Title :
Channel modeling and associated inter-carrier interference equalization for OFDM systems with high Doppler spread
Author :
Guillaud, Maxime ; Slock, Dirk T M
Author_Institution :
Eurecom Inst., Sophia Antipolis, France
Abstract :
We address the problem of OFDM transmission over a time-varying, frequency-selective channel with high Doppler spread. This creates situations where the channel significantly evolves over the time span of one OFDM symbol. We analyze the CP-OFDM transmission mechanism, and the impairments due to channel variations, using a decomposition of these variations over a base of sinusoid functions sampling the Doppler spectrum at subcarrier frequencies. On the one hand, this leads to a fairly parsimonious parameterization of the time-varying channel impulse response. On the other hand we show that, considering a whole CP-OFDM symbol, this leads to a duality between equalization of the delay spread of a time-varying channel in the time domain, and the equalization of the Doppler spread of a frequency selective channel in the frequency domain. Using this duality, we show that equalization in the frequency domain can benefit from all known time domain equalization methods.
Keywords :
Doppler broadening; OFDM modulation; delays; equalisers; radiofrequency interference; signal sampling; time-varying channels; CP-OFDM; Doppler spectrum sampling; Doppler spread equalization; channel modeling; delay spread equalization; frequency domain; frequency-selective channel; intercarrier interference equalization; sinusoid functions; time domain; time-varying channel impulse response; Delay effects; Filtering; Finite impulse response filter; Frequency division multiplexing; Frequency domain analysis; Interference; OFDM; Sampling methods; Time varying systems; Time-varying channels;
Conference_Titel :
Acoustics, Speech, and Signal Processing, 2003. Proceedings. (ICASSP '03). 2003 IEEE International Conference on
Print_ISBN :
0-7803-7663-3
DOI :
10.1109/ICASSP.2003.1202606