Laser-Based Indoor Mobile Wireless Communication Aided by Stabilizers

IF 6.3 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC IEEE Open Journal of the Communications Society Pub Date : 2024-07-01 DOI:10.1109/OJCOMS.2024.3420102
Juncheng Li;Shenjie Huang;Mohammad Dehghani Soltani;Harald Haas;Majid Safari
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Abstract

Laser-based optical wirele scommunication (OWC) can provide multi-Gb/s data rates for future indoor mobile wireless networks. However, due to the directionality of laser beams, the performance of indoor laser-based OWC suffers from the misalignment induced by the random orientation of user devices. To address this challenge, this work proposes the application of stabilizers at the user equipment to mitigate device orientation effects. Additionally, to support user mobility, we present a framework to optimally design receivers employing avalanche photodiode (APD) arrays, thereby providing a broad receiver field-of-view (FoV) while still upholding a wide bandwidth. Experimental measurements are conducted to assess the statistics of the random orientation angles of the user device across five practical movement types, both with and without stabilizers. Several analytical models are developed to precisely approximate the PDFs of the orientations in different scenarios, enabling performance evaluation of stabilizer-assisted OWC in the presence of misalignment. In addition, the trade-off between FoV, bandwidth, and signal-to-noise ratio (SNR) in the APD array-based receivers is analyzed. Based on this analysis, a receiver design algorithm is proposed, aimed at determining the optimal receiver configurations to maximize the achievable data rate given a desired FoV. Our simulation results, based on an indoor uplink high-speed OWC scenario, illustrate the effectiveness of the proposed system in mitigating the effects of misalignment, thereby decreasing the outage probability and enhancing the achievable data rate.
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稳定器辅助下的激光室内移动无线通信
基于激光的光纤通信(OWC)可以为未来的室内移动无线网络提供多gb /s的数据速率。然而,由于激光束的方向性,室内激光OWC的性能受到用户设备随机方向引起的不对准的影响。为了应对这一挑战,本研究提出在用户设备上应用稳定器来减轻设备方向效应。此外,为了支持用户的移动性,我们提出了一个框架来优化设计采用雪崩光电二极管(APD)阵列的接收器,从而提供宽的接收器视场(FoV),同时仍然保持宽带宽。实验测量是为了评估用户设备在五种实际运动类型中随机方向角的统计数据,包括有稳定器和没有稳定器。开发了几个分析模型来精确地近似不同情况下的pdf方向,从而可以在存在不对准的情况下评估稳定器辅助OWC的性能。此外,分析了基于APD阵列的接收机在视场、带宽和信噪比之间的权衡。在此基础上,提出了一种接收机设计算法,旨在确定接收机的最佳配置,以在给定的理想视场下实现最大的可实现数据速率。我们基于室内上行高速OWC场景的仿真结果表明,所提出的系统在减轻不对准影响方面的有效性,从而降低了中断概率并提高了可实现的数据速率。
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来源期刊
CiteScore
13.70
自引率
3.80%
发文量
94
审稿时长
10 weeks
期刊介绍: The IEEE Open Journal of the Communications Society (OJ-COMS) is an open access, all-electronic journal that publishes original high-quality manuscripts on advances in the state of the art of telecommunications systems and networks. The papers in IEEE OJ-COMS are included in Scopus. Submissions reporting new theoretical findings (including novel methods, concepts, and studies) and practical contributions (including experiments and development of prototypes) are welcome. Additionally, survey and tutorial articles are considered. The IEEE OJCOMS received its debut impact factor of 7.9 according to the Journal Citation Reports (JCR) 2023. The IEEE Open Journal of the Communications Society covers science, technology, applications and standards for information organization, collection and transfer using electronic, optical and wireless channels and networks. Some specific areas covered include: Systems and network architecture, control and management Protocols, software, and middleware Quality of service, reliability, and security Modulation, detection, coding, and signaling Switching and routing Mobile and portable communications Terminals and other end-user devices Networks for content distribution and distributed computing Communications-based distributed resources control.
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