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Channel modeling of light signals propagating through a battlefield environment: analysis of channel spatial, angular, and temporal dispersion

机译:在战场环境中传播的光信号的通道建模:通道空间,角度和时间色散的分析

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摘要

Free-space optical communication (FSOC) is used to transmit a modulated beam of light through theatmosphere for broadband applications. Fundamental limitations of FSOC arise from the environment through which light propagates. We address transmitted light signal dispersion (spatial, angular, and temporal dispersion) in FSOC that operates in the battlefield environment. Light signals (photons) transmitted through the battlefield environment will interact with particles of man-made smoke such as fog oil, along the propagation path. Photon-particle interaction causes dispersion of light signals, which has significant effects on signal attenuation and pulse spread. We show that physical properties of battlefield particles play important roles in determining dispersion of received light signals. The correlation between spatial and angular dispersion is investigated as well, which has significant effects on receiver design issues. Moreover, our research indicates that temporal dispersion (delay spread) and the received power strongly depend on the receiver aperture size, field of view (FOV), and the position of the receiver relative to the optical axis of the transmitter. The results describe only specific scenarios for given types of battlefield particles. Generalization of the results requires additional work. Based on properties of the correlation, a sensitive receiver with a small FOV is needed that can find the line-of-sight photons and work with them.
机译:自由空间光通信(FSOC)用于将调制的光束通过大气传输,以用于宽带应用。 FSOC的基本局限性来自光传播的环境。我们解决在战场环境中运行的FSOC中透射光信号的色散(空间,角度和时间色散)的问题。通过战场环境传输的光信号(光子)将沿着传播路径与人造烟雾(例如雾油)的粒子相互作用。光子与粒子的相互作用会引起光信号的色散,从而对信号衰减和脉冲扩展产生重大影响。我们表明,战场粒子的物理性质在确定接收到的光信号的色散中起重要作用。还研究了空间色散和角度色散之间的相关性,这对接收器设计问题具有重大影响。此外,我们的研究表明,时间色散(延迟扩展)和接收功率在很大程度上取决于接收器孔径,视场(FOV)以及接收器相对于发射器光轴的位置。结果仅描述了给定类型的战场粒子的特定场景。结果的泛化需要其他工作。根据相关性的性质,需要一个具有较小FOV的灵敏接收器,该接收器可以找到视线光子并对其进行处理。

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