A Rate-Distortion Approach to Caching

October 24, 2016 Β· Declared Dead Β· πŸ› IEEE Transactions on Information Theory

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Authors Roy Timo, Shirin Saeedi Bidokhti, Michèle Wigger, Bernhard C. Geiger arXiv ID 1610.07304 Category cs.IT: Information Theory Citations 36 Venue IEEE Transactions on Information Theory Last Checked 6 months ago
Abstract
This paper takes a rate-distortion approach to understanding the information-theoretic laws governing cache-aided communications systems. Specifically, we characterise the optimal tradeoffs between the delivery rate, cache capacity and reconstruction distortions for a single-user problem and some special cases of a two-user problem. Our analysis considers discrete memoryless sources, expected- and excess-distortion constraints, and separable and f-separable distortion functions. We also establish a strong converse for separable-distortion functions, and we show that lossy versions of common information (GΓ‘cs-KΓΆrner and Wyner) play an important role in caching. Finally, we illustrate and explicitly evaluate these laws for multivariate Gaussian sources and binary symmetric sources.
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