Software-Defined Radio Global System for Mobile Communications Transmitter Development for Heterogeneous Network Vulnerability Testing

Abstract

The conversion from homogeneous global system for mobile communications (GSM) networks to heterogeneous GSM/universal mobile telecommunications system (UMTS) networks is rapidly expanding. Previous research identified vulnerabilities in the GSM network that were fixed in the UMTS standard; however, the mobile device must successfully access the UMTS network to take advantage of security improvements. Therefore, a possible vulnerability not addressed in either the GSM or UMTS standards is the potential for a malicious entity to prevent a mobile device from handing over from a GSM to UMTS network, because the GSM network maintains the standalone dedicated control channel (SDCCH) uplink time slots. The process of testing this vulnerability requires the development of a device that monitors a GSM base transceiver station, identifies when a handover to UMTS message is sent, tracks the time slots of the SDCCH uplink, and transmits a GSM handover-failure message. In this thesis, we present an open-source coding scheme that utilizes parts of the OpenBTS source code to transmit a GSM handoverfailure message using the universal software radio peripheral. The method is validated through the collection of the GSM transmitter messages by Airprobe s GSM-receiver software.

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Document Details

Document Type
Technical Report
Publication Date
Dec 01, 2013
Accession Number
ADA620385

Entities

People

  • Carson C. Mcabee

Organizations

  • Naval Postgraduate School

Tags

Communities of Interest

  • Energy and Power Technologies
  • Materials and Manufacturing Processes

DTIC Thesaurus Topics

  • Communication Systems
  • Computer Programming
  • Computer Programs
  • Computers
  • Heterogeneous Networks
  • Mobile Communications
  • Mobile Devices
  • Mobile Phones
  • Modulation
  • Multiple Access
  • Network Protocols
  • Radio Communications
  • Signal Processing
  • Software Defined Radio
  • Standards
  • Time Division Multiple Access
  • Transmitters

Fields of Study

  • Computer science

Readers

  • Computer Networking
  • Cybersecurity.
  • Radio communications and signal processing.