Title :
Binary Demodulation in Rayleigh Fading with Noisy Channel Estimates - Detector Structures and Performance
Author :
Basri, Amir Ali ; Lim, Teng Joon
Author_Institution :
Dept. of Electr. & Comput. Eng., Toronto Univ., Toronto, ON
Abstract :
In previous work, we studied the structure and performance of optimum maximum-likelihood receivers for binary antipodal and orthogonal signals in the presence of Gaussian-distributed channel estimation error and additive white Gaussian noise for flat Rayleigh fading channels. In this paper, we investigate the structure and performance of these receivers for an application where Gaussian-distributed channel estimation error arises: minimum mean-square error channel estimation in quasi- static Rayleigh fading channels. Exact closed-form analytical expressions are derived for the average bit error probability (BEP). We quantify the impact of number of pilot symbols in each frame as well as the ratio of the power of the pilot symbol to the power of data on the average BEP. We derive conditions under which orthogonal signalling results in a lower average BEP compared with binary antipodal signalling.
Keywords :
Gaussian channels; Rayleigh channels; demodulation; Gaussian distributed channel estimation error; Rayleigh fading channel; binary antipodal signalling; binary demodulation; bit error probability; detector performance; detector structure; minimum mean square error channel estimation; noisy channel estimate; optimum maximum-likelihood receiver; orthogonal signalling; Additive white noise; Channel estimation; Demodulation; Detectors; Error probability; Fading; Gaussian channels; Maximum likelihood detection; Maximum likelihood estimation; Rayleigh channels;
Conference_Titel :
Vehicular Technology Conference, 2008. VTC Spring 2008. IEEE
Conference_Location :
Singapore
Print_ISBN :
978-1-4244-1644-8
Electronic_ISBN :
1550-2252
DOI :
10.1109/VETECS.2008.246