DocumentCode
1643473
Title
Performance of adaptively loaded OFDM under Rayleigh fading with diversity combining
Author
Canpolat, Bahadir ; Tanik, Yalcin
Author_Institution
ASELSAN Inc., Ankara, Turkey
Volume
2
fYear
2001
fDate
6/23/1905 12:00:00 AM
Firstpage
957
Abstract
In this study, we investigate the performance of adaptively loaded OFDM (orthogonal frequency division multiplexing) under Rayleigh fading with ideal maximal ratio diversity combining (MRC). We consider two approaches for adaptive loading: maximization of throughput subject to total transmit power and subcarrier error rate constraints and minimization of subcarrier error rate subject to total transmit power and target bit rate constraints. We demonstrate the performance improvement of adaptive loading over fixed loading in both cases. A tight lower bound on the average spectral efficiency of the throughput maximizing adaptive loading method under Rayleigh fading with diversity combining is obtained. For the error rate minimization approach, an optimum integer bit loading algorithm is presented which is computationally simpler than the optimum Hughes-Hartogs algorithm
Keywords
OFDM modulation; Rayleigh channels; adaptive modulation; diversity reception; error statistics; minimisation; MRC; Rayleigh fading; adaptive loading; adaptively loaded OFDM; diversity combining; error rate minimization approach; maximal ratio diversity combining; optimum integer bit loading algorithm; orthogonal frequency division multiplexing; subcarrier error rate constraints; target bit rate constraints; throughput; total transmit power; transmit power; Bit rate; DSL; Digital video broadcasting; Discrete Fourier transforms; Diversity reception; Error analysis; OFDM modulation; Power system modeling; Rayleigh channels; Throughput;
fLanguage
English
Publisher
ieee
Conference_Titel
Vehicular Technology Conference, 2001. VTC 2001 Fall. IEEE VTS 54th
Conference_Location
Atlantic City, NJ
ISSN
1090-3038
Print_ISBN
0-7803-7005-8
Type
conf
DOI
10.1109/VTC.2001.956915
Filename
956915
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