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Dual use architecture for innovative lidar and free space optical communications

机译:用于创新利那和自由空间光通信的双重使用架构

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摘要

An innovative and effective architecture for lidar systems is presented and experimentally demonstrated. The proposed scheme can also be easily exploited for optical communications. In particular, the system includes an innovative lidar software-defined architecture based on optically coherent detection, overcoming current drawbacks of time of flight incoherent systems. The experiments demonstrate the ability to perform long range detection resorting to the waveform compression on the continuous wave approach, obtaining a range resolution of 15 cm with a sensitivity of -95 dBm. Beside the bulk implementation, the system has been also implemented in a photonic integrated circuit using complementary metal-oxide-semiconductor- compatible silicon on insulator technology with an extremely reduced footprint of 1.5 mmx 3.5 mm. The testing of the integrated device confirms the effectiveness of this proof-of-concept realization. (C) 2017 Optical Society of America.
机译:提出和实验证明了LIDAR系统的创新和有效的架构。 所提出的方案也可以很容易地利用光学通信。 特别是,该系统包括基于光学相干检测的创新的LIDAR软件定义架构,克服了飞行时期的当前缺点。 该实验证明了在连续波方法上进行长距离检测的能力,借助于连续波方法的波形压缩,获得15cm的范围分辨率,灵敏度为-95dBm。 除了批量实现之外,该系统也已经在光子集成电路中使用了在绝缘技术上的互补金属氧化物 - 半导体兼容硅,极其降低的1.5mmx 3.5mm。 集成设备的测试证实了该概念证明实现的有效性。 (c)2017年美国光学学会。

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