2021
DOI: 10.48550/arxiv.2108.04918
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Stochastic Geometry Analysis of IRS-Assisted Downlink Cellular Networks

Abstract: Using stochastic geometry tools, we develop a comprehensive framework to analyze the downlink coverage probability, ergodic capacity, and energy efficiency (EE) of various types of users (e.g., users served by direct base station (BS) transmissions and indirect intelligent reflecting surface (IRS)-assisted transmissions) in a cellular network with multiple BSs and IRSs. The proposed stochastic geometry framework can capture the impact of channel fading, locations of BSs and IRSs, arbitrary phase-shifts and int… Show more

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Cited by 1 publication
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References 30 publications
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“…Kudathanthirige et al [17] derive the performance metrics of IRS-assisted systems over Rayleigh fading. Using stochastic geometry to analyze the IRS-Assisted Downlink Cellular Networks is investigated in Shafique et al [18]. In Ma et al [19], by considering UAV as an aerial user and placing RIS on a surrounding building, the communication channel at a UAV is improved.…”
Section: Related Workmentioning
confidence: 99%
“…Kudathanthirige et al [17] derive the performance metrics of IRS-assisted systems over Rayleigh fading. Using stochastic geometry to analyze the IRS-Assisted Downlink Cellular Networks is investigated in Shafique et al [18]. In Ma et al [19], by considering UAV as an aerial user and placing RIS on a surrounding building, the communication channel at a UAV is improved.…”
Section: Related Workmentioning
confidence: 99%