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Adaptive mobile optical wireless systems employing a beam clustering method, diversity detection, and relay nodes

机译:采用波束聚类方法,分集检测和中继节点的自适应移动光无线系统

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In this paper, a novel beam power adaptation method is proposed, studied and shown to be a desirable means for improving the performance of an optical wireless (OW) system that operates under the constraints of background noise, multipath dispersion, and mobility. We propose and evaluate a new OW configuration that employs an adaptive beam clustering method (ABCM) in conjunction with diversity detection. Our goal is to reduce the effect of transmitter/receiver mobility and the associated impacts in terms of a weak received optical power and reduction in bandwidth. Previous work has shown that multiple spot diffusing techniques suffer from these two fundamental limitations associated with mobility. Our new ABCM can help overcome the impairments introduced by mobility, introduce gain in the received optical power, and increase bandwidth even at large transmitter and receiver separations. Our results indicate that, at the least successful locations, the ABCM system can reduce the signal delay spread by nearly a factor of twenty and enhance the SNR by almost 15 dB over a line strip multibeam system (LSMS). We also incorporate the concept of relaying into the Adaptive line strip multibeam system and prove that this technique can lead to considerable performance improvements.
机译:在本文中,提出,研究并显示了一种新颖的波束功率自适应方法,该方法是提高在背景噪声,多径色散和移动性约束下工作的光无线(OW)系统性能的理想手段。我们提出并评估了一种新的OW配置,该配置采用了自适应波束聚类方法(ABCM)结合分集检测。我们的目标是就弱接收光功率和减小带宽而言,减少发射机/接收机移动性的影响以及相关的影响。先前的工作表明,多种光斑扩散技术受到与迁移率相关的这两个基本限制的困扰。我们的新型ABCM可以帮助克服移动性带来的损害,即使在发射器和接收器间隔较大的情况下,也可以增加接收光功率的增益并增加带宽。我们的结果表明,在最不成功的位置,ABCM系统可以比线带多波束系统(LSMS)减少近20倍的信号延迟扩展,并提高SNR约15 dB。我们还将中继的概念并入自适应线带多光束系统中,并证明该技术可以带来可观的性能改进。

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