Enabling Physical Localization of Uncooperative Cellular Devices
Taekkyung Oh, Sangwook Bae, Junho Ahn, Yonghwa Lee, Tuan Dinh Hoang, Min Suk Kang, Nils Ole Tippenhauer, Yongdae Kim
摘要
In cellular networks, authorities may need to physically locate user devices to track criminals or illegal equipment. This process involves authorized agents tracing devices by monitoring uplink signals with cellular operator assistance. However, tracking uncooperative uplink signal sources remains challenging, even for operators and authorities. Three key challenges persist for fine-grained localization: i) devices must generate sufficient, consistent uplink traffic over time, ii) target devices may transmit uplink signals at very low power, and iii) signals from cellular repeaters may hinder localization of the target device. While these challenges pose significant practical obstacles to localization, they have been largely overlooked in existing research.
This work examines the impact of these real-world challenges on cellular localization and introduces the Uncooperative Multiangulation Attack (UMA) to address them. UMA can 1) force a target device to transmit traffic continuously, 2) boost the target's signal strength to maximum levels, and 3) uniquely differentiate between signals from the target and repeaters. Importantly, UMA operates without requiring privileged access to cellular operators or user devices, making it applicable to any LTE network. Our evaluations demonstrate that UMA effectively overcomes practical challenges in physical localization when devices are uncooperative.
• Networks → Mobile and wireless security.
问问这篇 Paper
智能体会读完全文。
Lune 把这篇 Paper 索引到了每一个公式,引用它的顶会 Paper 也一样。你提问,回答直接引用原文。
引用它的顶会 Paper4
- Passive Multi-Target GUTI Identification via Visual-RF Correlation in LTE NetworksByeongdo Hong, Gunwoo YoonNDSS 2026 · 被引用 1 次
- Small Cell, Big Risk: A Security Assessment of 4G LTE Femtocells in the WildYaru Yang, Yiming Zhang, Tao Wan, Haixin Duan 等NDSS 2026 · 被引用 1 次
- LLFuzz: An Over-the-Air Dynamic Testing Framework for Cellular Baseband Lower LayersTuan Dinh Hoang, Taekkyung Oh, CheolJun Park, Insu Yun 等USENIX Security 2025
- GLaDoS: Location-aware Denial-of-Service of Cellular NetworksSimon Erni, Martin Kotuliak, Richard Baker, Ivan Martinovic 等USENIX Security 2025
它引用的顶会 Paper12
- Practical Attacks Against Privacy and Availability in 4G/LTE Mobile Communication SystemsAltaf Shaik, Jean-Pierre Seifert, Ravishankar Borgaonkar, N. Asokan 等NDSS 2016 · 被引用 342 次
- Breaking LTE on Layer TwoDavid Rupprecht, Katharina Kohls, Thorsten Holz, Christina PöpperS&P 2019 · 被引用 219 次
- Privacy Attacks to the 4G and 5G Cellular Paging Protocols Using Side Channel InformationSyed Rafiul Hussain, Mitziu Echeverria, Omar Chowdhury, Ninghui Li 等NDSS 2019 · 被引用 160 次
- Hiding in Plain Signal: Physical Signal Overshadowing Attack on LTEHojoon Yang, Sangwook Bae, Mincheol Son, Hongil Kim 等USENIX Security 2019 · 被引用 127 次
- GUTI Reallocation Demystified: Cellular Location Tracking with Changing Temporary IdentifierByeongdo Hong, Sangwook Bae, Yongdae KimNDSS 2018 · 被引用 90 次
相关 Paper
- A Stealthy Location Identification Attack Exploiting Carrier Aggregation in Cellular NetworksNitya Lakshmanan, Nishant Budhdev, Min Suk Kang, Mun Choon Chan 等USENIX Security 2021 · 被引用 21 次
- AAKA: An Anti-Tracking Cellular Authentication Scheme Leveraging Anonymous CredentialsHexuan Yu, Changlai Du, Yang Xiao, Angelos D. Keromytis 等NDSS 2024
- LTrack: Stealthy Tracking of Mobile Phones in LTEMartin Kotuliak, Simon Erni, Patrick Leu, Marc Röschlin 等USENIX Security 2022
- Evaluating Physical-Layer BLE Location Tracking Attacks on Mobile DevicesHadi Givehchian, Nishant Bhaskar, Eliana Rodriguez Herrera, Héctor Rodrigo López Soto 等S&P 2022 · 被引用 55 次
- AdaptOver: adaptive overshadowing attacks in cellular networksSimon Erni, Martin Kotuliak, Patrick Leu, Marc Roeschlin 等MobiCom 2022 · 被引用 52 次
