Title :
Multi-Band and Reconfigurable Front-Ends for Flexible and Multi-Functional RF Systems
Author :
Malmqvist, Robert ; Ouacha, Aziz ; Erickson, Roland
Author_Institution :
Dept. of Sensor Technol., FOI Swedish Defence Res. Agency, Linkoping
Abstract :
This report summarizes some of the recent results at FOI with respect to multi-band and reconfigurable front-ends for flexible and multi-functional RF systems. Firstly, we report on a frequency agile X-band smart skin digital beamforming antenna based on using an 8-10 GHz tunable active filter and an image rejection mixer in a receiver GaAs MMIC. Secondly, we have also investigated the possibility of using RF MEMS based reconfigurable matching networks for realizing tunable bandpass LNAs with even wider tuning ranges (e.g. 6-10 GHz could be possible according to our simulations). Finally, we study a system concept for a Ka-band multi-functional electronically steerable antenna (ESA) on a small UAV based on using sub-arrays with low-loss MEMS phase shifters. The results show that adequate RF performance (in terms of 2 dB of average losses at 35 GHz) can be possible to achieve with a Ka-band 4-bits MEMS phase shifter design made on quartz.
Keywords :
III-V semiconductors; MMIC mixers; MMIC phase shifters; adaptive antenna arrays; airborne radar; aircraft antennas; beam steering; gallium arsenide; integrated circuit design; low noise amplifiers; micromechanical devices; microwave antenna arrays; microwave filters; microwave receivers; radar antennas; remotely operated vehicles; GaAs; Ka-band multifunctional ESA; RF MEMS based reconfigurable matching networks; SiO2; UAV; digital beamforming antenna; electronically steerable antenna; flexible RF systems; frequency 8 GHz to 10 GHz; frequency agile X-band smart skin; image rejection mixer; low-loss MEMS phase shifter design; multiband front-ends; multifunctional RF systems; quartz; receiver MMIC; reconfigurable front-ends; tunable active filter; tunable bandpass LNA; Active filters; Array signal processing; Gallium arsenide; MMICs; Micromechanical devices; Phase shifters; Radio frequency; Radiofrequency microelectromechanical systems; Receiving antennas; Skin; Multi-Band; Multi-Functional; RF Front-Ends;
Conference_Titel :
Microwave Conference, 2007. APMC 2007. Asia-Pacific
Conference_Location :
Bangkok
Print_ISBN :
978-1-4244-0748-4
Electronic_ISBN :
978-1-4244-0749-1
DOI :
10.1109/APMC.2007.4554995