A New Look at MIMO Capacity in the Millimeter Wave

10/25/2017
by   Sayed Amir Hoseini, et al.
0

In this paper, we present a new theoretical discovery that the multiple-input and multiple-output (MIMO) capacity can be influenced by atmosphere molecules. In more detail, some common atmosphere molecules, such as Oxygen and water, can absorb and re-radiate energy in their natural resonance frequencies, such as 60GHz, 120GHz, and 180GHz, which belong to the millimeter wave (mmWave) spectrum. Such phenomenon can provide equivalent non-line-of-sight (NLoS) paths in an environment that lacks scatterers, and thus greatly improve the spatial multiplexing and diversity of a MIMO system. This kind of performance improvement is particularly useful for most mmWave communications that heavily rely on line-of-sight (LoS) transmissions. To sum up, our study concludes that since the molecular re-radiation happens at certain mmWave frequency bands, the MIMO capacity becomes highly frequency selective and enjoys a considerable boosting at those mmWave frequency bands. The impact of our new discovery is significant, which fundamentally changes our understanding on the relationship between the MIMO capacity and the frequency spectrum. In particular, our results predict that several mmWave bands can serve as valuable spectrum windows for high-efficiency MIMO communications, which in turn may shift the paradigm of research, standardization, and implementation in the field of mmWave communications.

READ FULL TEXT

page 1

page 2

page 3

page 4

research
02/03/2021

Analyzing the Impact of Molecular Re-Radiation on the MIMO Capacity in High-Frequency Bands

In this paper, we show how the absorption and re-radiation energy from m...
research
06/13/2020

Line-of-Sight MIMO for High Capacity Millimeter Wave Backhaul in FDD Systems

Wireless backhaul is considered to be the key part of the future wireles...
research
03/29/2018

Massive MIMO in Sub-6 GHz and mmWave: Physical, Practical, and Use-Case Differences

The use of base stations (BSs) and access points (APs) with a large numb...
research
09/30/2019

Large Intelligent Surface for Positioning in Millimeter Wave MIMO Systems

Millimeter-wave (mmWave) multiple-input multiple-output (MIMO) system fo...
research
04/13/2020

MIMO Detection for Reconfigurable Intelligent Surface-Assisted Millimeter Wave Systems

Millimeter wave (mmWave) band, or high frequencies such as THz, has larg...
research
08/04/2020

Terahertz Line-Of-Sight MIMO Communication: Theory and Practical Challenges

A relentless trend in wireless communications is the hunger for bandwidt...
research
02/08/2022

ns-3 and 5G-LENA extensions to support MIMO

MIMO spatial multiplexing is an essential feature to increase the commun...

Please sign up or login with your details

Forgot password? Click here to reset