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Information theory / Mathematics / Low-density parity-check code / Reed–Solomon error correction / Niederreiter cryptosystem / McEliece cryptosystem / Parity-check matrix / Hamming / Linear code / Coding theory / Cryptography / Error detection and correction


Smaller Keys for Code-based Cryptography: QC-MDPC McEliece Implementations on Embedded Devices Stefan Heyse, Ingo von Maurich, Tim G¨ uneysu Horst G¨ ortz Institute for IT-Security
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Document Date: 2015-05-04 16:50:34


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File Size: 346,54 KB

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Company

IBM / McEliece / Intel / Xilinx / /

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Facility

Horst G¨ ortz Institute / /

IndustryTerm

real-world applications / digital signal processors / bit-flipping algorithm / target device / hardware/software co-design / reconfigurable hardware / code-based encryption systems / bit-flipping algorithms / smartcard devices / real-world systems / co-processor / quantum computing / this in hardware / /

Organization

US Federal Reserve / ortz Institute for IT-Security Ruhr-Universit¨ / /

Person

Robert McEliece / /

Position

author / /

Product

Virtex6-LX240T / Xilinx ISE 14.5 / /

ProgrammingLanguage

C / /

ProvinceOrState

Oregon / /

Technology

encryption / FPGA / decoding algorithms / lattice-based public key encryption / Cryptography / public key / Niederreiter encryption / bit-flipping algorithm / data encryption / private key / secret key / SRAM / DSP / digital signal processors / bit-flipping algorithms / public key encryption / /

URL

http /

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