Title :
UCA-based orbital angular momentum radio beam generation and reception under different array configurations
Author :
Huayang Wu ; Yuqing Yuan ; Zhaoyang Zhang ; Ji Cang
Author_Institution :
Dept. of Inf. Sci. & Electron. Eng., Zhejiang Univ., Hangzhou, China
Abstract :
The Orbital-Angular-Momentum (OAM)-carrying radio waves may provide extra rotational degree of freedom, which may potentially increase channel capacity and spectrum efficiency for future wireless communications. It has been demonstrated that circular antenna array could radiate OAM-carrying radio beam by feeding each element with certain phase offset. In this paper, by proper analyses and extensive simulations on the spatial amplitude and phase characteristics of the radiated electromagnetic field under three different array configurations, i.e., radial array, tangential array, and uniform circular array (UCA), respectively. We found that among the above settings UCA is the best way to generate the desired OAM-carrying beam with linear excitation. We then use multiple concentric antenna rings with elements of half-wave dipoles to generate and demultiplex multiple OAM states, and both spectral analyses and simulations verified the feasibility.
Keywords :
angular momentum; antenna arrays; channel capacity; dipole antenna arrays; electromagnetic fields; radio spectrum management; radiowave propagation; spectral analysis; OAM state multiplexing; UCA configuration; UCA-based orbital angular momentum radio beam generation; UCA-based orbital angular momentum radio beam reception; channel capacity; concentric antenna rings; electromagnetic field radiation; half-wave dipole; linear excitation; phase characteristics; radial array configuration; radio wave; spatial amplitude; spectral analyses; spectrum efficiency; tangential array configuration; uniform circular antenna array; wireless communication; Antenna arrays; Arrays; Demultiplexing; Dipole antennas; Spectral analysis; Wireless communication; OAM demultiplexing; circular antenna array; linear excitation; orbital angular momentum; uniform circular array (UCA);
Conference_Titel :
Wireless Communications and Signal Processing (WCSP), 2014 Sixth International Conference on
Conference_Location :
Hefei
DOI :
10.1109/WCSP.2014.6992134