2020Unpublished venueRequires access

Analysis of Millimeter-Wave Channel Characteristics in Urban Microcell Environment Based on the SBR Method

Xijia Bian, Yuanjian Liu, Shuangde Li

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Abstract

Wireless communication at millimeter-wave bands has been a research hot spot in the latest years. In this paper, a typical urban microcell environment is simulated at 73 GHz in line-of-sight scenarios (LoS) and non-line-of-sight (NLoS) scenarios by the SBR method. First, the validity of the SBR method is verified by comparing the measurement and simulation results of path loss. Next, the propagation characteristics in LoS and NLoS scenarios are studied, such as power angle profiles and power delay angle profiles. Some characteristics of the millimeter-wave channel are revealed from these analyses.

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What this paper is about

Wireless communication at millimeter-wave bands has been a research hot spot in the latest years. In this paper, a typical urban microcell environment is simulated at 73 GHz in line-of-sight scenarios (LoS) and non-line-of-sight (NLoS) scenarios by the SBR method. First, the validity of the SBR method is verified by comparing the measurement and simulation results of path loss. Next, the propagation characteristics in LoS and NLoS scenarios are studied, such as power angle profiles and power delay angle profiles. Some characteristics of the millimeter-wave channel are revealed from these analyses.

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Available abstract

Wireless communication at millimeter-wave bands has been a research hot spot in the latest years. In this paper, a typical urban microcell environment is simulated at 73 GHz in line-of-sight scenarios (LoS) and non-line-of-sight (NLoS) scenarios by the SBR method. First, the validity of the SBR method is verified by comparing the measurement and simulation results of path loss. Next, the propagation characteristics in LoS and NLoS scenarios are studied, such as power angle profiles and power delay angle profiles. Some characteristics of the millimeter-wave channel are revealed from these analyses.

Key concepts: Microcell, Non-line-of-sight propagation, Extremely high frequency, Path loss, Channel (broadcasting), Line-of-sight, Power delay profile, Wireless

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