Generalized designs for precoded receive spatial modulation derived from non-orthogonal space time block codes
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Date
2022
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Publisher
Springer
Abstract
In this paper, a new MIMO scheme termed as precoded Spatially Modulated Non-orthogonal Space Time Block Code (precoded SM-NSTBC) is proposed. The primary concept of precoded SM-NSTBC is to activate a subset of receive antennas in a pre-defined manner and choose specific activated patterns to represent information symbols. We have synthesized schemes derived from full rank Cyclic codes defined over Galois field Rank preserving transformations are used to map the full rank codewords over a finite field to full rank Space Time Block Codes. Due to the characteristics of full rank Cyclic codes employed, a performance improvement of approximately 2 dB to 7 dB is observed. This advantage is realized when the performance of these schemes is compared with precoded SM-OSTBC and precoded STBC-SM. The improvement due to the coding gain is observed in both uncorrelated as well as correlated Rayleigh fading environments. An upper bound on the average bit error rate (ABER) is derived. Close correspondence between Monte-Carlo simulations and analytic values are observed. © 2021, The Author(s), under exclusive licence to Springer Science+Business Media, LLC, part of Springer Nature.
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Keywords
Bit error rate, Block codes, Communication channels (information theory), Fading channels, Intelligent systems, Modulation, Monte Carlo methods, Rayleigh fading, Receiving antennas, Space time codes, Space-time block coding (STBC), Cyclic code, Eisenstein integer, Gaussian integers, Information symbol, Non-orthogonal space-time block codes, Performance, Receive antenna, Spatial modulations, Spatially modulated, Spatially modulated non orthogonal space time block code, MIMO systems
Citation
Telecommunication Systems, 2022, 79, 3, pp. 405-416
