Li Yingzhi, Wang Ziming, Du Haolun, Chen Baisong, Song Junfeng, Tao Min
Opt Express. 2024 Sep 9;32(19):33222-33231. doi: 10.1364/OE.535444.
Traditional free space optical communication (FSOC) and light detection and ranging (lidar) are typically separate entities. Integrated communication and sensing systems (ICSS) can harmoniously integrate environmental perception with data transmission, paving the way for efficient, safe, and intelligent vehicle. However, the performance of FSOC and lidar systems are often constrained by the traditional mechanical beam steering components, impacting beam scanning speed, system volume, and robustness. In this paper, we propose an ICSS with 64-channel SiN-Si dual-layer optical phased array (OPA) chip. The OPA is utilized as the fast and solid scanning component to realize multi-target FSOC and range detection. The dual-pulse interval modulation (DPIM) technique is utilized for generating pulse signals, supporting time-of-flight (ToF) based distance measurement and undistorted data transmission. The OPA functions as the transmitter in this system, realizing fast beam steering by controlling the antenna phase with beam switching time of 32.26 µs. The results show that this system can achieve fast targeting, reliable signal transmission to multiple targets and precise range detection concurrently.
传统的自由空间光通信(FSOC)和光探测与测距(激光雷达)通常是相互独立的实体。集成通信与传感系统(ICSS)能够将环境感知与数据传输和谐地整合在一起,为高效、安全和智能车辆铺平道路。然而,FSOC和激光雷达系统的性能常常受到传统机械光束转向部件的限制,影响光束扫描速度、系统体积和稳健性。在本文中,我们提出了一种具有64通道氮化硅-硅双层光学相控阵(OPA)芯片的ICSS。该OPA被用作快速且稳定的扫描部件,以实现多目标FSOC和距离检测。双脉冲间隔调制(DPIM)技术用于生成脉冲信号,支持基于飞行时间(ToF)的距离测量和无失真数据传输。在此系统中,OPA充当发射器,通过控制天线相位实现快速光束转向,光束切换时间为32.26微秒。结果表明,该系统能够同时实现快速目标锁定、向多个目标可靠地传输信号以及精确的距离检测。