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Novel full-rate noncoherent Alamouti encoding that allows polynomialcomplexityoptimal decoding

Markopoulos Panagiotis, Karystinos Georgios

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URI: http://purl.tuc.gr/dl/dias/52355071-9D29-4E70-84A3-A8006FA6991E
Year 2013
Type of Item Conference Full Paper
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Bibliographic Citation P. P. Markopoulos and G. N. Karystinos, “Novel full-rate noncoherent Alamouti encoding that allows polynomialcomplexity optimal decoding,” in Proc. IEEE I - Intern. Conf. Acoust., Speech and Signal Proc., Vancouver,(CASSP '13), pp. 5075-5079, doi: 10.1109/ICASSP.2013.6638628 https://doi.org/10.1109/ICASSP.2013.6638628
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Summary

We consider Alamouti encoding that draws symbols from M-ary phase-shift keying (M-PSK) and develop a new differential modulation scheme that attains full rate for any constellation order. In contrast to past work, the proposed scheme guarantees that the encoded matrix maintains the characteristics of the initial codebook and, at the same time, attains full rate so that all possible sequences of space-time matrices become valid. The latter property is exploited to develop a polynomial-complexity maximum-likelihood noncoherent sequence decoder whose order is solely determined by the number of receive antennas. We show that the proposed scheme is superior to contemporary alternatives in terms of encoding rate, decoding complexity, and performance.

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