2022

Conference

Conference29th Annual Network and Distributed System Security Symposium, NDSS 2022
Country/TerritoryUnited States
CityHybrid, San Diego
Period04/24/2204/28/22

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