Low-complexity linear precoding for downlink large-scale MIMO systems
In this work, we present a low-complexity linear precoding scheme for downlink large-scale multiple-input multiple-output (MIMO) systems. The proposed scheme can achieve near minimum mean square error (MMSE) precoding performance in terms of the sum rate and is based on a matrix polynomial instead o...
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creator | Zarei, Shahram Gerstacker, Wolfgang Muller, Ralf R. Schober, Robert |
description | In this work, we present a low-complexity linear precoding scheme for downlink large-scale multiple-input multiple-output (MIMO) systems. The proposed scheme can achieve near minimum mean square error (MMSE) precoding performance in terms of the sum rate and is based on a matrix polynomial instead of matrix inversion. Simulation results show that matrix polynomials consisting of only a few terms are sufficient to closely approach the sum rate of the classical MMSE precoder and to perform orders of magnitude better than the simple conjugate beamforming (BF) precoder. We derive exact expressions for the computational complexity of the proposed scheme in terms of the number of additions and multiplications and compare it to the complexity of the BF and MMSE precoders. Our complexity analysis shows that for large number of base station antennas N compared to the number of generated transmit symbols τ per channel estimate and large number of users K, the proposed polynomial precoder has a lower complexity than the classical MMSE precoder. |
doi_str_mv | 10.1109/PIMRC.2013.6666306 |
format | Conference Proceeding |
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The proposed scheme can achieve near minimum mean square error (MMSE) precoding performance in terms of the sum rate and is based on a matrix polynomial instead of matrix inversion. Simulation results show that matrix polynomials consisting of only a few terms are sufficient to closely approach the sum rate of the classical MMSE precoder and to perform orders of magnitude better than the simple conjugate beamforming (BF) precoder. We derive exact expressions for the computational complexity of the proposed scheme in terms of the number of additions and multiplications and compare it to the complexity of the BF and MMSE precoders. 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Our complexity analysis shows that for large number of base station antennas N compared to the number of generated transmit symbols τ per channel estimate and large number of users K, the proposed polynomial precoder has a lower complexity than the classical MMSE precoder.</description><subject>Downlink</subject><subject>MIMO</subject><subject>Optimization</subject><subject>Polynomials</subject><subject>Resource management</subject><subject>Uplink</subject><subject>Vectors</subject><issn>2166-9570</issn><isbn>1467362352</isbn><isbn>9781467362351</isbn><fulltext>true</fulltext><rsrctype>conference_proceeding</rsrctype><creationdate>2013</creationdate><recordtype>conference_proceeding</recordtype><sourceid>6IE</sourceid><sourceid>RIE</sourceid><recordid>eNotj9tKw0AURUdQsNb-gL7MD0yd-2QeJVQNJFREn8sxOSnR3JgJ1Py9gXbDZj1sWLAJeRB8KwT3T-9Z8ZFuJRdqa5cobq_IndDWKSuVkddkJYW1zBvHb8kmxh_OuXDWiYSvyC4fTqwcurHFv2aaadv0CIGOAcuhavojrYdAq-HUL8MvbSEckcUSWqRFVuxpnOOEXbwnNzW0ETcXrsnXy-4zfWP5_jVLn3NWCuUnVhpndZUkGkuwIJOlqI3zxnhUmitAqCRIjxq8NYk04GsQtram9q7i32pNHs_eBhEPY2g6CPPh8lr9A_fGS6M</recordid><startdate>201309</startdate><enddate>201309</enddate><creator>Zarei, Shahram</creator><creator>Gerstacker, Wolfgang</creator><creator>Muller, Ralf R.</creator><creator>Schober, Robert</creator><general>IEEE</general><scope>6IE</scope><scope>6IL</scope><scope>CBEJK</scope><scope>RIE</scope><scope>RIL</scope></search><sort><creationdate>201309</creationdate><title>Low-complexity linear precoding for downlink large-scale MIMO systems</title><author>Zarei, Shahram ; Gerstacker, Wolfgang ; Muller, Ralf R. ; Schober, Robert</author></sort><facets><frbrtype>5</frbrtype><frbrgroupid>cdi_FETCH-LOGICAL-c139t-c5764d884eca6a286a2e4579559e3403aead2a29e4a965825a9fa16f65f97d0b3</frbrgroupid><rsrctype>conference_proceedings</rsrctype><prefilter>conference_proceedings</prefilter><language>eng</language><creationdate>2013</creationdate><topic>Downlink</topic><topic>MIMO</topic><topic>Optimization</topic><topic>Polynomials</topic><topic>Resource management</topic><topic>Uplink</topic><topic>Vectors</topic><toplevel>online_resources</toplevel><creatorcontrib>Zarei, Shahram</creatorcontrib><creatorcontrib>Gerstacker, Wolfgang</creatorcontrib><creatorcontrib>Muller, Ralf R.</creatorcontrib><creatorcontrib>Schober, Robert</creatorcontrib><collection>IEEE Electronic Library (IEL) Conference Proceedings</collection><collection>IEEE Proceedings Order Plan All Online (POP All Online) 1998-present by volume</collection><collection>IEEE Xplore All Conference Proceedings</collection><collection>IEEE/IET Electronic Library</collection><collection>IEEE Proceedings Order Plans (POP All) 1998-Present</collection></facets><delivery><delcategory>Remote Search Resource</delcategory><fulltext>fulltext_linktorsrc</fulltext></delivery><addata><au>Zarei, Shahram</au><au>Gerstacker, Wolfgang</au><au>Muller, Ralf R.</au><au>Schober, Robert</au><format>book</format><genre>proceeding</genre><ristype>CONF</ristype><atitle>Low-complexity linear precoding for downlink large-scale MIMO systems</atitle><btitle>2013 IEEE 24th Annual International Symposium on Personal, Indoor, and Mobile Radio Communications (PIMRC)</btitle><stitle>PIMRC</stitle><date>2013-09</date><risdate>2013</risdate><spage>1119</spage><epage>1124</epage><pages>1119-1124</pages><issn>2166-9570</issn><eisbn>1467362352</eisbn><eisbn>9781467362351</eisbn><abstract>In this work, we present a low-complexity linear precoding scheme for downlink large-scale multiple-input multiple-output (MIMO) systems. The proposed scheme can achieve near minimum mean square error (MMSE) precoding performance in terms of the sum rate and is based on a matrix polynomial instead of matrix inversion. Simulation results show that matrix polynomials consisting of only a few terms are sufficient to closely approach the sum rate of the classical MMSE precoder and to perform orders of magnitude better than the simple conjugate beamforming (BF) precoder. We derive exact expressions for the computational complexity of the proposed scheme in terms of the number of additions and multiplications and compare it to the complexity of the BF and MMSE precoders. Our complexity analysis shows that for large number of base station antennas N compared to the number of generated transmit symbols τ per channel estimate and large number of users K, the proposed polynomial precoder has a lower complexity than the classical MMSE precoder.</abstract><pub>IEEE</pub><doi>10.1109/PIMRC.2013.6666306</doi><tpages>6</tpages></addata></record> |
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subjects | Downlink MIMO Optimization Polynomials Resource management Uplink Vectors |
title | Low-complexity linear precoding for downlink large-scale MIMO systems |
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