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Low Complexity Post-Distorter for Visible Light Communications

机译:用于可见光通信的低复杂度后失真器

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In this letter, a visible light communication (VLC) link affected by the light emitting diode (LED) nonlinearity and dispersion due to the IEEE 802.15 PAN channel impulse response is considered. To mitigate severe intersymbol interference and LED nonlinearity, computationally complex classical post-distortion techniques fall short in terms of applicability to massively connected 5G deployments (as in a VLC attocell) due to increased demand on resources and intractability of implementation. To address these issues, this letter proposes a low-complexity reproducing kernel Hilbert space-based post-distorter using a better sparsification technique equipped with an adaptive kernel width optimized by a minimum symbol error rate (MSER) criterion. Use of the proposed MSER metric for kernel width optimization reduces the computational complexity at the receiver, without compromising on the bit error rate. An upper bound on step-size to guarantee convergence of the proposed post-distorter is analytically derived, and the steady-state mean square error is also analyzed theoretically and validated by simulations. Furthermore, analytical upper bounds for bit error rate and steady-state dictionary size are also derived.
机译:在这封信中,考虑了由于IEEE 802.15 PAN通道脉冲响应而受到发光二极管(LED)非线性和色散影响的可见光通信(VLC)链路。为了减轻严重的符号间干扰和LED非线性,由于对资源的需求增加以及实现的难点性,计算复杂的经典后失真技术在适用于大规模连接的5G部署(如在VLC attocell中)的应用方面不足。为了解决这些问题,这封信提出了一种低复杂度的,基于希尔伯特空基的基于核的后失真器,该失真器使用一种更好的稀疏化技术,该技术具有通过最小符号错误率(MSER)标准进行了优化的自适应内核宽度。将建议的MSER度量用于内核宽度优化可降低接收器的计算复杂度,而不会影响误码率。解析得出了保证拟议后失真器收敛的步长上限,并从理论上分析了稳态均方误差,并通过仿真进行了验证。此外,还导出了误码率和稳态字典大小的解析上限。

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