DocumentCode
941938
Title
On quantifying the benefits of SSPA linearization in UWC-136 systems
Author
Droma, M. S O ; Mgebrishvili, N.
Author_Institution
Dept. of Electr. & Comput. Eng., Univ. of Limerick, Ireland
Volume
53
Issue
7
fYear
2005
fDate
7/1/2005 12:00:00 AM
Firstpage
2470
Lastpage
2476
Abstract
A novel comparative analysis of the benefits brought by different degrees of linearization to offset the modulation fidelity (MF) and spectrum regrowth impairments caused by solid-state power amplifier (SSPA) nonlinearity, as measured by error vector magnitude (EVM) and adjacent channel power ratio (ACPR) performance for TIA/EIA Universal Wireless Communication standard UWC-136 signals, are quantified. New results are presented showing the benefits of even modest levels of linearization but also that such benefits may be easily eroded at a receiver by the adjacent channel interference (ACI) in certain circumstances. An equation expressing the incremental MF deterioration experienced by a wanted channel (WC) signal, at its receiver, due to ACI arising from signals in the immediate upper and lower frequency channels, and as a function of adjacent channel (AC) to WC power differential, where signals are subject to different degrees of linearization, is presented. Typical SSPA characteristic values for the equation constants in the cases of one and two immediate AC signals are derived from simulation results. Interesting new results and conclusions relevant to the drafting of harmonious ACPR-EVM specifications and on the advisability of the inclusion of linearization schemes in transmitters, in the context of the UWC-136 system, are presented.
Keywords
adjacent channel interference; linearisation techniques; modulation; power amplifiers; radio networks; radiofrequency amplifiers; signal processing; SSPA linearization; UWC-136 system; adjacent channel interference; adjacent channel power ratio; error vector magnitude; high-power amplifier; modulation fidelity; signal quantification; solid-state power amplifier; universal wireless communication; wanted channel signal; Communication standards; Equations; Measurement standards; Optical wavelength conversion; Performance analysis; Power amplifiers; Power measurement; Signal analysis; Solid state circuits; Wireless communication; ACPR; EVM; adjacent channel interference; error vector magnitude; high-power amplifier; percentage linearization;
fLanguage
English
Journal_Title
Signal Processing, IEEE Transactions on
Publisher
ieee
ISSN
1053-587X
Type
jour
DOI
10.1109/TSP.2005.849190
Filename
1453779
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