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      Building Secure Public Key Encryption Scheme from Hidden Field Equations

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      Security and Communication Networks
      Hindawi Limited

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          Abstract

          Multivariate public key cryptography is a set of cryptographic schemes built from the NP-hardness of solving quadratic equations over finite fields, amongst which the hidden field equations (HFE) family of schemes remain the most famous. However, the original HFE scheme was insecure, and the follow-up modifications were shown to be still vulnerable to attacks. In this paper, we propose a new variant of the HFE scheme by considering the special equation x 2 = x defined over the finite field F 3 when x = 0,1 . We observe that the equation can be used to further destroy the special structure of the underlying central map of the HFE scheme. It is shown that the proposed public key encryption scheme is secure against known attacks including the MinRank attack, the algebraic attacks, and the linearization equations attacks. The proposal gains some advantages over the original HFE scheme with respect to the encryption speed and public key size.

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          Most cited references7

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          Public Quadratic Polynomial-Tuples for Efficient Signature-Verification and Message-Encryption

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            Factoring Polynomials Over Finite Fields

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              Cryptanalysis of the Matsumoto and Imai Public Key Scheme of Eurocrypt’88

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                Author and article information

                Journal
                Security and Communication Networks
                Security and Communication Networks
                Hindawi Limited
                1939-0114
                1939-0122
                2017
                2017
                : 2017
                :
                : 1-6
                Article
                10.1155/2017/9289410
                d55f3b37-3b94-435e-b125-7c9bb96bca58
                © 2017

                http://creativecommons.org/licenses/by/4.0/

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