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Used together with:
decod (10)
code (9)
solomon (9)
muller (5)
list (4)

Stem reed$ (all stems)

15 papers:

STOCSTOC-2015-AbbeSW #fault #random
Reed-Muller Codes for Random Erasures and Errors (EA, AS, AW), pp. 297–306.
STOCSTOC-2015-BhowmickL
The List Decoding Radius of Reed-Muller Codes over Small Fields (AB, SL), pp. 277–285.
DATEDATE-2014-SchollW #hardware #implementation #set
Hardware implementation of a Reed-Solomon soft decoder based on information set decoding (SS, NW), pp. 1–6.
STOCSTOC-2013-GuruswamiX #algebra #bound #geometry
List decoding reed-solomon, algebraic-geometric, and gabidulin subcodes up to the singleton bound (VG, CX), pp. 843–852.
DATEDATE-2008-KumarB
Vectorization of Reed Solomon Decoding and Mapping on the EVP (AK, KvB), pp. 450–455.
STOCSTOC-2008-GopalanKZ
List-decoding reed-muller codes over small fields (PG, ARK, DZ), pp. 265–274.
ICALPICALP-A-2008-ChengW #complexity
Complexity of Decoding Positive-Rate Reed-Solomon Codes (QC, DW), pp. 283–293.
DATEDATE-2005-SchianoOLPS #analysis #fault #on the #reliability
On the Analysis of Reed Solomon Coding for Resilience to Transient/Permanent Faults in Highly Reliable Memories (LS, MO, FL, SP, AS), pp. 580–585.
VLDBVLDB-2005-AbadiML #detection #named #network #performance #robust
REED: Robust, Efficient Filtering and Event Detection in Sensor Networks (DJA, SM, WL), pp. 769–780.
STOCSTOC-2005-GuruswamiR
Limits to list decoding Reed-Solomon codes (VG, AR), pp. 602–609.
ICALPICALP-2003-BleichenbacherKY #semistructured data
Decoding of Interleaved Reed Solomon Codes over Noisy Data (DB, AK, MY), pp. 97–108.
ICALPICALP-2002-KiayiasY #encryption
Cryptographic Hardness Based on the Decoding of Reed-Solomon Codes (AK, MY), pp. 232–243.
SIGMODSIGMOD-2000-LitwinS #data type #distributed #scalability #using
LH*RS: A High-Availability Scalable Distributed Data Structure using Reed Solomon Codes (WL, TJES), pp. 237–248.
DACDAC-1994-TsaiM #using
Boolean Matching Using Generalized Reed-Muller Forms (CCT, MMS), pp. 339–344.
DACDAC-1988-HelliwellP #algorithm #multi #performance
A Fast Algorithm to Minimize Multi-Output Mixed-Polarity Generalized Reed-Muller Forms (MH, MAP), pp. 427–432.

Bibliography of Software Language Engineering in Generated Hypertext (BibSLEIGH) is created and maintained by Dr. Vadim Zaytsev.
Hosted as a part of SLEBOK on GitHub.