Title :
Spectral spatial equalization for OFDM in time-varying frequency-selective multipath channels
Author :
Sung, Sanghoon ; Brady, David
Author_Institution :
Dept. of Electr. & Comput. Eng., Northeastern Univ., Boston, MA, USA
Abstract :
Orthogonal frequency division multiplex (OFDM) transmission over a time-variant frequency-selective multipath fading channel suffers from significant attenuation on faded frequency regions as well as inter-channel interference (ICI) due to the loss of subchannel orthogonality. To mitigate signal fading and ICI, we introduce a frequency-space domain equalization (FSDE) using an antenna array. Unlike conventional combining diversity or selection diversity, this scheme differs in that it attempts to prevent the occurrence of the frequency-selective fading and ICI rather than compensates for them. A FSDE on the received OFDM signal is performed by space-time Fourier transform (STFT) and frequency-domain equalization (FDE). While a time-domain Fourier transform in STFT demodulates OFDM signals, a space-domain Fourier transform attenuates the OFDM signals arriving at the antenna array through unwanted paths. This approach includes the blind estimation of the direction-of-arrival (DOA) for the multiple paths by employing the cyclostationarity of the OFDM signal. A FDE is applied to the output of the STFT to compensate for the effect of the remaining ICI. The effectiveness of FSDE is examined in terms of the resulting frequency-selective fading, ICI and SINR gain
Keywords :
Fourier transforms; OFDM modulation; antenna arrays; array signal processing; direction-of-arrival estimation; equalisers; fading channels; interference suppression; multipath channels; noise; radiofrequency interference; spectral analysis; time-varying channels; ICI; OFDM signal; OFDM transmission; SINR gain; STFT; antenna array; blind DOA estimation; direction-of-arrival; faded frequency region attenuation; frequency-domain equalization; frequency-selective fading; frequency-space domain equalization; inter-channel interference; multipath fading channel; orthogonal frequency division multiplex; space-domain Fourier transform; space-time Fourier transform; spectral spatial equalization; subchannel orthogonality; time-domain Fourier transform; time-varying frequency-selective multipath channels; Antenna arrays; Attenuation; Diversity reception; Fading; Fourier transforms; Frequency diversity; Frequency division multiplexing; Interchannel interference; OFDM; Propagation losses;
Conference_Titel :
Sensor Array and Multichannel Signal Processing Workshop. 2000. Proceedings of the 2000 IEEE
Conference_Location :
Cambridge, MA
Print_ISBN :
0-7803-6339-6
DOI :
10.1109/SAM.2000.878046