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Crosstalk-Mitigated AWGR-Based Two-Dimensional IR Beam-Steered Indoor Optical Wireless Communication System With a High Spatial Resolution

机译:基于串扰缓解的基于AWGR的二维高空间分辨率红外束缚室内光无线通信系统

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摘要

In this paper, a crosstalk-mitigated transmission scheme in arrayed waveguide grating router (AWGR) based two dimensional infrared beam-steered optical wireless communication (OWC) system is proposed for indoor applications. By creating polarization orthogonality between the odd and even AWGR channels, high crosstalk tolerance between spectrally overlapping AWGR channels is realized experimentally. Because two signals with orthogonal polarization states will not beat with each other in a photodiode. The optical crosstalk on the orthogonal polarization state will not generate a heat note upon detection and thus crosstalk in the electrical domain can be largely reduced. Reduced crosstalk leads to a reduction in the required spectral guard band and/or an improved tolerance to spectral overlap, which allows higher spectral efficiency. Moreover, the port number of an AWGR can be increased by simply shortening the spatial gap between adjacent output waveguides on a chip. The higher port number can support the high spatial resolution of the steered OWC system. This technique can also tolerate the wavelength misalignment between AWGRs and lasers, which relaxes the design of low crosstalk AWGRs and high wavelength stable lasers. A 20 Gbit/s data rate, four-level pulse amplitude modulation OWC transmission has been experimentally demonstrated over 1.2-m free-space link. The experimental results show that the proposed scheme can maintain stable, low crosstalk impact with an apparent improvement of the responsivity.
机译:本文针对室内应用,提出了一种基于阵列波导光栅路由器(AWGR)的二维红外束控光无线通信(OWC)系统中的串扰缓解传输方案。通过在奇数和偶数AWGR通道之间创建极化正交性,可以通过实验实现光谱重叠的AWGR通道之间的高串扰容限。因为具有正交偏振态的两个信号在光电二极管中不会相互跳动。正交偏振态的光学串扰在检测时不会产生热感,因此可以大大减少电域中的串扰。减少的串扰导致所需频谱保护带的减少和/或对频谱重叠的提高的容忍度,从而允许更高的频谱效率。此外,可以通过简单地缩短芯片上相邻输出波导之间的空间间隙来增加AWGR的端口号。较高的端口号可以支持导向式OWC系统的高空间分辨率。该技术还可以容忍AWGR和激光器之间的波长失准,从而放宽了低串扰AWGR和高波长稳定激光器的设计。在1.2米的自由空间链路上已通过实验证明了20 Gbit / s的数据速率,四级脉冲幅度调制OWC传输。实验结果表明,该方案可以保持稳定的低串扰影响,并且响应速度明显提高。

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