2014Unpublished venueRequires access

Fading characteristics in the 26GHz band indoor quasi-static environment

Kentaro Saito, T. Imai, Yukihiko Okumura

Open publisher page 5 citations

Abstract

Recently, the challenges of the utilization of higher frequency bands for cellular systems have been attracting attention. In these high frequency bands, besides the higher propagation losses, the propagation channel tends to suffer more severe shadowing by pedestrians in the environments. In this paper, we carried out measurements in the 26GHz band in an indoor quasi-static environment for figuring out the received power characteristics of the upper SHF band. The results show that the more severe received power variation occurred in the 26GHz band compared with the 2GHz band.

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What this paper is about

Recently, the challenges of the utilization of higher frequency bands for cellular systems have been attracting attention. In these high frequency bands, besides the higher propagation losses, the propagation channel tends to suffer more severe shadowing by pedestrians in the environments. In this paper, we carried out measurements in the 26GHz band in an indoor quasi-static environment for figuring out the received power characteristics of the upper SHF band. The results show that the more severe received power variation occurred in the 26GHz band compared with the 2GHz band.

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OpenAlex reports 5 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

Recently, the challenges of the utilization of higher frequency bands for cellular systems have been attracting attention. In these high frequency bands, besides the higher propagation losses, the propagation channel tends to suffer more severe shadowing by pedestrians in the environments. In this paper, we carried out measurements in the 26GHz band in an indoor quasi-static environment for figuring out the received power characteristics of the upper SHF band. The results show that the more severe received power variation occurred in the 26GHz band compared with the 2GHz band.

Key concepts: Fading, Figuring, Frequency band, Radio spectrum, Power (physics), Channel (broadcasting), Computer science, Electronic engineering

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