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Adaptive 2.5 Gbit/s Optical Wireless Systems Employing a Two Dimensional Beam Clustering Method and Imaging Diversity Receivers

机译:采用二维光束聚类方法和成像分集接收器的自适应2.5 Gbit / s光学无线系统

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In this paper, we propose and evaluate a novel optical wireless (OW) configuration that employs a two dimensional adaptive beam clustering method (2DABCM) in conjunction with imaging diversity receivers. Our goal is to reduce the effect of intersymbol interference and to improve the signal-to-noise ratio (SNR) when the system operates under the constraints of background noise (BN) and multipath dispersion. In the conventional diffuse system, an SNR improvement of 22 dB and an increase in the bandwidth from 38 MHz to 200 MHz approximately, is achieved when an imaging receiver is implemented. Furthermore, the new methods introduced (transmit power adaptation, beam clustering, and diversity imaging) increase the bandwidth from 38 MHz to 5.56 GHz. Previous optical wireless systems operated typically at 30 to 100 Mbit/s and here we report a system that operates at 2.5 Gbit/s. Our results indicate that the new 2.5 Gbit/s 2DABCM transmitter with a new imaging diversity receiver (with select best (SB)) demonstrates an SNR improvement of 16 dB over the non-imaging CDS system operating at 30 Mbit/s. The results also show that the proposed system (imaging 2DABCM at a bit rate of 2.5 Gbit/s) produces an SNR improvement of 10 dB when maximum ratio combining (MRC) replaces SB.
机译:在本文中,我们提出并评估了一种新的光学无线(OW)配置,其与成像分集接收器结合使用二维自适应波束聚类方法(2DABCM)。我们的目标是降低符号间干扰的影响,并在系统在背景噪声(BN)和多径色散的约束下运行时提高信噪比(SNR)。在传统的漫射系统中,当实施成像接收器时,实现了22dB的SNR改善和大约38MHz到200MHz的带宽增加。此外,引入的新方法(传输功率适应,光束聚类和分集成像)将带宽从38 MHz增加到5.56 GHz。以前的光学无线系统通常在30到100 Mbit / s中操作,我们在此报告一个在2.5 gbit / s处运行的系统。我们的结果表明,新的2.5 Gbit / s 2dabcm发射器具有新的成像分集接收器(具有选择最佳(SB)),演示了在30 Mbit / s的非成像CDS系统上的16 dB的SNR改进。结果还表明,当最大比率组合(MRC)取代SB时,所提出的系统(成像2dabcm以2.5 gbit / s的比特/ s的比特/ s的比特/ s)产生了10 dB的SNR改善。

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