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Capacity-Optimized Pre-Equalizer Design for Visible Light Communication Systems

Capacity-Optimized Pre-Equalizer Design for Visible Light Communication Systems

来源:Arxiv_logoArxiv
英文摘要

Since commercial LEDs are primarily designed for illumination rather than data transmission, their modulation bandwidth is inherently limited to a few MHz. This becomes a major bottleneck in the implementation of visible light communication (VLC) systems necessiating the design of pre-equalizers. While state-of-the-art equalizer designs primarily focus on the data rate increasing through bandwidth expansion, they often overlook the accompanying degradation in signal-to-noise ratio (SNR). Achieving effective bandwidth extension without introducing excessive SNR penalties remains a significant challenge, since the channel capacity is a non-linear function of both parameters. In this paper, we present a fundamental analysis of how the parameters of the LED and pre-equalization circuits influence the channel capacity in intensity modulation and direct detection (IMDD)-based VLC systems. We derive a closed-form expression for channel capacity model that is an explicitly function of analog pre-equalizer circuit parameters. Building upon the derived capacity expression, we propose a systematic design methodology for analog pre-equalizers that effectively balances bandwidth and SNR, thereby maximizing the overall channel capacity across a wide range of channel attenuations. We present extensive numerical results to validate the effectiveness of the proposed design and demonstrate the improvements over conventional bandwidth-optimized pre-equalizer designs.

Runxin Zhang、Yulin Shao、Jian Xiong、Lu Lu、Murat Uysal

光电子技术通信

Runxin Zhang,Yulin Shao,Jian Xiong,Lu Lu,Murat Uysal.Capacity-Optimized Pre-Equalizer Design for Visible Light Communication Systems[EB/OL].(2025-05-26)[2025-07-23].https://arxiv.org/abs/2505.19709.点此复制

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