2014Unpublished venueRequires access

A path loss model for 300-GHz wireless channels

Seung-Hwan Kim, Alenka Zajić

Open publisher page 15 citations

Abstract

This paper presents the path loss model for 300 - 320 GHz wireless channels.The single-slope large-scale path loss model that includes log-normal shadow fading is devised from the large set of measured data. A good match between the modelled and the measured path loss is observed. The results show that for short distances, the path loss exponent is around 2 and the shadow fading is the smallest at the center of the frequency band of interest.

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What this paper is about

This paper presents the path loss model for 300 - 320 GHz wireless channels.The single-slope large-scale path loss model that includes log-normal shadow fading is devised from the large set of measured data. A good match between the modelled and the measured path loss is observed. The results show that for short distances, the path loss exponent is around 2 and the shadow fading is the smallest at the center of the frequency band of interest.

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OpenAlex reports 15 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

This paper presents the path loss model for 300 - 320 GHz wireless channels.The single-slope large-scale path loss model that includes log-normal shadow fading is devised from the large set of measured data. A good match between the modelled and the measured path loss is observed. The results show that for short distances, the path loss exponent is around 2 and the shadow fading is the smallest at the center of the frequency band of interest.

Key concepts: Log-distance path loss model, Path loss, Fading, Path (computing), Shadow mapping, Wireless, Exponent, Shadow (psychology)

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