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020 _a9783658371142
024 7 _a10.1007/978-3-658-37114-2
_2doi
040 _aES-MaUEC
_bspa
_cES-MaUEC
_dES-MaUEC
050 4 _aTK5102.9
_b2022 EB
100 1 _aRohweder, Daniel Benjamin
_eautor
_4aut
_4http://id.loc.gov/vocabulary/relators/aut
_9685599
245 1 0 _aSignal Constellations with Algebraic Properties and their Application in Spatial Modulation Transmission Schemes
_cby Daniel Benjamin Rohweder
250 _a1st edition 2022
264 1 _aWiesbaden
_bSpringer International Publishing
_c2022
300 _a1 recurso en línea (XIV, 108 páginas)
_b34 ilustraciones
336 _atexto
_btxt
_2rdacontent
337 _aelectrónico
_bc
_2rdamedia
338 _arecurso electrónico
_bcr
_2rdacarrier
347 _aarchivo de texto
_bPDF
490 1 _aSchriftenreihe der Institute für Systemdynamik (ISD) und optische Systeme (IOS)
_x2661-8095
505 0 _aIntroduction -- Channel Models and Transmission Scenarios -- Signal Constellations with Algebraic Properties -- Spatial Modulation with Two-Dimensional Signal Constellations -- Spatial Modulation with Multidimensional Signal Constellations -- Conclusions.
520 _aNowadays, most digital modulation schemes are based on conventional signal constellations that have no algebraic group, ring, or field properties, e.g. square quadrature-amplitude modulation constellations. Signal constellations with algebraic structure can enhance the system performance. For instance, multidimensional signal constellations based on dense lattices can achieve performance gains due to the dense packing. The algebraic structure enables low-complexity decoding and detection schemes. In this work, signal constellations with algebraic properties and their application in spatial modulation transmission schemes are investigated. Several design approaches of two- and four-dimensional signal constellations based on Gaussian, Eisenstein, and Hurwitz integers are shown. Detection algorithms with reduced complexity are proposed. It is shown, that the proposed Eisenstein and Hurwitz constellations combined with the proposed suboptimal detection can outperform conventional two-dimensional constellations with ML detection. About the author Daniel Rohweder received the B.Eng. degree in electrical engineering and information technology and the M.Eng. degree in electrical systems engineering from HTWG Konstanz, University of Applied Sciences, Germany, in 2015 and 2017, respectively. In 2016, he joined the Institute of System Dynamics (ISD), HTWG Konstanz, working on signal constellations with algebraic properties and their application in spatial modulation transmission schemes.
988 _aSpringer_Engineering_2022
650 7 _2embne
_9322641
_aProceso de señales
_xModelos matemáticos
650 7 _2embne
_9405144
_aGrupos, Teoría de
776 0 8 _iPrinted edition:
_z9783658371135
776 0 8 _iPrinted edition:
_z9783658371159
856 4 0 _uhttps://go.openathens.net/redirector/universidadeuropea.es?url=https://doi.org/10.1007/978-3-658-37114-2
_zAcceso a este recurso digital (usuarios Universidad Europea de Madrid)
942 _2lcc
_cLE
998 _b12/2022
_dz
_eIG
_zSI