Capacity bounds for dimmable visible light communications using PIN photodiodes with input-dependent Gaussian noise

Jin-yuan Wang, Jun-Bo Wang, Ming Chen, Jiangzhou Wang
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引用次数: 12

Abstract

In this paper, we focus on a dimmable visible light communication (VLC) system using PIN photodiodes. In such a system, the main distortion is caused by additive Gaussian noise, however, with a noise variance depending on the current signal strength. Under the non-negativity, peak power and dimmable average power constraints, the lower and upper bounds on the channel capacity are derived, respectively. Specifically, the derivation of the lower bound is based on the fact that the entropy of the output is always larger than the entropy of the input, while the derivation of the upper bound relies on the dual expression of the channel capacity and the notion of capacity-achieving input distribution that escape to infinity. Numerical results show that the gap between the lower and upper bounds is very small in the VLC application zone.
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使用具有输入依赖高斯噪声的PIN光电二极管的可调光可见光通信的容量界限
本文主要研究了一种基于PIN码光电二极管的可调光可见光通信(VLC)系统。在这样的系统中,主要的失真是由加性高斯噪声引起的,然而,噪声的方差取决于当前的信号强度。在非负性、峰值功率和可调平均功率约束下,分别推导了信道容量的下界和上界。具体来说,下界的推导是基于输出的熵总是大于输入的熵这一事实,而上界的推导依赖于信道容量的对偶表达式和逸出到无穷远的容量实现输入分布的概念。数值结果表明,在VLC应用区内,下界和上界之间的间隙很小。
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