학술논문

Privacy Preservation in Location-Based Services: A Novel Metric and Attack Model
Document Type
Periodical
Source
IEEE Transactions on Mobile Computing IEEE Trans. on Mobile Comput. Mobile Computing, IEEE Transactions on. 20(10):3006-3019 Oct, 2021
Subject
Computing and Processing
Communication, Networking and Broadcast Technologies
Signal Processing and Analysis
Privacy
Measurement
Viterbi algorithm
Trajectory
Entropy
Servers
Mobile computing
+%24k%24<%2Ftex-math>+++k<%2Fmml%3Ami>+<%2Fmml%3Amath>++<%2Falternatives>+<%2Finline-formula>-anonymity%22"> $k$ k -anonymity
spatio-temporal trajectories
location-based services
privacy preservation
Language
ISSN
1536-1233
1558-0660
2161-9875
Abstract
Recent years have seen rising needs for location-based services in our everyday life. Aside from the many advantages provided by these services, they have caused serious concerns regarding the location privacy of users. Adversaries can monitor the queried locations by users to infer sensitive information, such as home addresses and shopping habits. To address this issue, dummy-based algorithms have been developed to increase the anonymity of users, and thus, protecting their privacy. Unfortunately, the existing algorithms only assume a limited amount of side information known by adversaries, which may face more severe challenges in practice. In this paper, we develop an attack model termed as Viterbi attack, which represents a realistic privacy threat on user trajectories. Moreover, we propose a metric called transition entropy that enables the evaluation of dummy-based algorithms, followed by developing a robust algorithm that can defend users against the Viterbi attack while maintaining significantly high performance in terms of the traditional metrics. We compare and evaluate our proposed algorithm and metric on a publicly available dataset published by Microsoft, i.e., Geolife dataset.