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Variable Rate Lossy Source-Channel Coding over Channels with Feedback

Information Theory 2026-07-18 v1

Abstract

A variable-rate lossy joint source-channel coding scheme for burst-noise communication channels with noiseless feedback is introduced. The scheme comprises a multi-stage channel optimized vector quantization system that dynamically allocates bits via a greedy algorithm among the variable-rate residual quantizers at each stage, based on the channel output sequence received at the encoder through the feedback link, thereby generalizing a prior fixed-rate scheme. Simulations over an MM-th order Markov noise Polya contagion channel demonstrate that the proposed variable-rate scheme consistently outperforms the fixed-rate scheme, regardless of the channel bit error rate and noise correlation, achieving signal-to-noise ratio gains of up to about 4.5 dB.

Cite

@article{arxiv.2607.16600,
  title  = {Variable Rate Lossy Source-Channel Coding over Channels with Feedback},
  author = {Timothy Liu and Fady Alajaji and Tamás Linder},
  journal= {arXiv preprint arXiv:2607.16600},
  year   = {2026}
}