3.9 Article

Performance Optimization of High-Altitude Platform Wireless Communication Network Exploiting TVWS Spectrums Based on Modified PSO

期刊

IEEE OPEN JOURNAL OF VEHICULAR TECHNOLOGY
卷 3, 期 -, 页码 356-366

出版社

IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
DOI: 10.1109/OJVT.2022.3191762

关键词

Antenna arrays; Wireless communication; Optimization; Costs; Phased arrays; Broadband communication; Antenna radiation patterns; Antenna array; array factor; beam pattern; carrier to interference ratio; high altitude platform; sidelobe level; TVWS; uniform hexagonal array

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This article presents a modified PSO approach for reducing the sidelobe level of UHA antennas in HAP wireless networks using the TVWS spectrum. Simulation results show that the proposed approach outperforms the standard PSO algorithm and uniform weighting scheme in terms of sidelobe reduction and CIR performance improvement.
The Uniform hexagonal array (UHA) sidelobe level (SLL) reduction is a crucial consideration for avoiding co-channel interference and improving Carrier-to-interference Ratio (CIR) performance in HAP wireless networks using the TVWS spectrum. The SLL reduction in UHA has been researched by applying evolutionary algorithms such as genetic algorithm (GA) and Particle Swarm Optimization (PSO). However, such algorithms have the drawbacks such as early convergence and the inability to reach globally. The beam pointing approaches for UHA antennas using Modified PSO (MPSO), for reducing the SLL on finding the optimal current weights is presented in this article. The UHA antenna array with 19 cells fitted with 169 elements in the HAPs cellular structure is considered to simulate the proposed approach. Then, the MPSO approach is employed and compared with the standard PSO algorithm and Uniform Weighting (UW) scheme. As per the simulation findings, the proposed approach drastically decreased sidelobes, with a reduction of up to -6.84dB and -13.3dB when compared to PSO and UW respectively. In other words, the proposed approach outperforms the UW and the PSO algorithms. Moreover, the CIR performance of the proposed approach has been demonstrated in terms of average outage probability and the proposed approach provides a better result.

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