A genetic algorithm for designing encoded space-time labelling diversity mappers
Date
2018-10
Authors
Patel, Sulaiman Saleem
Quazi, Tahmid
Xu, Hongjun
Journal Title
Journal ISSN
Volume Title
Publisher
IEEE
Abstract
The extent to which Uncoded Space-Time Labelling
Diversity is able to improve the error performance of spacetime block coded (STBC) systems is dependent on the binary
mappers used to encode information. Existing design techniques
are limited; as they either rely on symmetry-based heuristics, or
constrain the size of the constellation due to high computational
costs. This paper proposes a new genetic algorithm for labelling
diversity (LD) mapper design which is applicable to constellations
of any shape or size. The proposed algorithm is tested using
16QAM, 64QAM, 32PSK and three 16APSK constellations that
do not display diagonal symmetry. The proposed LD mappers
match the best heuristic designs for 16QAM and 64QAM. The
32PSK LD mapper produced achieves a diversity gain of ≈ 8dB
when compared to the available heuristic-based LD mapper.
In addition, the 16APSK mappers achieve a diversity gain of
approximately 3 to 8dB compared to Alamouti-coded STBC
systems for the three non-symmetric constellations considered.
Description
Keywords
Genetic algorithms, Labelling diversity, Mapper design, MIMO communication, Quadratic assignment problem
Citation
Patel, S.S., Quazi, T. and Xu, H. 2018. A genetic algorithm for designing encoded space-time labelling diversity mappers. 2018 IEEE International Workshop on Signal Processing Systems (SiPS). Presented at: 2018 IEEE International Workshop on Signal Processing Systems (SiPS). doi:10.1109/sips.2018.8598435
DOI
10.1109/sips.2018.8598435