Title :
Range-Angle-Dependent Beamforming of Pulsed Frequency Diverse Array
Author :
Yanhong Xu ; Xiaowei Shi ; Jingwei Xu ; Ping Li
Author_Institution :
Sci. & Technol. on Antenna & Microwave, Xidian Univ., Xi´an, China
Abstract :
Different from the conventional phased array, frequency diverse array (FDA) can provide electronic beam scanning without phase shifters and its beam steering is range-angle-dependent. Nevertheless, reported studies on FDA are most in continuous waveforms and the corresponding beampattern is time-variant, which increases difficulty in controlling the mainbeam direction and complexity of signal processing. To alleviate this problem, a pulsed-FDA is proposed with an aim to generate quasi-static beampattern in this communication. The corresponding constraint is derived together with the method to control the mainbeam direction. Moreover, the range-angle-dependent characteristics of the quasi-static transmit/receive beampattern are addressed considering the radar applications. Besides, range-angle-dependent beampattern significantly enhances the flexibility of beam scanning and its signal processing. Simulation results are in good agreement with the theoretical analysis.
Keywords :
antenna phased arrays; antenna radiation patterns; array signal processing; receiving antennas; transmitting antennas; electronic beam scanning flexibility enhancement; mainbeam direction control; phased array antennas; pulsed frequency diverse array; pulsed-FDA; quasi-static receive beampattern generation; quasi-static transmit beampattern generation; range-angle-dependent beamforming; signal processing complexity; Array signal processing; Arrays; Frequency diversity; Frequency modulation; Radar; Radar antennas; Pulsed frequency diverse array; Pulsed frequency diverse array (FDA); quasi-static beampattern; quasistatic beampattern; range-angle-dependent beamforming; transmit/ receive beamforming; transmit/receive beamforming;
Journal_Title :
Antennas and Propagation, IEEE Transactions on
DOI :
10.1109/TAP.2015.2423698