Title :
Ultra-wideband low-cost phased-array radars
Author :
Rodenbeck, Christopher T. ; Kim, Sang-Gyu ; Tu, Wen-Hua ; Coutant, Matthew R. ; Hong, Seungpyo ; Li, Mingyi ; Chang, Kai
Author_Institution :
Dept. of Electr. Eng., Texas A&M Univ., College Station, TX, USA
Abstract :
Emerging radar applications require phased arrays that can operate over wide bandwidths to support multiband/multifunction operation. In response to that need, this paper presents a cost-effective implementation for extremely wide-band phased-array radars. Two designs are demonstrated, one operating from 3 to 12 GHz and the other operating from 8 to 20 GHz. These designs incorporate ultra-wideband antipodal tapered slot antennas, a novel cross-polarization suppressed array architecture, piezoelectric true-time-delay phase shifters, and broad-band high-power monolithic amplifiers. The resulting systems provide target detection and beam steering over the complete operating bandwidths. These results exceed the state-of-the-art for phased-array radars in terms of bandwidth and cost and should have direct applications in the development of ultra-wideband and multifunction radar systems.
Keywords :
MMIC power amplifiers; antenna phased arrays; beam steering; phased array radar; slot antenna arrays; ultra wideband antennas; ultra wideband radar; wideband amplifiers; 3 to 12 GHz; 8 to 20 GHz; antenna arrays; beam steering; broad-band high-power monolithic amplifier; cross-polarization suppressed array architecture; monolithic microwave integrated circuits; multiband operation; multifunction operation; multifunction radar system; piezoelectric true-time-delay phase shifters; ultra-wideband antipodal tapered slot antenna; ultra-wideband radar system; wide-band phased-array radar; Antenna arrays; Bandwidth; Broadband amplifiers; Phase shifters; Phased arrays; Radar antennas; Radar applications; Slot antennas; Ultra wideband antennas; Ultra wideband technology; Antenna arrays; monolithic microwave integrated circuits (MMICs); phased arrays; ultra-wideband radar;
Journal_Title :
Microwave Theory and Techniques, IEEE Transactions on
DOI :
10.1109/TMTT.2005.856668