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Alamouti space–time block coded hierarchical modulation with signal space diversity and MRC reception in Nakagami‐ m fading channel
Author(s) -
Saeed Ayesha,
Xu Hongjun,
Quazi Tahmid
Publication year - 2014
Publication title -
iet communications
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.355
H-Index - 62
eISSN - 1751-8636
pISSN - 1751-8628
DOI - 10.1049/iet-com.2013.0519
Subject(s) - fading , nakagami distribution , algorithm , computer science , maximal ratio combining , bit error rate , diversity combining , antenna diversity , transmit diversity , block code , modulation (music) , channel (broadcasting) , telecommunications , topology (electrical circuits) , mathematics , decoding methods , antenna (radio) , physics , combinatorics , acoustics
This study presents a novel approach to an Alamouti transmission scheme for hierarchical modulation (HM) with signal space diversity (SSD) in a Nakagami‐ m fading channel. The bit‐error‐rate (BER) performance of the proposed system is determined using the nearest neighbourhood (NN) approximation approach and is briefly discussed. In addition, a reduced complexity maximum likelihood‐based decoder is proposed. Simulation results verify a significant BER improvement of the proposed system when compared with previously implemented schemes as well as the accuracy of the NN approximation and the proposed detector. Specifically, gains of up to 8 dB at a BER of 1 × 10 −5 for both base and refinement bits have been observed when comparing the proposed HM SSD Alamouti scheme with an HM SSD scheme without Alamouti transmit diversity at a hierarchy of α = 4, channel conditions at m = 1 and N = 1 receiver antennas. Additional results for varying hierarchy at increasing number of receiver antennas and improving channel conditions is also presented. The performance of the proposed reduced complexity decoder is also presented as well as its complexity reduction analysed.

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