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Bibliographic Details
Main Authors: Sukmadji, Alvin Y., Kschischang, Frank R.
Format: Preprint
Published: 2024
Subjects:
Online Access:https://arxiv.org/abs/2402.09364
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author Sukmadji, Alvin Y.
Kschischang, Frank R.
author_facet Sukmadji, Alvin Y.
Kschischang, Frank R.
contents Using a generating function approach, a computationally tractable expression is derived to predict the frame error rate arising at the output of the binary symmetric channel when a number of outer Reed--Solomon codes are concatenated with a number of inner Bose--Ray-Chaudhuri--Hocquenghem codes, thereby obviating the need for time-consuming Monte Carlo simulations. Measuring (a) code performance via the gap to the Shannon limit, (b) decoding complexity via an estimate of the number of operations per decoded bit, and (c) decoding latency by the overall frame length, a code search is performed to determine the Pareto frontier for performance-complexity-latency trade-offs.
format Preprint
id arxiv_https___arxiv_org_abs_2402_09364
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Performance-Complexity-Latency Trade-offs of Concatenated RS-BCH Codes
Sukmadji, Alvin Y.
Kschischang, Frank R.
Information Theory
Using a generating function approach, a computationally tractable expression is derived to predict the frame error rate arising at the output of the binary symmetric channel when a number of outer Reed--Solomon codes are concatenated with a number of inner Bose--Ray-Chaudhuri--Hocquenghem codes, thereby obviating the need for time-consuming Monte Carlo simulations. Measuring (a) code performance via the gap to the Shannon limit, (b) decoding complexity via an estimate of the number of operations per decoded bit, and (c) decoding latency by the overall frame length, a code search is performed to determine the Pareto frontier for performance-complexity-latency trade-offs.
title Performance-Complexity-Latency Trade-offs of Concatenated RS-BCH Codes
topic Information Theory
url https://arxiv.org/abs/2402.09364