Indoor Propagation Modeling at 2.4 GHz for IEEE 802.11 Networks
Robert Akl, Dinesh Tummala, Xinrong Li
Abstract
Robert Akl, Dinesh Tummala, Xinrong Li
Abstract
The purpose of this study is to characterize the indoor channel for 802.11 wireless local area networks at 2.4 GHz frequency. This work presents a channel model based on measurements conducted in commonly found scenarios in buildings. These scenarios include closed corridor, open corridor, classroom, and computer lab. Path loss equations are determined using log-distance path loss model and lognormal shadowing. The Chi-square test statistic values for each access point are calculated to prove that the observed fading is a normal distribution at 5 % significance level. A numerical analysis of measurements in each scenario was conducted and the study determined equations that describe path loss for each scenario.
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The purpose of this study is to characterize the indoor channel for 802.11 wireless local area networks at 2.4 GHz frequency. This work presents a channel model based on measurements conducted in commonly found scenarios in buildings. These scenarios include closed corridor, open corridor, classroom, and computer lab. Path loss equations are determined using log-distance path loss model and lognormal shadowing. The Chi-square test statistic values for each access point are calculated to prove that the observed fading is a normal distribution at 5 % significance level. A numerical analysis of measurements in each scenario was conducted and the study determined equations that describe path loss for each scenario.
Key concepts: Path loss, Log-distance path loss model, Radio propagation model, Transmitter, Radio propagation, Shadow mapping, Computer science, Channel (broadcasting)