DocumentCode
940582
Title
Analytical expression for the performance bounds of 16-QAM signalling in non-Gaussian products environment
Author
Gouta, M.D. ; Kouris, S.S. ; Kosmopoulos, S.A.
Author_Institution
Aristotle University of Thessaloniki, Department of Communications, Faculty of Engineering, Thessaloniki, Greece
Volume
135
Issue
3
fYear
1988
fDate
6/1/1988 12:00:00 AM
Firstpage
265
Lastpage
271
Abstract
The error performance of 16-QAM schemes operating in nonlinear satellite channels where additive white Gaussian noise (AWGN) appears on the down link has already been evaluated. However, it is well known that in realistic nonlinear satellite transmission systems, additive channel noise apppears on both the up- and the downlink; and indeed it is mostly the presence of uplink Gaussian channel noise that creates severe system performance degradation. A theoretical analysis is carried out by formulating upper and lower bounds of the 16-QAM system error performance, considering that Gaussian channel noise appears at both the input (uplink) and the output (downlink) of the space bandpass nonlinearity (BPNL). This creates AM/AM distortion and AM/PM conversion products, whose origin may be demonstrated by quadrature modelled nonlinear processing of the signal and the uplink Gaussian noise. The analysis described offers a technique for evaluating M-ary QAM system performance appraisals in a complex nonlinear satellite environment.
Keywords
amplitude modulation; satellite relay systems; signalling (telecommunication networks); telecommunication channels; white noise; 16-QAM signalling; AM/AM distortion; AM/PM conversion products; AWGN; M-ary QAM system; additive channel noise; additive white Gaussian noise; bandpass nonlinearity; down link; error performance; nonGaussian products environment; nonlinear satellite channels; nonlinear satellite transmission systems; performance bounds; quadrature modelled nonlinear processing; satellite relay systems; system performance degradation; uplink Gaussian channel noise;
fLanguage
English
Journal_Title
Communications, Radar and Signal Processing, IEE Proceedings F
Publisher
iet
ISSN
0143-7070
Type
jour
DOI
10.1049/ip-f-1.1988.0035
Filename
4647452
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