DocumentCode
1650011
Title
Noncoherent detection of convolutionally encoded continuous phase modulation
Author
Andersson, Torgny ; Svensson, Arne
Author_Institution
Lund Univ., Sweden
fYear
1989
Firstpage
1373
Abstract
The error probability at large signal-to-noise ratios of convolutionally encoded continuous phase frequency-shift keying with an optimum noncoherent detector on an additive white Gaussian noise channel is considered. The authors propose a limited tree search algorithm for noncoherent detection of coded and uncoded continuous-phase-modulation schemes. The error probability of this suboptimum noncoherent detector is evaluated by means of computer simulations on an additive white Gaussian noise channel. It is shown that the degradation in error performance compared to the performance of the coherent Viterbi detector is less than 1 dB with a relatively simple noncoherent detector for most of the considered schemes
Keywords
phase modulation; signal detection; PM; additive white Gaussian noise channel; coherent Viterbi detector; convolutionally encoded continuous phase modulation; error probability; frequency-shift keying; limited tree search algorithm; noncoherent detector; signal detection; Additive white noise; Computer simulation; Convolution; Convolutional codes; Degradation; Error probability; Frequency shift keying; Phase detection; Phase frequency detector; Signal to noise ratio;
fLanguage
English
Publisher
ieee
Conference_Titel
Communications, 1989. ICC '89, BOSTONICC/89. Conference record. 'World Prosperity Through Communications', IEEE International Conference on
Conference_Location
Boston, MA
Type
conf
DOI
10.1109/ICC.1989.49905
Filename
49905
Link To Document