Title :
Effects of fading correlation on multiple antenna reception mobile OFDM systems
Author :
Hutter, A.A. ; Hammerschmidt, J.S. ; de Carvalho, E.
Author_Institution :
Inst. for Integrated Circuits, Tech. Univ. Munchen, Germany
Abstract :
WE investigate the impact of fading correlation on multiple antenna reception mobile OFDM systems. Based on the unbiased minimum mean square error criterion we derive the carrier-based optimum combiner. We show that for purely noise-limited systems, the optimum combiner reduces to the well-known maximum ratio combiner (MRC). For these systems, a general performance assessment is performed. We adopt the antenna and the diversity gain, which were recently introduced in [4], and derive a closed form analytical expression for omnidirectional wave incidence. For the interference-limited case, we focus on a single user system with intercarrier interference (ICI) that originates from the channel variations during one OFDM symbol. Then, optimum combining involves knowledge of the spatial interference and noise covariance matrix. The structure of this matrix is investigated and for omnidirectional wave incidence we derive closed-form analytical expressions for the interference correlation coefficients
Keywords :
OFDM modulation; correlation methods; covariance matrices; diversity reception; fading channels; land mobile radio; least mean squares methods; linear antenna arrays; radiofrequency interference; receiving antennas; thermal noise; time-varying channels; MRC; carrier-based optimum combiner; channel variations; closed form analytical expression; diversity gain; fading correlation; frequency-selective channel; intercarrier interference; interference correlation coefficients; interference-limited system; maximum ratio combiner; multiple antenna reception mobile OFDM systems; multiple receive antenna; noise covariance matrix; omnidirectional wave incidence; performance assessment; single user system; spatial interference matrix; thermal noise-limited systems; time-variant propagation channel; unbiased minimum mean square error; uniform linear antenna array; Covariance matrix; Diversity methods; Fading; Geometry; Interference; Linear antenna arrays; Mobile antennas; OFDM; Receiving antennas; Vectors;
Conference_Titel :
Vehicular Technology Conference, 2000. IEEE-VTS Fall VTC 2000. 52nd
Conference_Location :
Boston, MA
Print_ISBN :
0-7803-6507-0
DOI :
10.1109/VETECF.2000.886819