DocumentCode :
1681318
Title :
Exact BER analysis of a π/4-DQPSK OFDM system in the presence of carrier frequency offset over frequency selective fast Rayleigh fading channels
Author :
Tan, Peng ; Beaulieu, Norman C.
Author_Institution :
Dept. of Electr. & Comput. Eng., Alberta Univ., Edmonton, Alta., Canada
Volume :
1
fYear :
2005
Firstpage :
488
Abstract :
An exact closed-form bit error rate expression is derived for an orthogonal frequency-division multiplexing system, each subcarrier modulated by π/4-shifted differentially encoded quadrature phase shift keying, in the presence of carrier frequency offset over frequency-selective fast Rayleigh fading channels. Both single channel reception and diversity reception with maximal ratio combining are considered. The closed-form expression allows us to investigate the effect of several channel parameters, including mean delay spread and maximum Doppler shift, on the system bit error rate performance. Particularly, the effect of carrier frequency offset on the system performance can be studied for a more realistic wireless channel environment model. Small carrier frequency offsets have slight influences on the system performance. Compared with the same amount of Doppler shift, carrier frequency offset usually leads to a greater degree of performance degradation. Systems with fewer subcarriers are more sensitive to the channel mean delay spread. By using the exact closed-form bit error rate expression, an optimum number of subcarriers can be found, and the allowable carrier frequency offset, Doppler shift, and mean delay spread for given operating conditions can be determined.
Keywords :
Doppler shift; OFDM modulation; Rayleigh channels; differential phase shift keying; diversity reception; error statistics; frequency estimation; quadrature phase shift keying; π/4-DQPSK OFDM; carrier frequency offset; closed-form bit error rate expression; closed-form expression; differentially encoded quadrature phase shift keying; diversity reception; exact BER analysis; fast Rayleigh fading channels; frequency selective channels; maximal ratio combining; maximum Doppler shift; mean delay spread; orthogonal frequency-division multiplexing; single channel reception; subcarrier modulation; system bit error rate performance; Bit error rate; Delay; Diversity reception; Doppler shift; Fading; Frequency division multiplexing; Frequency shift keying; OFDM; Phase modulation; System performance;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Communications, 2005. ICC 2005. 2005 IEEE International Conference on
Print_ISBN :
0-7803-8938-7
Type :
conf
DOI :
10.1109/ICC.2005.1494400
Filename :
1494400
Link To Document :
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