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Age-Dependent Differential Privacy

Published: 06 June 2022 Publication History

Abstract

The proliferation of real-time applications has motivated extensive research on analyzing and optimizing data freshness in the context of age of information. However, classical frameworks of privacy (e.g., differential privacy (DP)) have overlooked the impact of data freshness on privacy guarantees, and hence may lead to unnecessary accuracy loss when trying to achieve meaningful privacy guarantees in time-varying databases. In this work, we introduce age-dependent DP, taking into account the underlying stochastic nature of a time-varying database. In this new framework, we establish a connection between classical DP and age-dependent DP, based on which we characterize the impact of data staleness and temporal correlation on privacy guarantees. Our characterization demonstrates that aging, i.e., using stale data inputs and/or postponing the release of outputs, can be a new strategy to protect data privacy in addition to noise injection in the traditional DP framework. Furthermore, to generalize our results to a multi-query scenario, we present a sequential composition result for age-dependent DP. We then characterize and achieve the optimal tradeoffs between privacy risk and utility. Finally, case studies show that, when achieving a target of an arbitrarily small privacy risk in a single-query case, the approach of combining aging and noise injection can achieve a bounded accuracy loss, whereas using noise injection only (as in the DP benchmark) will lead to an unbounded accuracy loss.

References

[1]
M. Zhang, E. Wei, R. Berry, and J. Huang. 2022. Age-dependent differential privacy. https://www.dropbox.com/s/ud5195uetdvas13/AgeDependent.pdf?dl=0
[2]
R. D. Yates, Y. Sun, D. R.Brown, S. K. Kaul, E. Modiano, and S. Ulukus. 2021. Age of information: An introduction and survey. IEEE Journal on Selected Areas in Communications, 39, 5, 1183--1210.
[3]
C. Dwork. 2006. Differential privacy. Proc. 33rd International Colloquium on Automata, Languages and Programming, part II (ICALP), 4052, 1--12.

Cited By

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  • (2024)Scenario-based Adaptations of Differential Privacy: A Technical SurveyACM Computing Surveys10.1145/365115356:8(1-39)Online publication date: 26-Apr-2024
  • (2024)A Privacy-preserving Auction Mechanism for Learning Model as an NFT in Blockchain-driven MetaverseACM Transactions on Multimedia Computing, Communications, and Applications10.1145/359997120:7(1-24)Online publication date: 27-Mar-2024
  • (2024)RTIFedComputer Networks: The International Journal of Computer and Telecommunications Networking10.1016/j.comnet.2024.110192241:COnline publication date: 25-Jun-2024
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Information & Contributors

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Published In

cover image ACM Conferences
SIGMETRICS/PERFORMANCE '22: Abstract Proceedings of the 2022 ACM SIGMETRICS/IFIP PERFORMANCE Joint International Conference on Measurement and Modeling of Computer Systems
June 2022
132 pages
ISBN:9781450391412
DOI:10.1145/3489048
  • cover image ACM SIGMETRICS Performance Evaluation Review
    ACM SIGMETRICS Performance Evaluation Review  Volume 50, Issue 1
    SIGMETRICS '22
    June 2022
    118 pages
    ISSN:0163-5999
    DOI:10.1145/3547353
    Issue’s Table of Contents
Permission to make digital or hard copies of part or all of this work for personal or classroom use is granted without fee provided that copies are not made or distributed for profit or commercial advantage and that copies bear this notice and the full citation on the first page. Copyrights for third-party components of this work must be honored. For all other uses, contact the Owner/Author.

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Association for Computing Machinery

New York, NY, United States

Publication History

Published: 06 June 2022

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Author Tags

  1. age of information
  2. differential privacy

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  • NSF

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SIGMETRICS/PERFORMANCE '22
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Overall Acceptance Rate 459 of 2,691 submissions, 17%

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Cited By

View all
  • (2024)Scenario-based Adaptations of Differential Privacy: A Technical SurveyACM Computing Surveys10.1145/365115356:8(1-39)Online publication date: 26-Apr-2024
  • (2024)A Privacy-preserving Auction Mechanism for Learning Model as an NFT in Blockchain-driven MetaverseACM Transactions on Multimedia Computing, Communications, and Applications10.1145/359997120:7(1-24)Online publication date: 27-Mar-2024
  • (2024)RTIFedComputer Networks: The International Journal of Computer and Telecommunications Networking10.1016/j.comnet.2024.110192241:COnline publication date: 25-Jun-2024
  • (2024)A Comprehensive Survey on Generative AI for Metaverse: Enabling Immersive ExperienceCognitive Computation10.1007/s12559-024-10342-9Online publication date: 4-Sep-2024
  • (2023)Ownership Tokenization and Incentive Design for Learning-based User-Generated Content2023 IEEE International Conference on Metaverse Computing, Networking and Applications (MetaCom)10.1109/MetaCom57706.2023.00061(306-313)Online publication date: Jun-2023
  • (2023)Private Status Updating with Erasures: A Case for Retransmission Without ResamplingICC 2023 - IEEE International Conference on Communications10.1109/ICC45041.2023.10278957(3908-3913)Online publication date: 28-May-2023
  • (2024)The Economics of Privacy and Utility: Investment StrategiesIEEE Transactions on Information Forensics and Security10.1109/TIFS.2023.334100819(1744-1755)Online publication date: 1-Jan-2024
  • (2023)Age-Dependent Differential PrivacyIEEE Transactions on Information Theory10.1109/TIT.2023.334014770:2(1300-1319)Online publication date: 13-Dec-2023

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