Title :
Dense Delta-Sigma Phased Arrays
Author :
Krieger, James D. ; Chen-Pang Yeang ; Wornell, Gregory W.
Author_Institution :
Dept. of Electr. Eng. & Comput. Sci., Massachusetts Inst. of Technol., Cambridge, MA, USA
fDate :
4/1/2013 12:00:00 AM
Abstract :
The high cost of high-resolution phase shifters required to maintain precise control over the array beam pattern in traditional phased arrays preclude their use in a variety of emerging millimeter-wave applications. We develop a phased array architecture that obviates the need for such precise phase shifters, based on the use of sub-half-wavelength array element spacing and novel spatial domain delta-sigma processing. We characterize the performance of this architecture in terms of the array signal-to-quantization-noise ratio (SQNR) and the array power transfer efficiency, and demonstrate a tradeoff between these two metrics. As an illustrative design, we show that when constrained to two-bit phase shifters, a four-fold increase in the array density can provide a roughly 6 dB improvement in SQNR over standard design techniques, with an average efficiency loss of less than 1.5 dB with respect to a perfectly tuned ideal array. In our analysis, we account for the effects of mutual coupling, and describe a simple, practical impedance matching network for this architecture. The resulting framework allows a system designer with a given set of circuit, device, and antenna fabrication and integration technologies to choose from a spectrum of tradeoffs between array density and RF component complexity.
Keywords :
antenna phased arrays; impedance matching; phase shifters; quantisation (signal); RF component complexity; SQNR; antenna fabrication; array beam pattern; array density; dense delta-sigma phased arrays; high-resolution phase shifters; impedance matching network; millimeter-wave applications; phased array antennas; power transfer efficiency; signal-to-quantization-noise ratio; spatial domain delta-sigma processing; standard design techniques; subhalf-wavelength array element spacing; tuned ideal array; two-bit phase shifters; Array signal processing; Couplings; Mutual coupling; Phase shifters; Phased arrays; Quantization; Array processing; beam steering; beamforming; millimeter-wave antenna arrays; mutual coupling; phased arrays; sigma-delta modulation;
Journal_Title :
Antennas and Propagation, IEEE Transactions on
DOI :
10.1109/TAP.2013.2241719