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Author (up) Campo-Vázquez, C.; García-Rubio, C.; Rodriguez-Carrion, A.; Rebollo-Monedero, D.; Forne, J.; Parra-Arnau, J.; Das, S. url  doi
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  Title Entropy-based privacy against profiling of user mobility Type Journal Article
  Year 2015 Publication Entropy Abbreviated Journal  
  Volume 17 Issue 6 Pages 3913-3946  
  Keywords emrisco, entropy, location history, location-based services, perturbative methods, privacy  
  Abstract Location-based services (LBSs) flood mobile phones nowadays, but their use poses an evident privacy risk. The locations accompanying the LBS queries can be exploited by the LBS provider to build the user profile of visited locations, which might disclose sensitive data, such as work or home locations. The classic concept of entropy is widely used to evaluate privacy in these scenarios, where the information is represented as a sequence of independent samples of categorized data. However, since the LBS queries might be sent very frequently, location profiles can be improved by adding temporal dependencies, thus becoming mobility profiles, where location samples are not independent anymore and might disclose the user’s mobility patterns. Since the time dimension is factored in, the classic entropy concept falls short of evaluating the real privacy level, which depends also on the time component. Therefore, we propose to extend the entropy-based privacy metric to the use of the entropy rate to evaluate mobility profiles. Then, two perturbative mechanisms are considered to preserve locations and mobility profiles under gradual utility constraints. We further use the proposed privacy metric and compare it to classic ones to evaluate both synthetic and real mobility profiles when the perturbative methods proposed are applied. The results prove the usefulness of the proposed metric for mobility profiles and the need for tailoring the perturbative methods to the features of mobility profiles in order to improve privacy without completely loosing utility.  
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  Corporate Author Thesis  
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  Series Volume Series Issue Edition  
  ISSN 1099-4300 ISBN Medium  
  Area Expedition Conference  
  Notes Approved no  
  Call Number UC3M @ josealga @ campo009 Serial 64  
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