20172017 Sixth Asia-Pacific Conference on Antennas and Propagation (APCAP)Requires access

Simulation and analysis of millimeter-wave propagation characteristics in the office environment

Xiang Zhu, Yuanjian Liu, Shuangde Li, Zhipeng Chen

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Abstract

Ray-tracing method is an effective way to study radio propagation in indoor office environment. In this paper, indoor propagation characteristics are simulated and analyzed based on the method of SBR/Image(Shooting and bouncing ray tracing/Image) at 60GHz. The millimeter wave propagation characteristics are discussed in office environment for LOS (Line-of-Sight) and NLOS (Non-Line-of-Sight) conditions. And then the propagation characteristics including received power and RMS delay spread. Effects of millimeter wave propagation characteristics in propagation numbers was investigated.

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What this paper is about

Ray-tracing method is an effective way to study radio propagation in indoor office environment. In this paper, indoor propagation characteristics are simulated and analyzed based on the method of SBR/Image(Shooting and bouncing ray tracing/Image) at 60GHz. The millimeter wave propagation characteristics are discussed in office environment for LOS (Line-of-Sight) and NLOS (Non-Line-of-Sight) conditions. And then the propagation characteristics including received power and RMS delay spread. Effects of millimeter wave propagation characteristics in propagation numbers was investigated.

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Available abstract

Ray-tracing method is an effective way to study radio propagation in indoor office environment. In this paper, indoor propagation characteristics are simulated and analyzed based on the method of SBR/Image(Shooting and bouncing ray tracing/Image) at 60GHz. The millimeter wave propagation characteristics are discussed in office environment for LOS (Line-of-Sight) and NLOS (Non-Line-of-Sight) conditions. And then the propagation characteristics including received power and RMS delay spread. Effects of millimeter wave propagation characteristics in propagation numbers was investigated.

Key concepts: Non-line-of-sight propagation, Ray tracing (physics), Extremely high frequency, Radio propagation, Radio propagation model, Wave propagation, Millimeter, Line-of-sight

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