NASA NTRS · 19840018257
Fast decoding techniques for extended single-and-double-error-correcting Reed Solomon codes
Abstract
A problem in designing semiconductor memories is to provide some measure of error control without requiring excessive coding overhead or decoding time. For example, some 256K-bit dynamic random access memories are organized as 32K x 8 bit-bytes. Byte-oriented codes such as Reed Solomon (RS) codes provide efficient low overhead error control for such memories. However, the standard iterative algorithm for decoding RS codes is too slow for these applications. Some special high speed decoding techniques for extended single and double error correcting RS codes. These techniques are designed to find the error locations and the error values directly from the syndrome without having to form the error locator polynomial and solve for its roots.
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Costello, D. J., Jr., Deng, H., Lin, S.. 1984-01-01. Fast decoding techniques for extended single-and-double-error-correcting Reed Solomon codes. https://ntrs.nasa.gov/citations/19840018257
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