Causal Vector-valued Witsenhausen Counterexamples with Feedback

Fuente: arXiv
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Autori principali: Zhao, Mengyuan, Treust, Maël Le, Oechtering, Tobias J.
Natura: Preprint
Pubblicazione: 2024
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author Zhao, Mengyuan
Treust, Maël Le
Oechtering, Tobias J.
author_facet Zhao, Mengyuan
Treust, Maël Le
Oechtering, Tobias J.
contents We study the continuous vector-valued Witsenhausen counterexample through the lens of empirical coordination coding. We characterize the region of achievable pairs of costs in three scenarios: (i) causal encoding and causal decoding, (ii) causal encoding and causal decoding with channel feedback, and (iii) causal encoding and noncausal decoding with channel feedback. In these vector-valued versions of the problem, the optimal coding schemes must rely on a time-sharing strategy, since the region of achievable pairs of costs might not be convex in the scalar version of the problem. We examine the role of the channel feedback when the encoder is causal and the decoder is either causal or non-causal, and we show that feedback improves the performance, only when the decoder is non-causal.
format Preprint
id arxiv_https___arxiv_org_abs_2408_03037
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Causal Vector-valued Witsenhausen Counterexamples with Feedback
Zhao, Mengyuan
Treust, Maël Le
Oechtering, Tobias J.
Information Theory
We study the continuous vector-valued Witsenhausen counterexample through the lens of empirical coordination coding. We characterize the region of achievable pairs of costs in three scenarios: (i) causal encoding and causal decoding, (ii) causal encoding and causal decoding with channel feedback, and (iii) causal encoding and noncausal decoding with channel feedback. In these vector-valued versions of the problem, the optimal coding schemes must rely on a time-sharing strategy, since the region of achievable pairs of costs might not be convex in the scalar version of the problem. We examine the role of the channel feedback when the encoder is causal and the decoder is either causal or non-causal, and we show that feedback improves the performance, only when the decoder is non-causal.
title Causal Vector-valued Witsenhausen Counterexamples with Feedback
topic Information Theory
url https://arxiv.org/abs/2408.03037