Title :
Optimum diversity receiver for cochannel interference with non-zero symbol timing offset in digital mobile radio
Author :
Lin, Sheng-Chou ; Prabhu, Vasant K.
Author_Institution :
Northern Telecom Inc., Richardson, TX, USA
Abstract :
This paper presents the analysis and performance of the optimum diversity receiver in mobile radio environments with QAM data transmission, two-ray frequency-selective Rayleigh-fading channel, Gaussian noise and co-channel interference (CCI), while the symbol timing offset between the desired and co-channel interference is considered. With this non-zero random offset value, the co-channel interference is shown as a wide-sense stationary process (WSS). An optimum diversity receiver is proposed for the new WSS co-channel interference model. Linear and decision-feedback equalization techniques are used in the design of the optimum diversity receivers. By simulation techniques, we show that the degradation due to the WSS co-channel interference is smaller than that caused by the equivalent additive Gaussian noise or cyclostationary cochannel interference, especially in highly co-channel interference dominated channels and also in the system where a decision-feedback equalizer is employed
Keywords :
Gaussian noise; Rayleigh channels; cellular radio; cochannel interference; data communication; decision feedback equalisers; digital radio; diversity reception; fading; land mobile radio; optimisation; quadrature amplitude modulation; radio receivers; timing; CCI; Gaussian noise; QAM data transmission; additive Gaussian noise; cellular radio; co-channel interference; cochannel interference; cyclostationary cochannel interference; decision-feedback equalization; digital mobile radio; frequency-selective Rayleigh-fading channel; linear equalization; nonzero random offset; nonzero symbol timing offset; optimum diversity receiver; performance; simulation techniques; two-ray channel; wide-sense stationary process; Data communication; Decision feedback equalizers; Frequency diversity; Gaussian noise; Interchannel interference; Land mobile radio; Performance analysis; Quadrature amplitude modulation; Rayleigh channels; Receivers;
Conference_Titel :
Communications, 1998. ICC 98. Conference Record. 1998 IEEE International Conference on
Conference_Location :
Atlanta, GA
Print_ISBN :
0-7803-4788-9
DOI :
10.1109/ICC.1998.683045