Millimeter-wave communications: Physical channel models, design considerations, antenna constructions, and link-budget

IA Hemadeh, K Satyanarayana… - … Surveys & Tutorials, 2017 - ieeexplore.ieee.org
The millimeter wave (mmWave) frequency band spanning from 30 to 300 GHz constitutes a
substantial portion of the unused frequency spectrum, which is an important resource for …

A comprehensive survey on millimeter wave communications for fifth-generation wireless networks: Feasibility and challenges

AN Uwaechia, NM Mahyuddin - IEEE Access, 2020 - ieeexplore.ieee.org
Fifth-generation (5G) cellular networks will almost certainly operate in the high-bandwidth,
underutilized millimeter-wave (mmWave) frequency spectrum, which offers the potentiality of …

Multibeam antenna technologies for 5G wireless communications

W Hong, ZH Jiang, C Yu, J Zhou… - … on Antennas and …, 2017 - ieeexplore.ieee.org
With the demanding system requirements for the fifth-generation (5G) wireless
communications and the severe spectrum shortage at conventional cellular frequencies …

Millimeter wave communication: A comprehensive survey

X Wang, L Kong, F Kong, F Qiu, M **a… - … Surveys & Tutorials, 2018 - ieeexplore.ieee.org
Millimeter wave (mmWave) communication has raised increasing attentions from both
academia and industry due to its exceptional advantages. Compared with existing wireless …

Millimeter-wave technology for automotive radar sensors in the 77 GHz frequency band

J Hasch, E Topak, R Schnabel, T Zwick… - IEEE transactions on …, 2012 - ieeexplore.ieee.org
The market for driver assistance systems based on millimeter-wave radar sensor technology
is gaining momentum. In the near future, the full range of newly introduced car models will …

A 39-GHz 64-element phased-array transceiver with built-in phase and amplitude calibrations for large-array 5G NR in 65-nm CMOS

Y Wang, R Wu, J Pang, D You… - IEEE Journal of Solid …, 2020 - ieeexplore.ieee.org
This article presents the first 39-GHz phased-array transceiver (TRX) chipset for fifth-
generation new radio (5G NR). The proposed transceiver chipset consists of 4 sub-array …

Solving the 5G mobile antenna puzzle: Assessing future directions for the 5G mobile antenna paradigm shift

W Hong - IEEE microwave magazine, 2017 - ieeexplore.ieee.org
Advances in antenna technologies for cellular hand-held devices have been synchronous
with the evolution of mobile phones over nearly 40 years. Having gone through four major …

0.13-m CMOS Phase Shifters for X-, Ku-, and K-Band Phased Arrays

KJ Koh, GM Rebeiz - IEEE Journal of Solid-State Circuits, 2007 - ieeexplore.ieee.org
Two 4-bit active phase shifters integrated with all digital control circuitry in 0.13-μm RF
CMOS technology are developed for X-and K u-band (8–18 GHz) and K-band (18–26 GHz) …

A fully-integrated 77-GHz FMCW radar transceiver in 65-nm CMOS technology

J Lee, YA Li, MH Hung… - IEEE Journal of Solid-State …, 2010 - ieeexplore.ieee.org
A fully-integrated FMCW radar system for automotive applications operating at 77 GHz has
been proposed. Utilizing a fractional-synthesizer as the FMCW generator, the transmitter …

A 77-GHz phased-array transceiver with on-chip antennas in silicon: Receiver and antennas

A Babakhani, X Guan, A Komijani… - IEEE Journal of Solid …, 2006 - ieeexplore.ieee.org
In this paper, we present the receiver and the on-chip antenna sections of a fully integrated
77-GHz four-element phased-array transceiver with on-chip antennas in silicon. The …