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Rahim Tafazolli

Researcher at University of Surrey

Publications -  917
Citations -  16066

Rahim Tafazolli is an academic researcher from University of Surrey. The author has contributed to research in topics: Communication channel & Telecommunications link. The author has an hindex of 53, co-authored 855 publications receiving 12995 citations. Previous affiliations of Rahim Tafazolli include Texas A&M University & University of Gilan.

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Journal ArticleDOI

Towards 6G wireless communication networks: vision, enabling technologies, and new paradigm shifts

TL;DR: 6G with additional technical requirements beyond those of 5G will enable faster and further communications to the extent that the boundary between physical and cyber worlds disappears.
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Novel Low-Density Signature for Synchronous CDMA Systems Over AWGN Channel

TL;DR: A near-optimum chip-level iterative soft-in-soft-out (SISO) multiuser decoding (MUD), which is based on message passing algorithm (MPA) technique, is proposed to approximate optimum detection by efficiently exploiting the LDS structure.
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5G Backhaul Challenges and Emerging Research Directions: A Survey

TL;DR: This pioneering survey explains the 5G backhaul paradigm, presents a critical analysis of legacy, cutting-edge solutions, and new trends in backhauling, and proposes a novel consolidated 5GBackhaul framework that reinforces the belief that no single solution can solve the holistic 5Gbackhaul problem.
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A survey of QoS routing solutions for mobile ad hoc networks

TL;DR: This document offers an up-to-date survey of most major contributions to the pool of QoS routing solutions for MANETs published in the period 1997¿2006, including a thorough overview ofQoS routing metrics, resources, and factors affecting performance and classify the protocols found in the literature.
Proceedings ArticleDOI

Uplink non-orthogonal multiple access for 5G wireless networks

TL;DR: In this article, the authors proposed a NOMA scheme for uplink that removes the resource allocation exclusivity and allows more than one user to share the same subcarrier without any coding/spreading redundancy.