Title :
Multi-Beam Spatio-Spectral Beamforming Receiver for Wideband Phased Arrays
Author :
Kalia, Sachin ; Patnaik, Satwik A. ; Sadhu, B. ; Sturm, Martin ; Elbadry, Mohammad ; Harjani, Ramesh
Author_Institution :
Univ. of Minnesota, Minneapolis, MN, USA
Abstract :
This paper reports the first analog integrated spatio-spectral beamforming front-end. The proposed front-end allows for accurate beam steering of signals with large fractional bandwidths, thus minimizing beam squinting, and simultaneous and independent steering of multi-carrier signals. Different spatio-spectral beamforming strategies are discussed and compared. As a proof of concept, an 8 GHz 2-channel, 4-frequency phased-array beamformer is designed and implemented in 65 nm CMOS. The IF signal on each channel is frequency split using an all passive 4-point analog FFT. The orthogonal frequency outputs are then beam-steered using an all passive I-Q vector-combiner. The RF circuit draws 22.8 mA from a 1.2 V supply while the analog baseband consumes 135 μW at 120 MS/s (9 pJ/conv.).
Keywords :
CMOS analogue integrated circuits; antenna phased arrays; array signal processing; beam steering; broadband antennas; fast Fourier transforms; field effect MMIC; microwave antenna arrays; microwave receivers; multibeam antennas; 4-frequency phased-array beamformer; CMOS process; IF signal; all passive 4-point analog FFT; all passive I-Q vector-combiner; analog integrated spatio-spectral beamforming front-end; beam squinting minimization; beam steering; current 22.8 mA; frequency 8 GHz; frequency split; large fractional bandwidths; multibeam spatio-spectral beamforming receiver; multicarrier signals; orthogonal frequency outputs; power 135 muW; size 65 nm; voltage 1.2 V; wideband phased antenna arrays; Analog FFT; beam squinting; blocker; broadband; fractional bandwidth; frequency channelization; phased-arrays; space-only; spatio-spectral; switched-capacitor; vector-combiner; wideband;
Journal_Title :
Circuits and Systems I: Regular Papers, IEEE Transactions on
DOI :
10.1109/TCSI.2013.2256239