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Channel Modeling and Performance Analysis of Directional THz Links Under Pointing Errors and α-μ Distribution
This paper focuses on providing an analytical framework for the quantification and evaluation of high-directional terahertz communication links under pointing errors in terms of outage probability (OP), channel capacity, and symbol error rate (SER). To this end, the probability density function and...
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Published in: | IEEE communications letters 2023-03, Vol.27 (3), p.1-1 |
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description | This paper focuses on providing an analytical framework for the quantification and evaluation of high-directional terahertz communication links under pointing errors in terms of outage probability (OP), channel capacity, and symbol error rate (SER). To this end, the probability density function and cumulative distribution function of the end-to-end channel are derived in the presence of pointing errors and small-scale fading. Then, closed-form expressions are derived for the OP, average channel capacity, and SER along with the asymptotic expressions for all the aforementioned performance metrics. Using numerical integral results, the accuracy of the analytical derivations are confirmed. Finally, we use the provided analytical expressions to evaluate the effect of the channel parameters on the system performance in terms of OP, channel capacity, and SER. |
doi_str_mv | 10.1109/LCOMM.2023.3236949 |
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To this end, the probability density function and cumulative distribution function of the end-to-end channel are derived in the presence of pointing errors and small-scale fading. Then, closed-form expressions are derived for the OP, average channel capacity, and SER along with the asymptotic expressions for all the aforementioned performance metrics. Using numerical integral results, the accuracy of the analytical derivations are confirmed. Finally, we use the provided analytical expressions to evaluate the effect of the channel parameters on the system performance in terms of OP, channel capacity, and SER.</description><identifier>ISSN: 1089-7798</identifier><identifier>EISSN: 1558-2558</identifier><identifier>DOI: 10.1109/LCOMM.2023.3236949</identifier><identifier>CODEN: ICLEF6</identifier><language>eng</language><publisher>New York: IEEE</publisher><subject>Antennas ; Channel capacity ; Directional antennas ; Distribution functions ; Errors ; Exact solutions ; Fading channels ; Performance measurement ; pointing error ; Probability ; Probability density function ; Probability density functions ; Signal to noise ratio ; THz</subject><ispartof>IEEE communications letters, 2023-03, Vol.27 (3), p.1-1</ispartof><rights>Copyright The Institute of Electrical and Electronics Engineers, Inc. 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To this end, the probability density function and cumulative distribution function of the end-to-end channel are derived in the presence of pointing errors and small-scale fading. Then, closed-form expressions are derived for the OP, average channel capacity, and SER along with the asymptotic expressions for all the aforementioned performance metrics. Using numerical integral results, the accuracy of the analytical derivations are confirmed. Finally, we use the provided analytical expressions to evaluate the effect of the channel parameters on the system performance in terms of OP, channel capacity, and SER.</description><subject>Antennas</subject><subject>Channel capacity</subject><subject>Directional antennas</subject><subject>Distribution functions</subject><subject>Errors</subject><subject>Exact solutions</subject><subject>Fading channels</subject><subject>Performance measurement</subject><subject>pointing error</subject><subject>Probability</subject><subject>Probability density function</subject><subject>Probability density functions</subject><subject>Signal to noise ratio</subject><subject>THz</subject><issn>1089-7798</issn><issn>1558-2558</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2023</creationdate><recordtype>article</recordtype><recordid>eNpNkM1OAjEQxzdGExF9AeOhiefFfuxHeyQrigkEDnDelO5Ui0uL7XLAt_LuM_BM7gIHLzOTyfz-mfyi6J7gASFYPE2K2XQ6oJiyAaMsE4m4iHokTXlM23LZzpiLOM8Fv45uQlhjjDlNSS9yxYe0Fmo0dRXUxr4jaSs0B6-d30irAA2trPfBBOQ0ejYeVGNcu0KL8TeaGPsZ0NJW4NHcGdt0ASPvnQ_HnMNPfPhtqdB4s9p14G10pWUd4O7c-9HyZbQoxvFk9vpWDCexoiJrYiZyjZOMMBBpwhOhkgy4ytVKKs0ECAoqEQRXWELFyUrKvNIkzVpECqaxZv3o8ZS79e5rB6Ep127n279DSXOeJkmWEdpe0dOV8i4ED7rcerORfl8SXHZiy6PYshNbnsW20MMJMgDwD8CEU56yP1HlduQ</recordid><startdate>20230301</startdate><enddate>20230301</enddate><creator>Badarneh, Osamah S.</creator><creator>Dabiri, Mohammad T.</creator><creator>Hasna, Mazen</creator><general>IEEE</general><general>The Institute of Electrical and Electronics Engineers, Inc. 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subjects | Antennas Channel capacity Directional antennas Distribution functions Errors Exact solutions Fading channels Performance measurement pointing error Probability Probability density function Probability density functions Signal to noise ratio THz |
title | Channel Modeling and Performance Analysis of Directional THz Links Under Pointing Errors and α-μ Distribution |
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