2014Unpublished venueRequires access

Path Loss and Fading Characterization at 2. 4 GHz for Indoor Scenario

P. C. Bapna, Shashikant Joshi, Neha Kothari, Dhruv Kothari

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Abstract

A measurement exercise is undertaken to determine path loss and fading behavior of the propagation channel through RF level measurements. Path loss exponent is computed for LOS and NLOS antenna positions in a building that predicts effect of wall partitions, number of floors at 2.4 GHz. Further, the channel fading is derived to understand the exact fading behavior by virtue of obtaining CDF of the fading distribution of the received data. The fading distribution of the received signal is compared to standard distributions mainly Rayleigh, Rician and Lognormal.

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What this paper is about

A measurement exercise is undertaken to determine path loss and fading behavior of the propagation channel through RF level measurements. Path loss exponent is computed for LOS and NLOS antenna positions in a building that predicts effect of wall partitions, number of floors at 2.4 GHz. Further, the channel fading is derived to understand the exact fading behavior by virtue of obtaining CDF of the fading distribution of the received data. The fading distribution of the received signal is compared to standard distributions mainly Rayleigh, Rician and Lognormal.

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Available abstract

A measurement exercise is undertaken to determine path loss and fading behavior of the propagation channel through RF level measurements. Path loss exponent is computed for LOS and NLOS antenna positions in a building that predicts effect of wall partitions, number of floors at 2.4 GHz. Further, the channel fading is derived to understand the exact fading behavior by virtue of obtaining CDF of the fading distribution of the received data. The fading distribution of the received signal is compared to standard distributions mainly Rayleigh, Rician and Lognormal.

Key concepts: Rician fading, Fading, Fading distribution, Log-distance path loss model, Path loss, Non-line-of-sight propagation, Rayleigh fading, Log-normal distribution

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