Chen Xiaoxue, Li Shangyuan, Xing Luhang, Yu Jinghan, Xue Xiaoxiao, Zheng Xiaoping
Opt Express. 2022 Aug 15;30(17):30198-30209. doi: 10.1364/OE.464769.
In this paper, a broadband photonic beam processor is presented for the all-optical multifunction integrated receiver. By implementing echo signals with optical beam multi-domain processing based on space-to-time mapping and time-to-frequency mapping, the non-mechanical control of expected beam pointing is enabled while the target within the beam can be imaged simultaneously. A proof-of-concept experiment with a 4-element phased array is performed in Ka band. The beam pointing is set to be 0° and 12.5°, where two-dimensional images of moving targets inside the beam region are obtained, respectively. The suppression ratio to the beam region outside is measured to be 26.8 dB. And the range and cross-range imaging resolution is 0.042 m × 0.051 m. A comparison with a cascade mode of single-function microwave photonic modules shows that the multifunction integrated photonic beam processor has reduced the system loss by 32.4 dB. The proposed beam processor enables multi-element broadband phased arrays with less complexity and power consumption.
本文提出了一种用于全光多功能集成接收机的宽带光子束处理器。通过基于空时映射和时频映射的光束多域处理来实现回波信号,在实现光束内目标同时成像的情况下,能够实现预期光束指向的非机械控制。在Ka波段进行了一个4元相控阵的概念验证实验。光束指向设置为0°和12.5°,分别获取了光束区域内移动目标的二维图像。测得对光束区域外的抑制比为26.8 dB。距离和横向成像分辨率为0.042 m×0.051 m。与单功能微波光子模块的级联模式相比,多功能集成光子束处理器使系统损耗降低了32.4 dB。所提出的光束处理器能够实现具有更低复杂度和功耗的多元素宽带相控阵。