Suchergebnisse - truncated polynomial expansion Precoder

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  1. 1

    Low-Complexity Truncated Polynomial Expansion DL Precoders and UL Receivers for Massive MIMO in Correlated Channels von Benzin, Andreas, Caire, Giuseppe, Shadmi, Yonatan, Tulino, Antonia M.

    ISSN: 1536-1276, 1558-2248
    Veröffentlicht: New York IEEE 01.02.2019
    Veröffentlicht in IEEE transactions on wireless communications (01.02.2019)
    “… ) precoding is generally much more effective than ConjBF. In order to close the gap between ConjBF and RZF, while meeting the latency constraint, truncated polynomial expansion (TPE …”
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    Journal Article
  2. 2

    Performance analysis of linear precoders with imperfect channel covariance information for multicell system von Mukubwa, Emmanuel, Sokoya, Oludare A

    ISSN: 2051-3305, 2051-3305
    Veröffentlicht: The Institution of Engineering and Technology 01.08.2020
    Veröffentlicht in Journal of engineering (Stevenage, England) (01.08.2020)
    “… Comparison and analysis of the regularised zero forcing precoder, rapid numerical algorithms-based precoder and the truncated polynomial expansion-based precoder are done for massive multiple-input …”
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  3. 3

    Efficient and low-complexity matrix inversion scheme for massive multiple-input multiple-output systems using rapid numerical algorithms von Mukubwa, Emmanuel, Sokoya, Oludare A

    ISSN: 2051-3305, 2051-3305
    Veröffentlicht: The Institution of Engineering and Technology 01.10.2019
    Veröffentlicht in Journal of engineering (Stevenage, England) (01.10.2019)
    “… ) precoder and the truncated polynomial expansion (TPE) Precoder are compared and analysed for massive multiple-input multiple-output (MIMO …”
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  4. 4

    Truncated Polynomial Expansion Downlink Precoders and Uplink Detectors for Massive MIMO von Benzin, Andreas, Caire, Giuseppe, Shadmi, Yonatan, Tulino, Antonia

    ISSN: 2331-8422
    Veröffentlicht: Ithaca Cornell University Library, arXiv.org 11.11.2017
    Veröffentlicht in arXiv.org (11.11.2017)
    “… In order to recover a significant fraction of the gap between ConjBF and RZF and yet meeting the very strict computation latency constraints, truncated polynomial expansion (TPE …”
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  5. 5

    Efficient linear precoding for massive MIMO systems using truncated polynomial expansion von Muller, Axel, Kammoun, Abla, Bjornson, Emil, Debbah, Merouane

    ISBN: 9781479914814, 1479914819
    ISSN: 1551-2282
    Veröffentlicht: IEEE 01.06.2014
    “… It is based on truncated polynomial expansion (TPE) and mimics the advantages of RZF, while offering reduced and scalable computational complexity that can be implemented in a convenient parallel fashion …”
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  6. 6

    Polynomial expansion of the precoder for power minimization in large-scale MIMO systems von Sifaou, Houssem, Kammoun, Abla, Sanguinetti, Luca, Debbah, Merouane, Alouini, Mohamed-Slim

    ISSN: 1938-1883
    Veröffentlicht: IEEE 01.05.2016
    “… This is achieved by applying the truncated polynomial expansion (TPE) concept on a per-user basis …”
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  7. 7

    Comparison and analysis of massive MIMO linear precoding schemes in the downlink von Mukubwa, Emmanuel, Sokoya, Oludare A., Ilcev, Dimov Stojce

    ISSN: 2153-0033
    Veröffentlicht: IEEE 01.09.2017
    Veröffentlicht in 2017 IEEE AFRICON (01.09.2017)
    “… )-based precoder, rapid numerical algorithms (RNA)-based precoder and the truncated polynomial expansion (TPE …”
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  8. 8

    Overview of Precoding Techniques for Massive MIMO von Albreem, Mahmoud A., Habbash, Alaa H. Al, Abu-Hudrouss, Ammar M., Ikki, Salama S.

    ISSN: 2169-3536, 2169-3536
    Veröffentlicht: Piscataway IEEE 2021
    Veröffentlicht in IEEE access (2021)
    “… Massive multiple-input multiple-output (MIMO) is playing a crucial role in the fifth generation (5G) and beyond 5G (B5G) communication systems. Unfortunately, …”
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  9. 9

    Max-min SINR low complexity transceiver design for single cell massive MIMO von Sifaou, Houssem, Kammoun, Abla, Sanguinetti, Luca, Debbah, Merouane, Alouini, Mohamed-Slim

    Veröffentlicht: IEEE 01.07.2016
    “… ) outfitted with M antennas communicates with K single antenna user equipments (UEs). In particular, we aim at designing the linear precoder and receiver that maximizes the minimum signal-to-interference-plus-noise ratio (SINR …”
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  10. 10

    Downlink SLNR based precoding and power control in massive MIMO systems with time-shifted pilots von Jie Wang, Guomei Zhang, Lv, Gangming, Guobing Li

    Veröffentlicht: IEEE 01.05.2016
    “… In the design of precoder, not only the interference leaked to the users within the same cell is considered, but also the interference …”
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  11. 11

    Max–Min SINR in Large-Scale Single-Cell MU-MIMO: Asymptotic Analysis and Low-Complexity Transceivers von Sifaou, Houssem, Kammoun, Abla, Sanguinetti, Luca, Debbah, Merouane, Alouini, Mohamed-Slim

    ISSN: 1053-587X, 1941-0476
    Veröffentlicht: IEEE 01.04.2017
    Veröffentlicht in IEEE transactions on signal processing (01.04.2017)
    “… ) endowed with M antennas communicates with K single-antenna user equipments (TIEs). Particularly, we aim at reducing the complexity of the linear precoder and receiver that maximize the minimum signal-to-interference-plus-noise ratio (SINR …”
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  12. 12

    Max-Min SINR in Large-Scale Single-Cell MU-MIMO: Asymptotic Analysis and Low Complexity Transceivers von Sifaou, Houssem, Kammoun, Abla, Sanguinetti, Luca, Debbah, Mérouane, Mohamed-Slim Alouini

    ISSN: 2331-8422
    Veröffentlicht: Ithaca Cornell University Library, arXiv.org 08.02.2017
    Veröffentlicht in arXiv.org (08.02.2017)
    “… \) antennas communicates with \(K\) single-antenna user equipments (UEs). Particularly, we aim at reducing the complexity of the linear precoder and receiver that maximize …”
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  13. 13

    Massive MIMO Linear Precoding Techniques Performance Assessment von Kebede, Tewelgn, Wondie, Yihenew, Steinbrunn, Johannes

    Veröffentlicht: IEEE 31.10.2021
    “… : Zero Forcing, Maximum Ratio Transmission, Regularized Zero Forcing, Truncated Polynomial Expansion and Phased Zero Forcing …”
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