论文标题
IRS辅助FSO系统的渠道建模
Channel Modeling for IRS-Assisted FSO Systems
论文作者
论文摘要
在本文中,我们开发了一个分析通道模型,用于智能反射表面(IRS)辅助空间光学(FSO)系统。与IRS辅助的射频系统不同,通常认为飞机波在IRS上,在FSO系统中,入射波是一个高斯梁,在IRS跨IRS具有不均匀的功率分布。考虑到这一属性,我们基于Huygens-Fresnel原理开发了IRS辅助FSO系统的分析端到端通道模型。我们的分析模型揭示了IRS在端到端通道上的大小,位置,方向和相移配置的影响。此外,我们表明,基于远场近似值下的几何光学元件获得的结果仅适用于特定范围的IRS接收器镜头距离距离,具体取决于IRS的大小,入射光束宽度和波长。仿真结果验证了从IRS反射的FSO梁提出的分析结果的准确性,并比较了所提出的分析通道模型获得的位错误率性能与远场近似值下的几何光学元件获得的BIT错误率性能。
In this paper, we develop an analytical channel model for intelligent reflecting surface (IRS)-assisted free space optical (FSO) systems. Unlike IRS-assisted radio frequency systems, where it is typically assumed that a plane wave is incident on the IRS, in FSO systems, the incident wave is a Gaussian beam with non-uniform power distribution across the IRS. Taking this property into account, we develop an analytical end-to-end channel model for IRS-assisted FSO systems based on the Huygens-Fresnel principle. Our analytical model reveals the impact of the size, position, orientation, and phase-shift configuration of the IRS on the end-to-end channel. Furthermore, we show that results obtained based on geometric optics under the far-field approximation are only valid for a specific range of IRS-receiver lens distances depending on the IRS size, incident beam width, and wavelength. Simulation results validate the accuracy of the proposed analytical results for the FSO beam reflected from the IRS and compare the bit error rate performance obtained for the proposed analytical channel model with that obtained for geometric optics under the far-field approximation.