DocumentCode
3746073
Title
Multi-objective optimization of a low-noise antenna amplifier for multi-constellation satellite-navigation receivers
Author
Josef Dobe?;Jan Michal;Jakub Popp;Martin Grabner;Franti?ek Vejrazka;Jakub Kakona
Author_Institution
Czech Technical University in Prague, Faculty of Electrical Engineering, Department of Radio Electronics, Technick? 2, 166 27 Praha 6, Czech Republic
fYear
2015
Firstpage
88
Lastpage
93
Abstract
Although the major parts of function blocks for the satellite navigation receivers are fully integrated in a CMOS chip in most cases, it is convenient to create an antenna preamplifier as a separate circuit based on a low-noise pHEMT. Such an RF front end can be strongly optimized to attain a trade-off between the noise figure and transducer power gain. Furthermore, as all the principal navigation systems (GPS, GLONASS, Galileo, and Compass) work in similar frequency band (roughly from 1.1 to 1.7 GHz), it is reasonable to create this low-noise preamplifier for all of them. In the paper, a sophisticated method of the amplifier design is suggested based on multi-objective optimization. First, an extraction of pHEMT model parameters was performed, including comparisons among several models. The extraction was carried out by our original three-step robust identification procedure based on a combination of meta-heuristic and direct optimization methods. Second, a substantial improvement of a standard method for the multi-objective optimization is outlined. Third, the equations of passive elements of the circuit (including transmission lines and T splitters) were carefully defined using frequency dispersion of their parameters as Q, ESR, etc. Fourth, an optimal selection of the amplifier operating point and essential passive elements was performed using the previously improved goal attainment method. Finally, the s-parameters and noise figure of the proposed preamplifier were measured, and the third-order intermodulation products were also checked.
Keywords
"Solid modeling","Optimization","PHEMTs","Integrated circuit modeling","Scattering parameters","Inductors","Frequency measurement"
Publisher
ieee
Conference_Titel
System-on-Chip Conference (SOCC), 2015 28th IEEE International
Electronic_ISBN
2164-1706
Type
conf
DOI
10.1109/SOCC.2015.7406919
Filename
7406919
Link To Document