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Particle stream channel modeling and estimation for non-line of sight optical wireless communication

机译:非视线光学无线通信的粒子流信道建模和估计

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A statistical channel model for the non-line of sight (NLOS) scattering optical wireless communication link, is fundamental for developing further receiver-side digital signal processing techniques. Assume an optical source emits energy units, which produces transmitted particles experiencing independent random delays. This is termed as particle stream channel (PSC) in this work, characterizing stochastic inter-symbol interference based on a delay profile. For signal detection, we derive the first- and second-order moment statistics for the received signals. We propose channel estimation schemes to estimate the channel parameters, based on the least-squares and correlation criteria. Numerical results show that the channel estimation work well for the particle stream channel.
机译:非视线(NLOS)散射光无线通信链路的统计信道模型对于开发进一步的接收器侧数字信号处理技术至关重要。假设光源发射能量单元,该能量单元产生经历独立随机延迟的透射粒子。在这项工作中,这被称为粒子流通道(PSC),它基于延迟曲线来表征随机的符号间干扰。对于信号检测,我们导出接收信号的一阶和二阶矩统计量。我们提出了基于最小二乘和相关标准的信道估计方案来估计信道参数。数值结果表明,对于粒子流通道,通道估计效果很好。

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