Adaptive Optics Compensation for Orbital Angular Momentum Optical Wireless Communications

Huan Chang, Xiaoli Yin, Haipeng Yao*, Jingjing Wang, Ran Gao*, Xiangjun Xin, Mohsen Guizani

*此作品的通讯作者

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摘要

Adaptive optics (AO) can efficiently compensate for turbulence-induced distortion in orbital angular momentum (OAM)-based optical wireless communication (OWC) systems. In this paper, we design a modified phase diversity algorithm (MPDA)-based wavefront sensor to enhance the reconstruction accuracy of distorted OAM wavefront information. Aiming to further strike a compelling trade-off between AO system complexity and compensation accuracy, we first construct a novel AO system that applies a quickly and electronically controlled focus-tunable lens (FTL). It decontaminates distorted OAM signaling beams while having a low systemic complexity and superior convergence performance. Furthermore, we propose the 3-modified phase diversity algorithm (3-MPDA) AO scheme relying upon a Fourier intensity and two defocused intensities as the prior information, which beneficially balances the compensation effect and the number of defocused intensities and exhibits good noise robustness against charge-coupled device (CCD) detectors. In summary, this paper provides new insight for designing AO schemes with high compensation performance in communication links.

源语言英语
页(从-至)11151-11163
页数13
期刊IEEE Transactions on Wireless Communications
21
12
DOI
出版状态已出版 - 1 12月 2022

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引用此

Chang, H., Yin, X., Yao, H., Wang, J., Gao, R., Xin, X., & Guizani, M. (2022). Adaptive Optics Compensation for Orbital Angular Momentum Optical Wireless Communications. IEEE Transactions on Wireless Communications, 21(12), 11151-11163. https://doi.org/10.1109/TWC.2022.3190329