光无线
光束发散
光束转向
光学
误码率
物理
相移键控
相控阵
光通信
信号(编程语言)
梁(结构)
相控阵光学
半最大全宽
自由空间光通信
无线
光束直径
计算机科学
工程类
电气工程
电信
频道(广播)
激光器
激光束
天线(收音机)
程序设计语言
作者
Chi‐Wai Chow,You-Chia Chang,Sheng-I Kuo,Pin-Cheng Kuo,Wang Juwei,Yin-He Jian,Zohauddin Ahmad,Po‐Han Fu,Jin‐Wei Shi,Ding‐Wei Huang,Tun-Yao Hung,Yuan-Zeng Lin,Chien-Hung Yeh,Yang Liu
标识
DOI:10.1109/jlt.2022.3206843
摘要
We put forward and present a demonstration of an actively controlled optical beam steering optical wireless communication (OWC) system based on an integrated actively steerable optical phased array (OPA). We theoretically and experimentally analyze the emitted optical beam full-width-half-maximum (FWHM) divergence angle and field-of-view (FOV) of the proposed integrated actively steerable OPA. Experimental results show that the beam steering can be achieved over a range of 17° with a minimum optical beam FWHM divergence angle of 1.49°. Besides, the integrated OPA chip design, beam forming optimization, packaging, as well as temperature stabilization are also discussed. Genetic Algorithm (GA) is utilized to optimize the applied voltages for the 30 phase shifters to produce low-divergence optical beams in different directions. A proof-of-concept bit-error-rate (BER) measurement using 10 Gbit/s on-off-keying (OOK) signal is also carried out, and the beam steered optical signal satisfying the pre-forward error correction BER limit (pre-FEC BER = 3.8 × 10 −3 ) is achieved.
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