用于地对空单模光纤耦合激光链路的低 SWaP 终端演示

IF 2.1 4区 物理与天体物理 Q2 OPTICS Photonics Pub Date : 2024-07-02 DOI:10.3390/photonics11070633
A. McCann, Alex M. Frost, S. Karpathakis, B. Dix-Matthews, D. Gozzard, Shane Walsh, S. Schediwy
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引用次数: 0

摘要

自由空间光学技术有望彻底改变点对点通信系统。相干光系统利用其极高的频率,在可实现的数据吞吐量方面比无线电系统高出几个数量级,同时还能降低所需的尺寸、重量和功率(SWaP),使其成为移动应用的理想选择。然而,这项技术的广泛应用在很大程度上受到大气湍流影响的阻碍,通常需要复杂的高阶自适应光学系统,而这些系统在很大程度上不适合部署在移动平台上。通过采用尖端/倾斜光束稳定技术,我们展示了定制的低SWaP光学终端的成果,该终端演示了单模光纤(SMF)耦合。这是通过结合使用飞机应答器和机器视觉反馈,以 29.4 µrad 的均方根(RMS)跟踪误差和高达 0.83 度/秒的角速度自主获取和跟踪目标实现的。据作者所知,这些作品是首次发表的与全尺寸直升机的 SMF 耦合光学链路,我们描述了与未来改进此类链路相关的推导量。实现 SMF 耦合而不受复杂自适应光学系统限制的能力,使这项技术成为陆基、空基和海基平台的多功能量子通信解决方案,适用于商业、科学和军事运营商。
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Demonstration of a Low-SWaP Terminal for Ground-to-Air Single-Mode Fiber Coupled Laser Links
Free space optical technology promises to revolutionize point-to-point communications systems. By taking advantage of their vastly higher frequencies, coherent optical systems outperform their radio counterparts by orders of magnitude in achievable data throughput, while simultaneously lowering the required size, weight, and power (SWaP), making them ideal for mobile applications. However, the widespread implementation of this technology has been largely hindered by the effects of atmospheric turbulence, often necessitating complex higher-order adaptive optics systems that are largely unsuitable for deployment on mobile platforms. By employing tip/tilt beam-stabilization, we present the results of a bespoke low-SWaP optical terminal that demonstrated single-mode fiber (SMF) coupling. This was achieved by autonomously acquiring and tracking the targets using a combination of aircraft transponder and machine vision feedback to a root-mean-square (RMS) tracking error of 29.4 µrad and at angular rates of up to 0.83 deg/s. To the authors’ knowledge, these works constitute the first published SMF coupled optical link to a full-sized helicopter, and we describe derived quantities relevant to the future refinement of such links. The ability to achieve SMF coupling without the constraints of complex adaptive optics systems positions this technology as a versatile quantum-capable communications solution for land-, air-, and sea-based platforms ranging across commercial, scientific, and military operators.
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来源期刊
Photonics
Photonics Physics and Astronomy-Instrumentation
CiteScore
2.60
自引率
20.80%
发文量
817
审稿时长
8 weeks
期刊介绍: Photonics (ISSN 2304-6732) aims at a fast turn around time for peer-reviewing manuscripts and producing accepted articles. The online-only and open access nature of the journal will allow for a speedy and wide circulation of your research as well as review articles. We aim at establishing Photonics as a leading venue for publishing high impact fundamental research but also applications of optics and photonics. The journal particularly welcomes both theoretical (simulation) and experimental research. Our aim is to encourage scientists to publish their experimental and theoretical results in as much detail as possible. There is no restriction on the length of the papers. The full experimental details must be provided so that the results can be reproduced. Electronic files and software regarding the full details of the calculation and experimental procedure, if unable to be published in a normal way, can be deposited as supplementary material.
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