4.7 Article

Theoretical analysis and comparison of OAM waves generated by three kinds of antenna array

期刊

DIGITAL COMMUNICATIONS AND NETWORKS
卷 7, 期 1, 页码 16-28

出版社

KEAI PUBLISHING LTD
DOI: 10.1016/j.dcan.2020.09.009

关键词

Orbital angular momentum; Circularly polarized wave; Antenna array; Theoretical formula

资金

  1. National Natural Science Foundation of China [NSFC 61771213]
  2. Shanghai Aerospace Science and Technology Innovation Fund [SAST2017-113]
  3. Fundamental Research Funds for the Central Universities [HUST2016JCTD203, 2018KFYYXJJ140]

向作者/读者索取更多资源

This paper investigates the characteristics of OAM waves generated by different types of dipole antenna arrays, and finds that the best OAM waves are produced by the same direction antenna array, while the other two antenna arrays have lower energy carrying pure OAM waves.
Antenna array is one of the methods which can generate Orbital Angular Momentum (OAM) waves. However, OAM waves generated by different antenna arrays have different characteristics of Electric-field (E-field) components' distribution and radiation patterns. In order to solve this problem, we derive E-field formulas of OAM waves generated by different kinds of dipole antenna array in this paper. The dipole antenna arrays are arranged by three methods: 1) antenna elements are in the same direction of y axis, 2) antenna elements are in the radial direction and 3) antenna elements are in the azimuthal direction. Results show that x components, y components and z components carry different OAM modes under the three conditions. Simulation results show that the same direction antenna array produces the best OAM waves because the y component is dominated by OAM mode l and RHCP/LHCP waves are negligible in energy, while the pure OAM waves carried by the z components generated by the other two antenna arrays have little energy. In addition, only the radiation pattern of l = 0 produced by the same direction antenna array does not have a null zone in the propagation direction. Radiation patterns of l = +/- 1 do not have null zones in the propagation direction generated by other two antenna arrays.

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