DocumentCode
752162
Title
Error Probability Characteristics for CPSK Signal Through m-Distributed Fading Channel
Author
Miyagaki, Yoshiya ; Morinaga, Norihiko ; Namekawa, Toshihiko
Author_Institution
Okayama Institute of Science, Ridai-cho, Okayama-shi, Japan
Volume
26
Issue
1
fYear
1978
fDate
1/1/1978 12:00:00 AM
Firstpage
88
Lastpage
100
Abstract
The average error probabilities and outage rates of error probability for the
-phase CPSK signal through the Nakagami\´s
-distributed fading channel are exactly evaluated both for nondiversity reception and for diversity reception. The probability density functions of the composite phase of fading signal and noise and those of the diversity-combined signal envelopes are newly derived in this paper. The results are generally obtained including the digital phase modulation component, the fading figure as a measure of fading depth, the average carrier-to-noise power ratio, the power correlation coefficient between two diversity branches, etc. The diversity improvements are also verified. Additionally some useful approximate formulas are briefly shown. This study will add a newly widened view to the considerations of system performances and designs for digital radio communications via fading channels.
-phase CPSK signal through the Nakagami\´s
-distributed fading channel are exactly evaluated both for nondiversity reception and for diversity reception. The probability density functions of the composite phase of fading signal and noise and those of the diversity-combined signal envelopes are newly derived in this paper. The results are generally obtained including the digital phase modulation component, the fading figure as a measure of fading depth, the average carrier-to-noise power ratio, the power correlation coefficient between two diversity branches, etc. The diversity improvements are also verified. Additionally some useful approximate formulas are briefly shown. This study will add a newly widened view to the considerations of system performances and designs for digital radio communications via fading channels.Keywords
Diversity communication; Fading channels; PSK signal detection; Detectors; Diversity reception; Error probability; Fading; Phase detection; Phase measurement; Power measurement; Radio communication; Rayleigh channels; Signal analysis;
fLanguage
English
Journal_Title
Communications, IEEE Transactions on
Publisher
ieee
ISSN
0090-6778
Type
jour
DOI
10.1109/TCOM.1978.1093973
Filename
1093973
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