Title :
A Self-Steering Receiver Array Using Jointly Coupled Oscillators and Phased-Locked Loops
Author :
Gupta, Amit Kumar ; Buckwalter, James F.
Author_Institution :
Dept. of Electr. & Comput. Eng., Univ. of California at San Diego, La Jolla, CA, USA
Abstract :
This paper presents an analog circuit scheme to steer phased-array receivers in the direction of an incoming signal. The proposed circuit technique utilizes a coupled-oscillator array along with a coupled-phased-locked loop to auto-align an N-element receive array towards the direction of the incident RF signal. A four-element receiver array is implemented in 45-nm CMOS SOI process and achieves auto-steering range of ±35° from broadside. A three-element version of the array demonstrates higher auto-steering angle covering ±70° range. The receiver also performs signal demodulation for the incident modulated RF signal, allowing high-data rate communication. A 60-Mbps 64-QAM modulated RF signal is demodulated with error-vector-magnitude (EVM) less than 4% across the steering angle range. The chip area is 3.45 mm2 including a pad frame with 30-mW/element power consumption. To the best of authors´ knowledge, this is the first demonstration of an analog self-steering array in an integrated circuit.
Keywords :
array signal processing; quadrature amplitude modulation; receivers; CMOS SOI process; EVM; QAM; RF signal; analog circuit scheme; coupled oscillator array; coupled phased locked loop; digital signal processing; error vector magnitude; incident RF signal; integrated circuit; jointly coupled oscillators; self steering receiver array; steer phased array receivers; Arrays; Circuit stability; Couplings; Oscillators; Phase locked loops; Receivers; Stability analysis; $X$-band; Adaptive phased-arrays; coupled oscillators; coupled-phased-locked loops (CPLLs); point-to-point links; retrodirective arrays; self-steering;
Journal_Title :
Microwave Theory and Techniques, IEEE Transactions on
DOI :
10.1109/TMTT.2014.2300037