DocumentCode
3329456
Title
A novel representation of AM-PM conversion
Author
A, H. Jardón ; L, H. Vázquez
Author_Institution
Dept. of Electr. Eng., CINVESTAV-IPN, Mexico City, Mexico
fYear
195
fDate
14-18 Aug 195
Firstpage
401
Lastpage
405
Abstract
Using Volterra transfer functions, a new model for AM-PM conversion, determined by the odd Volterra transfer functions is established as a phase statement of compression and desensitization. This model gives us a better evaluation of the radio system immunity when the wanted signal is received with several interfering signals or it has fading. The description of nonlinear circuits by Volterra theory gives the way to generalize the structural analysis method for linear systems in circuits and systems with weakly nonlinearities. It also allows to obtain the AM-PM conversion introduced by N nonlinear blocks connected in cascade which can form a complete radio link. In this case conditions are also found to minimize AM-PM conversion in the system. It is shown that this representation of the AM-PM conversion lets us find the polarization point of transistors, where AM-PM conversion is minimum
Keywords
Volterra series; amplitude modulation; digital radio; fading; nonlinear systems; phase modulation; radio links; radiofrequency interference; transfer functions; AM-PM conversion; Volterra theory; Volterra transfer functions; complete radiolink; compression; desensitization; digital radio; fading; interfering signals; linear systems; nonlinear circuits; polarization point; radio system immunity; structural analysis method; transistors; weakly nonlinearities; Cities and towns; Digital communication; Digital modulation; Electronic mail; Fading; Linear systems; Nonlinear circuits; Nonlinear systems; Telecommunications; Transfer functions;
fLanguage
English
Publisher
ieee
Conference_Titel
Electromagnetic Compatibility, 1995. Symposium Record., 1995 IEEE International Symposium on
Conference_Location
Atlanta, GA
Print_ISBN
0-7803-3608-9
Type
conf
DOI
10.1109/ISEMC.1995.523590
Filename
523590
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