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Least Minimum Symbol Error Rate Based Post-Distortion for VLC Using Random Fourier Features

机译:基于VLC的最小最小符号错误率使用随机傅里叶功能

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摘要

Visible light communications (VLC) has emerged as a viable supplement for high speed next-generation communication systems. However, performance of a VLC link is limited by the nonlinear characteristics of light emitting diodes (LEDs), ambient light, and inter-symbol interference (ISI). In this letter, the paradigm of least-squares based post-distortion over reproducing kernel Hilbert spaces (RKHS) is considered for a visible light communication (VLC) link. The performance-limiting impairments (viz. LED nonlinearity, and ISI), are mitigated by random Fourier features (RFF) based least minimum symbol error-rate post-distorter in RKHS, which facilitates post-distortion under finite memory-budget constrained scenarios. Performance of the proposed algorithm is tested over IEEE 802.15r1 PAN VLC channels, and the proposed algorithm is observed to converge significantly faster, whilst supporting higher data rates as compared to the existing RKHS based post-distorters.
机译:可见光通信(VLC)已成为高速下一代通信系统的可行补充。然而,VLC链路的性能受到发光二极管(LED),环境光和符号间干扰(ISI)的非线性特性的限制。在这封信中,考虑了基于再现内核Hilbert空格(RKHS)的基于后失真的最小二乘值的范例被认为是可见光通信(VLC)链路。性能限制损伤(viz。LED非线性和ISI)由随机傅里叶特征(RFF)基于RKHS中的最小最小符号误差速率(RFF)来减轻,这有助于在有限内存预算受限场景下失真。通过IEEE 802.15R1 PAN VLC信道测试所提出的算法的性能,并且观察到所提出的算法以显着更快地收敛,而与基于现有的基于扭转的RKHS相比,支持更高的数据速率。

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