Increasing Data Rate through Shaping on Wireless Channels Subject to Mobility and Delay Spread

Fuente: arXiv
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Autori principali: Mattu, Sandesh Rao, Mehrotra, Nishant, Calderbank, Robert
Natura: Preprint
Pubblicazione: 2025
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author Mattu, Sandesh Rao
Mehrotra, Nishant
Calderbank, Robert
author_facet Mattu, Sandesh Rao
Mehrotra, Nishant
Calderbank, Robert
contents This letter describes how to improve performance of cellular systems by combining non-equiprobable signaling (shaping) with low-density parity check (LDPC) coding for an orthogonal frequency division multiplexing system. We focus on improving performance at the cell edge, where the 5G standard specifies a suite of LDPC codes with different rates that are applied to 4-QAM. We employ the method of shaping on rings which adds to the transmission rate as it shapes the input distribution. We double the size of the $4$-QAM constellation by introducing a second shell of signal points, and we implement non-equiprobable signaling through a shaping code which selects the high energy shell less frequently than the low energy shell. We describe how to combine coding and shaping by integrating shaping into the calculation of log-likelihood ratios (LLRs) necessary for decoding LDPC codes. We employ rate $1/2$ LDPC coding and select the rate of the shaping code to match that of rate $3/4$ LDPC coding using $4$-QAM. We present simulation results for a representative Veh-A channel showing gains of $4$ dB at a bit error rate (BER) of $10^{-3}$. When we choose an LDPC code from the 5G suite to match the BER performance of rate $1/2$ LDPC coding with shaping we show that transmission rate can be improved by $20 $%.
format Preprint
id arxiv_https___arxiv_org_abs_2512_06494
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Increasing Data Rate through Shaping on Wireless Channels Subject to Mobility and Delay Spread
Mattu, Sandesh Rao
Mehrotra, Nishant
Calderbank, Robert
Signal Processing
Information Theory
This letter describes how to improve performance of cellular systems by combining non-equiprobable signaling (shaping) with low-density parity check (LDPC) coding for an orthogonal frequency division multiplexing system. We focus on improving performance at the cell edge, where the 5G standard specifies a suite of LDPC codes with different rates that are applied to 4-QAM. We employ the method of shaping on rings which adds to the transmission rate as it shapes the input distribution. We double the size of the $4$-QAM constellation by introducing a second shell of signal points, and we implement non-equiprobable signaling through a shaping code which selects the high energy shell less frequently than the low energy shell. We describe how to combine coding and shaping by integrating shaping into the calculation of log-likelihood ratios (LLRs) necessary for decoding LDPC codes. We employ rate $1/2$ LDPC coding and select the rate of the shaping code to match that of rate $3/4$ LDPC coding using $4$-QAM. We present simulation results for a representative Veh-A channel showing gains of $4$ dB at a bit error rate (BER) of $10^{-3}$. When we choose an LDPC code from the 5G suite to match the BER performance of rate $1/2$ LDPC coding with shaping we show that transmission rate can be improved by $20 $%.
title Increasing Data Rate through Shaping on Wireless Channels Subject to Mobility and Delay Spread
topic Signal Processing
Information Theory
url https://arxiv.org/abs/2512.06494