Spatial Bandwidth Asymptotic Analysis for 3D Large-Scale Antenna Array Communications
Journal article, 2024

In this paper, we study the spatial bandwidth for line-of-sight (LOS) channels with linear large-scale antenna arrays (LSAAs) in 3D space. We provide approximations to the spatial bandwidth at the center of the receiving array, of the form $C R^{-B}$, where $R$ is the radial distance, and $C$ and $B$ are directional-dependent and piecewise constant in $R$. The approximations are valid in the entire radiative region, that is, for $R$ greater than a few wavelengths. When the length of the receiving array is small relative to $R$, the product of the array length and the spatial bandwidth provides an estimate of the available spatial degree-of-freedom (DOF) in the channel. In a case study, we apply these approximations to the evaluation of spatial multiplexing regions under random orientation conditions. The goodness-of-fit of the approximations is demonstrated and some interesting findings about the DOF performance of the channel under 3D and 2D orientation restrictions are obtained, e.g., that, under some conditions, it is better to constrain the receiving array orientation to be uniform over the unit circle in the 2D ground plane rather than uniform over the 3D unit sphere.

degree-of-freedom

Bandwidth

Wireless communication

Antenna arrays

Eigenvalues and eigenfunctions

spatial multiplexing

Large-scale antenna array

Space division multiplexing

spatial bandwidth

Frequency measurement

Three-dimensional displays

Author

Liqin Ding

Chalmers, Electrical Engineering, Communication, Antennas and Optical Networks

Jiliang Zhang

Northeastern University China

Erik Ström

Chalmers, Electrical Engineering, Communication, Antennas and Optical Networks

IEEE Transactions on Wireless Communications

15361276 (ISSN) 15582248 (eISSN)

Vol. 23 4 2638-2652

Value-of-Information Driven Communication for Connected and Automated Transportation (VoiiComm)

European Commission (EC) (EC/H2020/887732), 2020-10-26 -- 2022-10-25.

Areas of Advance

Information and Communication Technology

Subject Categories

Telecommunications

Communication Systems

DOI

10.1109/TWC.2023.3301034

More information

Latest update

4/27/2024