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Capacity Bounds for Wireless Optical Intensity Channels With Gaussian Noise

机译:具有高斯噪声的无线光强度信道的容量限制

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Lower and upper bounds on the capacity of wireless optical intensity pulse amplitude modulation channels under nonnegativity and average optical power constraints are derived. A lower bound is derived based on source entropy maximization over a family of discrete nonuniform distributions with equally spaced mass points. A closed form for the maxentropic discrete input distribution is provided. Compared to previously reported bounds, the derived lower bound is tight at both low and high signal-to-noise ratios (SNRs). In addition, a closed-form upper bound is derived based on signal space geometry via a sphere packing argument. The proposed bound is tight at low SNRs and incurs a small gap to the channel capacity at high SNRs. The derived bounds asymptotically describe the optical intensity channel capacity at low SNRs, where a majority of such links operate.
机译:得出非负性和平均光功率约束下无线光强度脉冲幅度调制信道容量的上限和下限。基于源熵最大化,在具有等距质量点的一系列离散非均匀分布族中得出下界。提供了最大熵离散输入分布的封闭形式。与先前报告的界限相比,导出的下界在低信噪比(SNR)和高信噪比(SNR)时都严格。另外,基于信号空间的几何形状,通过球体填充参数得出封闭形式的上限。所提出的边界在低SNR时很严格,并且在高SNR时会给信道容量带来很小的差距。导出的边界渐近描述了在大多数此类链路运行的低SNR情况下的光强度通道容量。

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