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非零视轴指向误差对MIMO自由空间光通信系统遍历容量的影响。

Impact of nonzero boresight pointing error on ergodic capacity of MIMO FSO communication systems.

作者信息

Boluda-Ruiz Rubén, García-Zambrana Antonio, Castillo-Vázquez Beatriz, Castillo-Vázquez Carmen

出版信息

Opt Express. 2016 Feb 22;24(4):3513-34. doi: 10.1364/OE.24.003513.

DOI:10.1364/OE.24.003513
PMID:26907009
Abstract

A thorough investigation of the impact of nonzero boresight pointing errors on the ergodic capacity of multiple-input/multiple-output (MIMO) free-space optical (FSO) systems with equal gain combining (EGC) reception under different turbulence models, which are modeled as statistically independent, but not necessarily identically distributed (i.n.i.d.) is addressed in this paper. Novel closed-form asymptotic expressions at high signal-to-noise ratio (SNR) for the ergodic capacity of MIMO FSO systems are derived when different geometric arrangements of the receive apertures at the receiver are considered in order to reduce the effect of nonzero inherent boresight displacement, which is inevitably present when more than one receive aperture is considered. As a result, the asymptotic ergodic capacity of MIMO FSO systems is evaluated over log-normal (LN), gamma-gamma (GG) and exponentiated Weibull (EW) atmospheric turbulence in order to study different turbulence conditions, different sizes of receive apertures as well as different aperture averaging conditions. It is concluded that the use of single-input/multiple-output (SIMO) and MIMO techniques can significantly increase the ergodic capacity respect to the direct path link when the inherent boresight displacement takes small values, i.e. when the spacing among receive apertures is not too big. The effect of nonzero additional boresight errors, which is due to the thermal expansion of the building, is evaluated in multiple-input/single-output (MISO) and single-input/single-output (SISO) FSO systems. Simulation results are further included to confirm the analytical results.

摘要

本文研究了在不同湍流模型下,具有等增益合并(EGC)接收的多输入/多输出(MIMO)自由空间光(FSO)系统中,非零视轴指向误差对遍历容量的影响。这些湍流模型被建模为统计独立但不一定同分布(i.n.i.d.)。当考虑接收器处接收孔径的不同几何排列以减小非零固有视轴位移的影响时,推导出了高信噪比(SNR)下MIMO FSO系统遍历容量的新型闭式渐近表达式。当考虑多个接收孔径时,这种固有视轴位移不可避免地会出现。结果,在对数正态(LN)、伽马-伽马(GG)和指数威布尔(EW)大气湍流条件下,评估了MIMO FSO系统的渐近遍历容量,以研究不同的湍流条件、不同尺寸的接收孔径以及不同的孔径平均条件。得出的结论是,当固有视轴位移取较小值时,即当接收孔径之间的间距不太大时,使用单输入/多输出(SIMO)和MIMO技术相对于直接路径链路可以显著提高遍历容量。在多输入/单输出(MISO)和单输入/单输出(SISO)FSO系统中,评估了由于建筑物热膨胀导致的非零附加视轴误差的影响。还包括仿真结果以证实分析结果。

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