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    Improper Gaussian signaling for the K-user MIMO interference channels with hardware impairments

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    Identificadores
    URI: http://hdl.handle.net/10902/20608
    DOI: 10.1109/TVT.2020.3015558
    ISSN: 0018-9545
    ISSN: 1939-9359
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    Autoría
    Soleymani, Mohammad; Santamaría Caballero, Luis IgnacioAutoridad Unican; Schreier, Peter J.
    Fecha
    2020-10
    Derechos
    © 2020 IEEE. Personal use of this material is permitted. Permission from IEEE must be obtained for all other uses, in any current or future media, including reprinting/republishing this material for advertising or promotional purposes, creating new collective works, for resale or redistribution to servers or lists, or reuse of any copyrighted component of this work in other works.
    Publicado en
    IEEE Transactions on Vehicular Technology, 2020, 69(10), 11632-11645
    Editorial
    Institute of Electrical and Electronics Engineers, Inc.
    Enlace a la publicación
    https://doi.org/10.1109/TVT.2020.3015558
    Palabras clave
    Achievable rate region
    Convex/concave procedure
    Energy efficiency
    Generalized Dinkelbach algorithm
    Hardware impairments
    Improper Gaussian signaling
    Interference channel
    Majorization-minimization
    MIMO systems
    Resumen/Abstract
    This paper investigates the performance of improper Gaussian signaling (IGS) for the K-user multiple-input, multiple-output (MIMO) interference channel (IC) with hardware impairments (HWI). HWI may arise due to imperfections in the devices like I/Q imbalance, phase noise, etc. With I/Q imbalance, the received signal is a widely linear transformation of the transmitted signal and noise. Thus, the effective noise at the receivers becomes improper, which means that its real and imaginary parts are correlated and/or have unequal powers. IGS can improve system performance with improper noise and/or improper interference. In this paper, we study the benefits of IGS for this scenario in terms of two performance metrics: achievable rate and energy efficiency (EE). We consider the rate region, the sum-rate, the EE region and the global EE optimization problems to fully evaluate the IGS performance. To solve these non-convex problems, we employ an optimization framework based on majorization-minimization algorithms, which allow us to obtain a stationary point of any optimization problem in which either the objective function and/or constraints are linear functions of rates. Our numerical results show that IGS can significantly improve the performance of the K-user MIMO IC with HWI and I/Q imbalance, where its benefits increase with the number of users, K, and the imbalance level, and decrease with the number of antennas.
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    UNIVERSIDAD DE CANTABRIA

    Repositorio realizado por la Biblioteca Universitaria utilizando DSpace software
    Contacto | Sugerencias
    Metadatos sujetos a:licencia de Creative Commons Reconocimiento 4.0 España