T
Tau Raphael Rasethuntsa
Researcher at McMaster University
Publications - 9
Citations - 82
Tau Raphael Rasethuntsa is an academic researcher from McMaster University. The author has contributed to research in topics: Fading & Cumulative distribution function. The author has an hindex of 5, co-authored 9 publications receiving 53 citations. Previous affiliations of Tau Raphael Rasethuntsa include Istanbul Technical University.
Papers
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Stress–strength reliability of a non-identical-component-strengths system based on upper record values from the family of Kumaraswamy generalized distributions
TL;DR: In this paper, the estimation of stress strength reliability in a multi-component system with non-identical component strengtings was studied, and the reliability of the model was evaluated.
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Mixed RF/FSO Communications With Outdated-CSI-Based Relay Selection Under Double Generalized Gamma Turbulence, Generalized Pointing Errors, and Nakagami- m Fading
TL;DR: Investigating the performance of dual-hop amplify-and-forward (AF) mixed radio frequency (RF)/free-space optical (FSO) transmissions with partial relay selection (PRS) based on outdated channel state information (CSI) estimates finds the low SNR regime may be prohibitive because it hinders the diversity advantages promised by the use of more relays in PRS systems.
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An integrated performance evaluation of ED‐based spectrum sensing over α−κ−μ and α−κ−μ‐Extreme fading channels
TL;DR: In this paper, a comparative performance evaluation of energy detector (ED) under the assumption that the propagation signal experiences fading modeled by the nonlinear generalized α−−1 (Gα−1) is presented.
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On the outage probability and BER of a DF-based multi-hop system over α-κ-μ and α-κ-μ-extreme fading channels
TL;DR: In this article, the performance of decode-and-forward (DF)-based multi-hop relaying communication systems over α - κ - μ and α- κ- μ -Extreme fading channels is analyzed.
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On the performance of DF-based multi-hop system over α − κ − μ and α − κ − μ-extreme fading channels
TL;DR: An integrated performance evaluation of a decode-and-forward (DF) multi-hop wireless communication system is undertaken over the non-linear generalized α − κ − μ and α −δ − μ -Extreme fading models, resulting in novel closed-form expressions for the amount of fading, channel capacity under various adaptive transmission techniques.