Reprint

Antenna Designs for 5G/IoT and Space Applications

Edited by
October 2022
268 pages
  • ISBN978-3-0365-5151-7 (Hardback)
  • ISBN978-3-0365-5152-4 (PDF)

This book is a reprint of the Special Issue Antenna Designs for 5G/IoT and Space Applications that was published in

Computer Science & Mathematics
Engineering
Physical Sciences
Summary

This book is intended to shed some light on recent advances in antenna design for these new emerging applications and identify further research areas in this exciting field of communications technologies. Considering the specificity of the operational environment, e.g., huge distance, moving support (satellite), huge temperature drift, small dimension with respect to the distance, etc, antennas, are the fundamental device allowing to maintain a constant interoperability between ground station and satellite, or different satellites. High gain, stable (in temperature, and time) performances, long lifecycle are some of the requirements that necessitates special attention with respect to standard designs. The chapters of this book discuss various aspects of the above-mentioned list presenting the view of the authors. Some of the contributors are working strictly in the field (space), so they have a very targeted view on the subjects, while others with a more academic background, proposes futuristic solutions. We hope that interested reader, will find a fertile source of information, that combined with their interest/background will allow efficiently exploiting the combination of these two perspectives.

Format
  • Hardback
License
© 2022 by the authors; CC BY-NC-ND license
Keywords
5G; sub-6 GHz; MIMO; dual-band antenna; smartphone; phase gradient; radar cross section reduction; square patch unit cell; modulated surface; base station antenna challenges; multiband antennas; multibeam antennas; antenna arrays; smartphone antennas; 5G; multiple-input multiple-output (MIMO); flexible; four-element; 5G; antenna array; CST; sub-6 GHz; MIMO; SAR; monopole antenna; two-antenna MIMO; slot loaded; Sub-6 GHz; IEEE 802.11ac/ac; X-band; C-band; shared radiator; conformal; mmWave 5G; 28 GHz band; multi-band; UWB; 5G communications; sub-6 GHz; notches; bowtie-shaped; multiband; MIMO; time-domain analysis; sub-GHz; meandered loop; frequency agile; IoT antenna; 5G antenna; circular rings; dual-beam; mm-wave; efficiency; gain; linear array; 5G; antennas; SISO antennas; n257; n258; n261; antenna arrays; CubeSat missions; CubeSat antennas; miniaturized satellites; single element antennas; CubeSat subsystems; antenna selection; antenna designs; microwave imaging; ultra-wideband; fractal antenna; co-planar waveguide; fractional bandwidth; group delay; 6G communications; characteristic mode analysis (CMA); dumbbell-structure; graphene; metamaterial; MIMO antenna; IoT; MIMO; mmWave; plow-shape; polarization diversity; n/a