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Cryptography / Learning with errors / Machine learning / Polynomial / Multiplication / Modular arithmetic / RSA / Fast Fourier transform / Abstract algebra / Mathematics / Algebra


Efficient Ring-LWE Encryption on 8-bit AVR Processors Zhe Liu1 , Hwajeong Seo2 , and Sujoy Sinha Roy3 , Johann Großsch¨adl1 , Howon Kim2 , Ingrid Verbauwhede3 1
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Document Date: 2015-05-02 00:52:44


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City

Lattice / /

Company

3M / /

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Facility

University of Luxembourg / Pusan National University / Laboratory of Algorithmics / /

IndustryTerm

consumer electronics / typical wireless sensor node / public-key algorithms / search version / software implementation / software implementations / smart devices / sampler algorithms / post processing operation / lattice-based authentication protocols / /

Organization

School of Computer Science and Engineering / University of Luxembourg / Pusan National University / Laboratory of Algorithmics / Cryptology and Security / /

Person

Johann Großsch / /

Position

candidate for post-quantum cryptosystems / /

Product

Knuth-Yao / /

ProgrammingLanguage

L / /

Technology

Encryption / 2.2 Number Theoretic Transform Algorithm / 8-bit processor / cryptography / RAM / adc / AVR series processors / public key / 2.1 The Ring-LWE Encryption Scheme The encryption / ARM processors / public-key encryption / 8-bit AVR processor / 8-bit AVR ATmega processor / selected Knuth-Yao algorithm / sampler algorithms / NTT algorithm / 8-bit AVR Processors / private key / iterative NTT algorithm / 8-bit processors / Knuth-Yao algorithm / four lattice-based authentication protocols / flash / Implementing public-key algorithms / identical ARM processors / /

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