Approaching the matched filter bound with block transmission techniques
Date
2012-02
Embargo
Advisor
Coadvisor
Journal Title
Journal ISSN
Volume Title
Publisher
John Wiley & Sons
Language
English
Alternative Title
Abstract
Block transmission techniques, with appropriate cyclic prefixes and employing frequency-domain equalisation techniques,
have been shown to be suitable for high data rate transmission over severely time-dispersive channels. The most popular
techniques based on this concept are orthogonal frequency division multiplexing (OFDM) and single-carrier with
frequency-domain equalisation (SC-FDE).
In this paper, we consider OFDM and SC-FDE transmission schemes and study the impact of the number of multipath
components and the diversity order on their performance. It is shown that when we have a high number of separable
multipath components, the asymptotic performance of both schemes approaches the matched filter bound, even without
diversity. When we have diversity, the performance approaches the matched filter bound faster, with a small number of
separable multipath components. It was also observed that the SC-FDE has an overall performance advantage over the
OFDM option, especially when employing the iterative block decision feedback equaliser with turbo equalisation and for
high code rates.
Keywords
Matched filter bound, SC-FDE, OFDM, IB-DFE: Iterative Block Decision Feedback Equaliser, Turbo equalisation, Diversity
Document Type
Journal article
Publisher Version
10.1002/ett.1513
Dataset
Citation
F. Amaral, R. Dinis, P. Carvalho, Approaching the MFB with Block Transmission Techniques, European Trans. on Telecommunications, Vol. 23, No. 1, pp. 76 - 86, February, 2012
Identifiers
TID
Designation
Access Type
Open Access