Abstract
It has been established that in-network caching in an Information-Centric Network (ICN) environment significantly reduces required bandwidth and content retrieval delay, and reduces load on content producers. However, malicious actors masquerading as legitimate consumers can probe cache contents and use the resultant data to map content objects to, and thereby violate the privacy of, the consumer(s) who requested them. Existing mitigation approaches suffer a direct trade-off between privacy and utility; the two are diametrically opposed, and prioritizing either rapidly degrades its counterpart. This paper presents a collaborative caching approach with provable privacy and utility guarantees that instead monotonically increase as a function of one another, growing in tandem. Our proposed scheme preserves all true cache hits to utilize in-network caching as efficiently as possible. We have evaluated our method against a number of other in ICN caching policies for a variety of workloads and topologies. Our results show that our technique delivers high cache hit ratios and minimizes interest satisfaction delay while offering provable privacy guarantees.
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Notes
- 1.
After this section we revert to the abbreviation ICN.
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Jones, A., Simon, R. (2020). A Privacy-Preserving Collaborative Caching Approach in Information-Centric Networking. In: Devismes, S., Mittal, N. (eds) Stabilization, Safety, and Security of Distributed Systems. SSS 2020. Lecture Notes in Computer Science(), vol 12514. Springer, Cham. https://doi.org/10.1007/978-3-030-64348-5_11
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