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首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >Enhanced performance of odd order square geometrical shaping QAM constellation in underwater and free space VLC system
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Enhanced performance of odd order square geometrical shaping QAM constellation in underwater and free space VLC system

机译:奇数秩序平方几何整形QAM星座在水下和自由空间VLC系统中的增强性能

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摘要

Visible light communication(VLC) employing light-emitting diodes(LED) as light source has become a promising field for underwater wireless communication. However, due to the complex underwater environment and scattering, absorption and diffusion effects during optical transmission in water, the underwater VLC system will suffer from poor SNR and highly nonlinear distortion. In this paper, we proposed and experimentally demonstrated a novel Square Geometrical Shaping(SGS) odd order QAM discrete multitone(DMT) and carrierless amplitude phase(CAP) modulation based VLC system. Unlike to traditional odd order QAM constellation aiming at the minimum Euclidean distance but without Gray coding at edge constellation points, the new SGS constellation boasts acceptable Euclidean distance and thoroughly Gray coding for every constellation point. Therefore, the system performance can be effectively enhanced by SGS constellation for low SNR and high nonlinearity cases. Both numerical and experimental results verify that SGS 32QAM and 128QAM constellations can outperform traditional QAM constellation by mitigating nonlinearity in a blue LED based underwater and free space VLC system using DMT modulation or CAP modulation. By employing SGS 128QAM, we successfully demonstrate 2.534Gb/s 1.2meter underwater transmission at the driving voltage of 1.1V(pp).
机译:可见光通信(VLC)采用发光二极管(LED)作为光源已经成为一种有希望的领域用于水下无线通信。然而,由于复杂的水下环境和散射,吸收和在水中的光传输过程中扩散的效果,水下VLC系统将遭受SNR差和高度非线性失真。在本文中,我们提议和实验证明一种新的方几何成形(SGS)奇数阶QAM离散多音(DMT)和无载波振幅相位(CAP)调制基于VLC系统。不同于传统的奇数阶QAM星座瞄准最小欧几里得距离,但没有在灰色边缘星座点编码,新的SGS星座拥有可以接受的欧氏距离,彻底格雷编码每星座点。因此,系统的性能可以有效地通过SGS星座用于低SNR和高非线性的情况下提高。两个数值模拟和实验结果确认SGS 32QAM和128QAM星座可以通过基于水下并使用DMT调制或CAP调制自由空间VLC系统中的蓝色LED减轻非线性优于传统的QAM星座。通过采用SGS 128QAM,我们成功地证明,在1.1V(PP)的驱动电压2.534Gb / s的1.2米水下传输。

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