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Optimization of Antenna Beamwidth under Blockage Impact in Millimeter-Wave Bands

机译:毫米波频段堵塞冲击下天线波束宽度的优化

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In this paper, beam expansion and optimization approach is proposed as a solution to alleviate blockage impact at millimeter wave (mm-wave) frequency bands. Directional communication in mm-wave bands provides opportunities to combat with high-level propagation loss. However, initiating communication over a certain direction makes the link vulnerable against blockage impact. In this study, an investigation on antenna directionality is conducted through indoor measurements and statistical analysis to elaborate directional link performance under blockage effect. Measurements are conducted at 60 GHz frequency band by using 15° half power beamwidth (HPBW) antennas at transmitter (TX) and receiver (RX). Beam expansion approach is evaluated by power azimuth spectrum (PAS) analysis. The proposed approach is also statistically analyzed using mm-wave channel simulator. It is shown that the beam optimization approach provides up to 13 dB gain (2 dB in average) on the received signal strength (RSS).
机译:在本文中,提出了光束膨胀和优化方法作为减轻毫米波(MM波)频带的阻塞冲击的解决方案。 MM波段中的定向通信为与高级传播损耗进行打击提供了机会。然而,在某个方向上启动沟通使得链接易受阻塞的影响。在该研究中,通过室内测量和统计分析进行天线方向性的研究,以便在堵塞效果下制定定向链接性能。通过在发射机(Tx)和接收器(Rx)处,通过使用15°半功率波束宽度(HPBW)天线在60GHz频带中进行测量。光束扩展方法是通过功率方位点谱(PAS)分析来评估的。使用MM波通道模拟器还统计分析所提出的方法。结果表明,光束优化方法在接收的信号强度(RSS)上提供高达13dB的增益(平均平均2 dB)。

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