Coverage and Rate in MIMO Cellular Networks With Location-Aware Transmission Rank Selection
In this letter, we study the performance of a multiple-input multiple-output (MIMO) cellular network with location-aware transmission rank selection, where the number of transmit streams for every base-station (BS) and user equipment (UE) link is determined based on the average received power at the...
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Veröffentlicht in: | IEEE wireless communications letters 2022-10, Vol.11 (10), p.2026-2030 |
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creator | Lone, Afaq A. Gupta, Abhishek K. Dhillon, Harpreet S. Sharma, Somya |
description | In this letter, we study the performance of a multiple-input multiple-output (MIMO) cellular network with location-aware transmission rank selection, where the number of transmit streams for every base-station (BS) and user equipment (UE) link is determined based on the average received power at the UE (hence, the link distance). We assume open-loop zero-forcing beam-forming (OL-ZFBF) at the receiver. We first develop a stochastic geometry based analytical framework for this setup by including the adaptive rank as a mark of each BS. Using this framework, we derive the coverage probability and spectral efficiency (SE) as a function of the rank selection threshold. Our analysis demonstrates that selecting transmission rank for each link on the basis of distance improves SE. We also investigate the tradeoff between coverage probability and SE. |
doi_str_mv | 10.1109/LWC.2022.3191137 |
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We assume open-loop zero-forcing beam-forming (OL-ZFBF) at the receiver. We first develop a stochastic geometry based analytical framework for this setup by including the adaptive rank as a mark of each BS. Using this framework, we derive the coverage probability and spectral efficiency (SE) as a function of the rank selection threshold. Our analysis demonstrates that selecting transmission rank for each link on the basis of distance improves SE. 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We assume open-loop zero-forcing beam-forming (OL-ZFBF) at the receiver. We first develop a stochastic geometry based analytical framework for this setup by including the adaptive rank as a mark of each BS. Using this framework, we derive the coverage probability and spectral efficiency (SE) as a function of the rank selection threshold. Our analysis demonstrates that selecting transmission rank for each link on the basis of distance improves SE. We also investigate the tradeoff between coverage probability and SE.</description><subject>Beamforming</subject><subject>Cellular communication</subject><subject>Cellular networks</subject><subject>Fading channels</subject><subject>Geometry</subject><subject>Interference</subject><subject>MIMO</subject><subject>MIMO communication</subject><subject>open loop zero-forcing beamforming</subject><subject>poisson point process</subject><subject>stochastic geometry</subject><subject>Stochastic processes</subject><subject>Transmitting antennas</subject><issn>2162-2337</issn><issn>2162-2345</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2022</creationdate><recordtype>article</recordtype><sourceid>RIE</sourceid><recordid>eNo9kE1Lw0AQhhdRsNTeBS8LnlP3K9nkWIIfhdSCVnrwECabiaZNk7qbWvz3bmnpXmYZnneGeQi55WzMOUsesmU6FkyIseQJ51JfkIHgkQiEVOHl-S_1NRk5t2L-RYwLHg_IZ9r9ooUvpNCW9A16pHVLZ9PZnKbYNLsGLH3Fft_ZtaPLuv-mWWegr7s2mOzBIl1YaN2mds63fL5d03ds0ByIG3JVQeNwdKpD8vH0uEhfgmz-PE0nWWCEUn1QqQhAgyyNiGQZSikSbQqmIaoKFcahP0zrMuGoVBErAyVgKUVhklLHYGQlh-T-OHdru58duj5fdTvb-pW50EKEKpIs9BQ7UsZ2zlms8q2tN2D_cs7yg8XcW8wPFvOTRR-5O0ZqRDzjSSySOGLyH72ObRo</recordid><startdate>20221001</startdate><enddate>20221001</enddate><creator>Lone, Afaq A.</creator><creator>Gupta, Abhishek K.</creator><creator>Dhillon, Harpreet S.</creator><creator>Sharma, Somya</creator><general>IEEE</general><general>The Institute of Electrical and Electronics Engineers, Inc. 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We assume open-loop zero-forcing beam-forming (OL-ZFBF) at the receiver. We first develop a stochastic geometry based analytical framework for this setup by including the adaptive rank as a mark of each BS. Using this framework, we derive the coverage probability and spectral efficiency (SE) as a function of the rank selection threshold. Our analysis demonstrates that selecting transmission rank for each link on the basis of distance improves SE. We also investigate the tradeoff between coverage probability and SE.</abstract><cop>Piscataway</cop><pub>IEEE</pub><doi>10.1109/LWC.2022.3191137</doi><tpages>5</tpages><orcidid>https://orcid.org/0000-0003-2829-9449</orcidid><orcidid>https://orcid.org/0000-0002-4282-7407</orcidid><orcidid>https://orcid.org/0000-0002-9240-1033</orcidid></addata></record> |
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subjects | Beamforming Cellular communication Cellular networks Fading channels Geometry Interference MIMO MIMO communication open loop zero-forcing beamforming poisson point process stochastic geometry Stochastic processes Transmitting antennas |
title | Coverage and Rate in MIMO Cellular Networks With Location-Aware Transmission Rank Selection |
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