Hybrid short comparable encryption with sliding window techniques for enhanced efficiency and security

Vinay Kumar Kasula, Bhargavi Konda, Akhila Reddy Yadulla, Mounica Yenugula · International Journal of Science and Research Archive · 2022

The existing Short Comparable Encryption (SCE) schemes ensure the security of IoT data while allowing ciphertext comparison to infer plaintext relationships. However, these schemes incur significant computational and storage overhead during ciphertext comparison and label generation. To address these challenges, this paper introduces a hybrid approach that combines Short Comparable Encryption with sliding window techniques, resulting in Short Comparable Encryption based on the Sliding Window (SCESW) scheme. The proposed scheme leverages the efficiency of sliding window methods to optimize computational and storage requirements while maintaining robust security guarantees. Through rigorous security analysis, the SCESW scheme is shown to achieve weak indistinguishability under the standard model, ensuring data integrity and confidentiality. Additionally, experimental performance evaluations demonstrate that the storage overhead of the SCESW scheme is reduced to compared to conventional SCE schemes, with a significant improvement in computational efficiency. The integration of sliding window techniques enables the uniform grouping of binary data, further enhancing the scheme's practicality and scalability. This hybrid approach represents a step forward in secure and efficient data encryption, offering a promising solution for real-world applications such as encrypted database queries, secure auctions, and image retrieval systems.

Read the paper · More papers on PaperTik