Title :
A 77–81-GHz 16-Element Phased-Array Receiver With
Beam Scanning for Advanced Automotive Radars
Author :
Bon-Hyun Ku ; Schmalenberg, Paul ; Inac, Ozgur ; Gurbuz, Ozan Dogan ; Jae Seung Lee ; Shiozaki, Koji ; Rebeiz, Gabriel M.
Author_Institution :
Dept. of Electr. & Comput. Eng., Univ. of California at San Diego (UCSD), La Jolla, CA, USA
Abstract :
A 16-element phased-array receiver has been developed for advanced W-band automotive radars. The phased-array receiver is based on a single SiGe chip with RF beamforming capabilities, which is packaged using low-cost bond-wire techniques and attached to a 16-element linear microstrip array. The antenna results in a directivity of 29.3 dB and a gain of 28.0 dB at 77-81 GHz, and can be scanned to ±50° in the azimuth plane in ~ 1° steps. The packaging details are presented together with the steps taken to ensure a wideband impedance match and low coupling between the phased-array channels. Gain measurements done at 79 GHz agree well with simulations. The 16-element phased array receiver was used with a 2-element frequency-modulated continuous-wave transmitter at 76.5-77 GHz and high-resolution millimeter-wave images were obtained. The work shows that complex millimeter-wave phased arrays can be packaged using traditional bond-wire techniques, and can be a powerful solution for advanced automotive radars.
Keywords :
Ge-Si alloys; antenna phased arrays; integrated circuit packaging; linear antenna arrays; microstrip antenna arrays; millimetre wave antenna arrays; millimetre wave radar; millimetre wave receivers; phased array radar; radar antennas; road vehicle radar; 16-element phased-array receiver; RF beamforming capabilities; SiGe; W-band automotive radars; advanced automotive radar beam scanning; chip packaging details; complex millimeter-wave phased arrays; frequency 76.5 GHz to 81 GHz; frequency-modulated continuous-wave transmitter; gain 28 dB; high-resolution millimeter-wave images; linear microstrip array; low-cost bond-wire techniques; phased-array channels; wideband impedance match; Arrays; Automotive engineering; Gain; Microstrip antenna arrays; Radar; Receivers; Silicon germanium; 77-GHz circuits; Automotive radar; SiGe BiCMOS; phased array; receiver; transmitter;
Journal_Title :
Microwave Theory and Techniques, IEEE Transactions on
DOI :
10.1109/TMTT.2014.2354134