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Practical Attacks Against Privacy and Availability in 4G/LTE Mobile Communication Systems

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arxiv 1510.07563 v3 pith:I762OYPB submitted 2015-10-26 cs.CR

classification cs.CR
keywords attacksdevicemobilecommunicationpracticalspecificationsvulnerabilitiesaccess
verification ladder T0 review T1 audit T2 compute T3 formal
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Mobile communication systems now constitute an essential part of life throughout the world. Fourth generation "Long Term Evolution" (LTE) mobile communication networks are being deployed. The LTE suite of specifications is considered to be significantly better than its predecessors not only in terms of functionality but also with respect to security and privacy for subscribers. We carefully analyzed LTE access network protocol specifications and uncovered several vulnerabilities. Using commercial LTE mobile devices in real LTE networks, we demonstrate inexpensive, and practical attacks exploiting these vulnerabilities. Our first class of attacks consists of three different ways of making an LTE device leak its location: A semi-passive attacker can locate an LTE device within a 2 sq.km area within a city whereas an active attacker can precisely locate an LTE device using GPS co-ordinates or trilateration via cell-tower signal strength information. Our second class of attacks can persistently deny some or all services to a target LTE device. To the best of our knowledge, our work constitutes the first publicly reported practical attacks against LTE access network protocols. We present several countermeasures to resist our specific attacks. We also discuss possible trade-offs that may explain why these vulnerabilities exist and recommend that safety margins introduced into future specifications to address such trade-offs should incorporate greater agility to accommodate subsequent changes in the trade-off equilibrium.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Security Analysis of LTE Connectivity in Connected Cars: A Case Study of Tesla

    cs.CR 2025-10 conditional novelty 6.0 of 10

    Tesla Model 3 and Cybertruck telematics units are susceptible to IMSI catching, rogue-base-station attachment, deterministic attach loops without fallback, and silent acceptance of SMS and emergency broadcasts.

  2. The Security Overview and Analysis of 3GPP 5G MAC CE

    cs.CR 2025-06 conditional novelty 3.0 of 10

    MAC Control Element signaling in 5G is unencrypted and lacks integrity protection, and many of its fields can be combined to leak user location or be tampered with to disrupt service.

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