Search NASA⌕ Search

NASA NTRS · 19860020080

Error control for reliable digital data transmission and storage systems

Abstract

A problem in designing semiconductor memories is to provide some measure of error control without requiring excessive coding overhead or decoding time. In LSI and VLSI technology, memories are often organized on a multiple bit (or byte) per chip basis. For example, some 256K-bit DRAM's are organized in 32Kx8 bit-bytes. Byte oriented codes such as Reed Solomon (RS) codes can provide efficient low overhead error control for such memories. However, the standard iterative algorithm for decoding RS codes is too slow for these applications. In this paper we present some special decoding techniques for extended single-and-double-error-correcting RS codes which are capable of high speed operation. These techniques are designed to find the error locations and the error values directly from the syndrome without having to use the iterative alorithm to find the error locator polynomial. Two codes are considered: (1) a d sub min = 4 single-byte-error-correcting (SBEC), double-byte-error-detecting (DBED) RS code; and (2) a d sub min = 6 double-byte-error-correcting (DBEC), triple-byte-error-detecting (TBED) RS code.

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

Costello, D. J., Jr., Deng, R. H.. 1985-09-30. Error control for reliable digital data transmission and storage systems. https://ntrs.nasa.gov/citations/19860020080

Cite the original work for its findings. Save a collection to share your selection of sources.