Constant-Size Unbounded Multi-hop Fully Homomorphic Proxy Re-encryption from Lattices


연구 분야: Cryptography



학회: European Symposium on Research in Computer Security


초록

Proxy re-encryption is a cryptosystem that achieves efficient encrypted data sharing by allowing a proxy to transform a ciphertext encrypted under one key into another ciphertext under a different key. Homomorphic proxy re-encryption (HPRE) extends this concept by integrating homomorphic encryption, allowing not only the sharing of encrypted data but also the homomorphic computations on such data. The existing HPRE schemes, however, are limited to a single or bounded number of hops of ciphertext re-encryptions. To address this limitation, this paper introduces a novel lattice-based, unbounded multi-hop fully homomorphic proxy re-encryption (FHPRE) scheme, with constant-size ciphertexts. Our FHPRE scheme supports an unbounded number of re-encryption operations and enables arbitrary homomorphic computations over original, re-encrypted, and evaluated ciphertexts. Additionally, we propose a potential application of our FHPRE scheme in the form of a non-interactive, constant-size multi-user computation system for cloud computing environments.


Author Profile
Feixiang Zhao

Jinan University Guangzhou 510632 China

China
Author Profile
Huaxiong Wang

Nanyang Technological University Singapore 637371 Singapore

Singapore
Author Profile
Jian Weng

Nanyang Technological University Singapore 637371 Singapore

Singapore

📄 논문 정보

발행 연도 2024년
인용수 0
출판 국가 Singapore, China
사이트 Springer
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