Title :
Near optimum detection of TCM signals in coloured noise
Author :
Singh, Prem ; Vasudevan, K.
Author_Institution :
Dept. of Electron. & Commun. Eng., Graphic Era Univ., Dehradun, India
Abstract :
Viterbi Algorithm is the optimum technique for detection of coded signals in white noise. However in many practical situations noise is coloured or correlated. The optimum detection techniques for both uncoded and coded (Trellis coded) signals in additive coloured Gaussian noise (ACGN) have been derived earlier in the literature. For detection of coded signals in coloured noise, the linear equalizer-predictive Viterbi algorithm (LE-PVA) is the optimum scheme. The whitening property of the prediction filter is the basis for the optimal performance of the LE-PVA. However the performance degradation in the practical LE-PVA is mainly due to the fact that the LE trained using the LMS algorithm may not converge to the global minimum and perfect estimates of the autocorrelation of the error signal at the T-spaced sampler output are not available. In this paper, we simulate a near ideal LE-PVA which consists of a filter matched to the received pulse, a T-spaced sampler and a near optimum T-spaced equalizer followed by PVA, whose predictor coefficients are computed from theory. Note that it is not possible to implement the ideal LE-PVA since it requires an infinite length T-spaced equalizer and an infinite length predictor.
Keywords :
Gaussian noise; Viterbi decoding; signal detection; trellis coded modulation; white noise; T-spaced sampler; TCM signals; additive coloured Gaussian noise; coded signal detection; coloured noise; linear equalizer-predictive Viterbi algorithm; near optimum T-spaced equalizer; near optimum detection; prediction filter; trellis coded signals; white noise; Bit error rate; Colored noise; Correlation; Detectors; Equalizers; Viterbi algorithm; Trellis codded modulation; Viterbi algorithm; coloured noise; equalizer; prediction filter;
Conference_Titel :
Internet Multimedia Systems Architecture and Application (IMSAA), 2011 IEEE 5th International Conference on
Conference_Location :
Bangalore, Karnataka
Print_ISBN :
978-1-4577-1329-3
DOI :
10.1109/IMSAA.2011.6156349