TTP-Aided Secure Computation using Secret Sharing With Only One Computing Server

Author:

Iwamura Keiichi1,Mohd Kamal Ahmad Akmal Aminuddin1,Inamura Masaki2

Affiliation:

1. Tokyo University of Science, Tokyo, Japan

2. Hiroshima City University, Hiroshima, Japan

Publisher

ACM

Reference7 articles.

1. Donald Beaver . 1992. Efficient Multiparty Protocols Using Circuit Randomization . In Advances in Cryptology - CRYPTO '91 , Joan Feigenbaum (Ed.). Springer Berlin Heidelberg , Berlin, Heidelberg , 420--432. Donald Beaver. 1992. Efficient Multiparty Protocols Using Circuit Randomization. In Advances in Cryptology - CRYPTO '91, Joan Feigenbaum (Ed.). Springer Berlin Heidelberg, Berlin, Heidelberg, 420--432.

2. Michael Ben-Or , Shafi Goldwasser , and Avi Wigderson . 2019. Completeness Theorems for Non-Cryptographic Fault-Tolerant Distributed Computation . Association for Computing Machinery , New York, NY, USA , 351--371. https://doi.org/10.1145/3335741.3335756 10.1145/3335741.3335756 Michael Ben-Or, Shafi Goldwasser, and Avi Wigderson. 2019. Completeness Theorems for Non-Cryptographic Fault-Tolerant Distributed Computation. Association for Computing Machinery, New York, NY, USA, 351--371. https://doi.org/10.1145/3335741.3335756

3. Fully Homomorphic Encryption from Ring-LWE and Security for Key Dependent Messages

4. Ivan Damgård , Marcel Keller , Enrique Larraia , Valerio Pastro , Peter Scholl , and Nigel P . Smart . 2013 . Practical Covertly Secure MPC for Dishonest Majority -- Or : Breaking the SPDZ Limits. In Computer Security -- ESORICS 2013, Jason Crampton, Sushil Jajodia, and Keith Mayes (Eds.). Springer Berlin Heidelberg , Berlin, Heidelberg, 1--18. Ivan Damgård, Marcel Keller, Enrique Larraia, Valerio Pastro, Peter Scholl, and Nigel P. Smart. 2013. Practical Covertly Secure MPC for Dishonest Majority -- Or: Breaking the SPDZ Limits. In Computer Security -- ESORICS 2013, Jason Crampton, Sushil Jajodia, and Keith Mayes (Eds.). Springer Berlin Heidelberg, Berlin, Heidelberg, 1--18.

5. A Lightweight Privacy-Preserving CNN Feature Extraction Framework for Mobile Sensing;Huang Kai;IEEE Transactions on Dependable and Secure Computing,2021

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