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NASA NTRS · 19950005350

Achieving unequal error protection with convolutional codes

Abstract

This paper examines the unequal error protection capabilities of convolutional codes. Both time-invariant and periodically time-varying convolutional encoders are examined. The effective free distance vector is defined and is shown to be useful in determining the unequal error protection (UEP) capabilities of convolutional codes. A modified transfer function is used to determine an upper bound on the bit error probabilities for individual input bit positions in a convolutional encoder. The bound is heavily dependent on the individual effective free distance of the input bit position. A bound relating two individual effective free distances is presented. The bound is a useful tool in determining the maximum possible disparity in individual effective free distances of encoders of specified rate and memory distribution. The unequal error protection capabilities of convolutional encoders of several rates and memory distributions are determined and discussed.

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BibTeXRIS

Mills, D. G., Costello, D. J., Jr., Palazzo, R., Jr.. 1994-08-01. Achieving unequal error protection with convolutional codes. https://ntrs.nasa.gov/citations/19950005350

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