A logarithmic encoder for binary word compression
Joseph A. Sciulli, United States. National Aeronautics and Space Administration, Goddard Space Flight Center
National Aeronautics and Space Administration, 1967 - Coding theory - 8 pages
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according achieve AERONAUTICS AND SPACE Appendix Listing applied average error BINARY WORD COMPRESSION bit compression ratio bits per sample calculate channel chosen clock pulse coding Combinations component COMPRESSION By Joseph compression technique consists CONTROL counter crn_ Data Compression describes a logarithmic detect device EF[max efficient information transmission ENCODER FOR BINARY encoder output ENCODING ERROR ENCODING PROCEDURE energetic particle experiment energy equally Equation error of approximately example experimental fixed flexible FLIP FLOP fraction of full full scale given Goddard Space Flight Greenbelt implementation information source Information Theory input word k-bit LOGARITHMIC ENCODER mantissa maximum error n-bit NATIONAL AERONAUTICS obtained occur OUTPUT WORD paper describes peak percent possible sample values predictability presented problem provides r-bit range of possible receiver Reference relatively satisfy Schaefer Sciulli Goddard Space shift register significant bit SPACE ADMINISTRATION Space Flight Center specified Suppose wide word reconstructed word size