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用于由聚合物波导器件组成的光学相控阵光束扫描仪的快速运行波束形成算法。

Fast-running beamforming algorithm for optical phased array beam scanners comprised of polymeric waveguide devices.

作者信息

Jin Jinung, Lee Eun-Su, Chun Kwon-Wook, Lee Sang-Shin, Oh Min-Cheol

出版信息

Opt Express. 2022 Jan 17;30(2):768-779. doi: 10.1364/OE.443180.

Abstract

The phase error imposed in optical phased arrays (OPAs) for beam scanning LiDAR is unavoidable due to minute dimensional fluctuations that occur during the waveguide manufacturing process. To compensate for the phase error, in this study, a fast-running beamforming algorithm is developed based on the rotating element vector method. The proposed algorithm is highly suitable for OPA devices comprised of polymer waveguides, where thermal crosstalk between phase modulators is suppressed effectively, allowing for each phase modulator to be controlled independently. The beamforming speed is determined by the number of phase adjustments. Hence, by using the least square approximation for a 32-channel polymer waveguide OPA device the number of phase adjustments needed to complete beamforming was reduced and the beamforming time was shortened to 16 seconds.

摘要

由于在波导制造过程中会出现微小的尺寸波动,因此光束扫描激光雷达的光学相控阵(OPA)中产生的相位误差是不可避免的。为了补偿相位误差,本研究基于旋转元件矢量法开发了一种快速运行的波束形成算法。所提出的算法非常适合由聚合物波导组成的OPA器件,其中相位调制器之间的热串扰得到有效抑制,从而允许对每个相位调制器进行独立控制。波束形成速度由相位调整的次数决定。因此,通过对32通道聚合物波导OPA器件使用最小二乘近似,减少了完成波束形成所需的相位调整次数,并将波束形成时间缩短至16秒。

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