摘要
自适应光学系统可以抑制大气湍流所产生的波前畸变,波前探测支路和光纤耦合支路之间存在的非共光路像差会导致自适应光学系统闭环后其耦合功率未能有效提升。采用逆向传输标定法由耦合光纤端到波前传感器进行反向传输,将波前传感器采集相对应的波前信息折算到自适应光学系统并实现闭环控制。结果表明:采用逆向传输标定法,数值仿真的耦合效率由27.31%提升至68.14%;静态环境实验的耦合效率由9.04%提升至45.21%;湍流环境实验的耦合效率由19.72%提升至36.93%;复杂环境实验的耦合效率由3.87%提升至7.52%。该方案简单而切实可行,易于在工程上推广应用。
Objective Optical wireless coherent communication employs optical hybrid to complete the mixing of signal light and local oscillator light,and balance detectors to complete photoelectric conversion.Optical fiber hybrid has been widely applied in optical wireless coherent communication systems due to its advantages such as high integration and compact structure.It is necessary to efficiently couple spatial light into the optical fiber.Adaptive optical technology can improve the coupling efficiency from spatial light into optical fiber by correcting the distorted wavefront,and it is applied to optical wireless coherent communication systems.The existence of noncommon optical path aberration between the wavefront sensing branch and the coupling branch leads to the distorted wavefront in the communication branch after the closed loop of the adaptive optical system.The stochastic parallel gradient descent algorithm to correct the noncommon optical path aberration is easy to fall into the local optimum,and the phase difference algorithm employed to correct the noncommon optical path aberration is only applicable to the field of imaging systems.We propose a reverse transmission calibration algorithm to measure the noncommon optical path aberration for the initial calibration of adaptive optical systems in optical wireless coherent communication.Methods The adaptive optical system in wireless optical coherent communication is shown in Fig.1.After the laser beam is transmitted through the atmospheric turbulence,the beam is fully reflected by the deformable mirror.The reflected beam is divided into two collimated beams with a power ratio of 1:1 by the beamsplitter.One transmitted beam is to act on the wavefront sensor to monitor the current distorted wavefront.The other reflected beam is directly coupled into a singlemode fiber after being converged by a coupling lens for optical hybrid,coherent detection,and communication.Reverse transmission is sending the same beam from the receiver to the transmitter.A laser beam identical to the transmission source is supposed to be connected to the coupling optical fiber,as shown in Fig.2.At the same time,the deformable mirror command in this state is cleared so that the deformable mirror is in a completely flat reflection state.The beam output by the coupling fiber is reflected by the beamsplitter and then reflected by the deformable mirror directly into the wavefront sensor to measure the wavefront information.At this time,the measured wavefront information includes both the wavefront phase that can maximize the coupling efficiency and noncommon optical path aberration.The coupling efficiency can be improved when the measured wavefront information is converted to the closedloop control of adaptive optics.Results and Discussions The local oscillator light in the optical wireless coherent communication system is connected to the coupled singlemode optical fiber by the reverse transmission calibration algorithm.The peaktovalley value of the noncommon optical path aberration(Fig.7)measured by the wavefront sensor is 3.71μm,with the root mean square value of 1.34μm.This error is enough to exert a significant impact on coupling efficiency.When the wavefront information is converted into the adaptive optical closedloop control,coupling efficiency increases from the initial 9.04%to the closedloop 45.21%(Fig.8).The selfnoise inside the wavefront sensor causes some synaptic data in the wavefront slope measurement and wavefront reconstruction,but does not significantly affect the fluctuation of coupling efficiency(Fig.8).In turbulent environments,the coupling efficiency increases from 19.72%under uncorrected state to 36.93%under closedloop state(Fig.13),and that in complex environments increases from 3.91%in an uncorrected state to 9.13%in the closedloop state(Fig.16).This shows that with the increase of communication distance,the influence of atmospheric turbulence on adaptive optical correction effect is more significant than noncommon optical path aberration.Conclusions Based on the reversibility principle of optical paths,we propose a reverse transmission calibration algorithm to measure and correct noncommon optical path aberration for adaptive optical fiber coupling systems in optical wireless coherent communication.This algorithm converts the noncommon optical path aberration into closedloop control and improves coupling efficiency while correcting the distorted wavefront phase.Compared with conventional stochastic parallel gradient descent algorithms,this scheme will not fall into the local optimum,and will not be affected by the external turbulent environments.It can also assist in the position alignment of optical paths,which is simple,feasible,and easy to realize in engineering.Finally,reference significance and practical value are provided for the optical fiber coupling technology of the optical wireless coherent communication system.
作者
杨尚君
梁静远
吴加丽
柯熙政
Yang Shangjun;Liang Jingyuan;Wu Jiali;Ke Xizheng(School of Automation and Information Engineering,Xi'an University of Technology,Xi'an 710048,Shaanxi,China;Shaanxi CivilMilitary Integration Key Laboratory of Intelligence Collaborative Networks,Xi'an 710048,Shaanxi,China)
出处
《光学学报》
EI
CAS
CSCD
北大核心
2023年第12期94-104,共11页
Acta Optica Sinica
基金
陕西省科研计划项目(18JK0341)
陕西省重点产业创新项目(2017ZDCXL-GY-06-01)
西安市科技计划项目(2020KJRC0083)。
关键词
光纤光学与光通信
无线光相干通信
自适应光学
光纤耦合
非共光路像差
fiber optics and optical communication
optical wireless coherent communication
adaptive optics
fiber coupling
noncommon optical path aberration