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Capacity Higher-Order Statistics Analysis for $\kappa-\mu$ Fading Channels with Correlated Shadowing

Information Theory 2022-04-05 v1 Signal Processing math.IT

Abstract

The proposed research performs an analysis of the capacity higher-order statistics for a single-input multiple-output multiantenna wireless communication system equipped with a maximum-ratio combining scheme. It was assumed that the propagation multipath channel is described with the κμ\kappa-\mu fading model with the correlated dominant components. Closed-form and asymptotic expressions were derived and applied to the problem of minimum capacity reliability (due to channel fluctuations, thus possible rate deterioration) and corresponding signal-to-noise ratio analysis. The performed computer simulation, verifying the correctness of the obtained expressions, along with the generalized κμ\kappa-\mu fading channel with correlated shadowing, assumed several specific limiting simplified cases: Rayleigh, Rician and Nakagami-mm. It was shown that the signal-to-noise ratio (at which minimum capacity reliability is attained) is achieved at greater values than that of simplified models, and the absolute value of this minimum can be smaller/higher than for the degenerate cases depending on the dominant components one-step correlation coefficient.

Keywords

Cite

@article{arxiv.2204.00682,
  title  = {Capacity Higher-Order Statistics Analysis for $\kappa-\mu$ Fading Channels with Correlated Shadowing},
  author = {Aleksey S. Gvozdarev},
  journal= {arXiv preprint arXiv:2204.00682},
  year   = {2022}
}

Comments

Published in: 2021 4th International Conference on Advanced Communication Technologies and Networking (CommNet)