📅 Submission Deadline: N/A  |  Vol. 9, Issue 12, December
Track Paper e-Certificate Contact
📢 NOTICE Call For Paper – Vol. 9, Issue 12 (December)  |  Submission Deadline: N/A  |  IJAREST is UGC Approved (Sr. No. 63628)  |  e-ISSN: 2394-3394  |  Submit original, unpublished research papers in Engineering, Science & Technology  |  Fast peer review (12–15 weeks)  |  Open Access – Free to Read  |  Contact: editor@ijarest.org

Paper Details

Home › Archives › Paper Detail

Asymmetric Social Proximity Based Private Matching Protocols for Online Social Networks

Vishakha Salunkhe
Dept.OfComp,engg,Pune,India, India
Vol. 4, Issue 7 pp. 161-166 🌐 Open Access

ABSTRACT

Online social networks (OSNs) have accomplished excellent growth in recent years and develop into a de facto portal for hundreds of millions of Internet users. These OSNs offer attractive means for digital social cooperation and information sharing, but also raise a number of security and privacy problem. While OSNs allow users to restrict access to shared data, they currently do not provide any mechanism to accomplish privacy concerns over data associated with multiple users. Some functions propose to allow individual people turn into buddies if they have equivalent profile attributes. Evan so, profile matching requires an inherent privacy of exposing personal profile to strangers in the cyberspace. The current answers to the difficulty try to defend end users’ privacy by privately computing the intersection or intersection cardinality of the profile attribute sets of two end users. These schemes have some limitations and can even now reveal end users’ privacy. In this paper, we leverage neighborhood structures to redefine the OSN model and propose a reasonable asymmetric social proximity measure in between two end users. Then, primarily based on the proposed asymmetric social proximity, we design and style two personal matching protocols, which offer various privacy ranges and can defend end users’ privacy much better than the earlier |functions. We also analyze the computation and communication expense of these protocols. Ultimately, we validate our proposed protocols measure utilizing actual social network information and perform extensive in depth simulations to assess the overall performance of the proposed protocols in terms of computation expense communication expense complete operating time, and power consumption.

Keywords: Reminder matrix, Hint matrix, attribute-based encryption, Online social networks (OSNs)

📄 Submit Your Paper

Open Access • Double-Blind Peer Reviewed
UGC Approved • Quarterly Publication

Submit Now →
📅 Submission Deadline
N/A
Vol. 9 | Issue 12 | December