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10 Gb/s Indoor Optical Wireless Systems Employing Beam Delay, Power, and Angle Adaptation Methods With Imaging Detection

机译:利用光束延迟,功率和角度自适应方法以及成像检测功能的10 Gb / s室内光学无线系统

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In this paper, we propose a mobile optical wireless system that employs beam delay adaptation, and makes use of our previously introduced beam angle and power adaptation multi-beam spot diffusing configuration in conjunction with an imaging receiver. Our ultimate goal is to improve the bandwidth, reduce the effect of intersymbol-interference, and increase the signal-to-noise ratio (SNR) when the transmitter operates at a higher data rate under the impact of multipath dispersion, background noise, and mobility. A significant reduction in the delay spread can be achieved compared to a conventional diffuse system (CDS) when an imaging receiver replaces a nonimaging receiver at the room's corner, where the delay spread is reduced from 2.4 ns to about 0.35 ns. Our proposed system, beam delay, angle, and power adaptation in a line strip multibeam spot diffusing configuration (BDAPA- LSMS), offers a reduction in delay spread by a factor of more than 10 compared with only the beam angle and power adaptation LSMS. An increase in channel bandwidth from 36 MHz (CDS) to about 9.8 GHz can be achieved when our methods of beam delay, angle, and power adaptation coupled with an imaging receiver are employed. These improvements enhance our system and enable it to operate at a higher data rate of 10 Gb/s. At a bit rate of 30 Mb/s, our proposed BDAPA-LSMS achieves about 50 dB SNR gain over conventional diffuse systems that employ a nonimaging receiver (CDS). Moreover, our simulation results show that the proposed BDAPA-LSMS at a bit rate of 10 Gb/s achieves about 32.3 dB SNR at the worst communication path under the presence of background noise and mobility while achieving a bit error rate below 10-9.
机译:在本文中,我们提出了一种移动光学无线系统,该系统采用波束延迟自适应,并结合成像接收器使用我们先前介绍的波束角度和功率自适应多波束点扩散配置。我们的最终目标是在多径色散,背景噪声和移动性的影响下,当发射机以更高的数据速率工作时,提高带宽,减少符号间干扰的影响并提高信噪比(SNR)。 。当成像接收器代替房间角落处的非成像接收器时,与传统的漫射系统(CDS)相比,可以显着减少延迟扩展,其中延迟扩展从2.4 ns减少到大约0.35 ns。我们提出的系统,线延迟多光束点扩散配置(BDAPA-LSMS)中的光束延迟,角度和功率自适应,与仅光束角度和功率自适应LSMS相比,可将延迟扩展减少10倍以上。当采用我们的波束延迟,角度和功率自适应方法以及成像接收器时,可以将信道带宽从36 MHz(CDS)增加到大约9.8 GHz。这些改进增强了我们的系统,并使它能够以10 Gb / s的更高数据速率运行。我们提出的BDAPA-LSMS以30 Mb / s的比特率,与采用非成像接收器(CDS)的常规漫射系统相比,可获得约50 dB的SNR增益。此外,我们的仿真结果表明,在存在背景噪声和移动性的情况下,建议的BDAPA-LSMS在10 Gb / s的比特率下在最差的通信路径下可实现约32.3 dB SNR,同时实现低于10 的误码率-9

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