Visible to the public Arithmetic Circuit Homomorphic Encryption Key Pairing Comparisons and Analysis between Elliptic Curve Diffie Hellman and Supersingular Isogeny Diffie Hellman

TitleArithmetic Circuit Homomorphic Encryption Key Pairing Comparisons and Analysis between Elliptic Curve Diffie Hellman and Supersingular Isogeny Diffie Hellman
Publication TypeConference Paper
Year of Publication2021
AuthorsJoshua, Wen Xin Khoo, Justin, Xin Wei Teoh, Yap, Chern Nam
Conference Name2021 2nd Asia Conference on Computers and Communications (ACCC)
Keywordsadvanced encryption standard, arithmetic circuit, Asia, authentication, Central Processing Unit, Computers, Dragonfly Key Exchange, Elliptic curves, homomorphic encryption, human factors, Metrics, pubcrawl, quantum computing, resilience, Resiliency, Scalability, Standards, supersingular isogeny key exchange
AbstractThis project is an extension of ongoing research on Fully Homomorphic Encryption - Arithmetic Circuit Homomorphic Encryption. This paper focus on the implementation of pairing algorithm Supersingular Isogeny Diffie Hellman Key Exchange into Arithmetic Circuit Homomorphic Encryption as well as comparison and analyse with Elliptic Curve Diffie Hellman. Next, the paper will discuss on the latencies incurred due to pairing sessions between machines, key generations, key sizes, CPU usage and overall latency for the two respective key exchange methods to be compared against each other.
DOI10.1109/ACCC54619.2021.00030
Citation Keyjoshua_arithmetic_2021