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Lasercomm system development for high-bandwidth terrestrial communications

机译:LASERCOM系统开发高带宽陆地通信

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In recent years, various terrestrial free-space optical (FSO) communications systems have been demonstrated to achieve high-bandwidth communications between mobile platforms. The terminal architectures fall into three general categories: (1) single aperture systems with tip/tilt control, (2) multi-aperture system with tip/tilt control, and (3) single aperture systems with tip/tilt control and higher order adaptive optics correction. Terrestrial modem approaches generally use direct detection receivers because they provide high bandwidth capability (0.1-10 Gbps) without the complexity of coherent detection. Modems are often augmented with a mix of forward error correction (FEC), interleaving, and/or retransmission for improved data transport. This paper will present a terminal and modem architecture for a low-SWAP FSO communications system that enables robust, high-bandwidth communications under highly scintillated links as found in terrestrial applications such as air-to-air, air-to-surface, and surface-to-surface links.
机译:近年来,已经证明了各种陆地自由空间光学(FSO)通信系统来实现移动平台之间的高带宽通信。终端架构落入三个一般类别:(1)具有尖端/倾斜控制的单孔系统,(2)具有尖端/倾斜控制的多孔系统,以及(3)具有尖端/倾斜控制的单孔系统和高阶自适应光学校正。地面调制解调器方法通常使用直接检测接收机,因为它们提供高带宽能力(0.1-10 Gbps)而无需相干检测的复杂性。调制解调器通常使用前向纠错(FEC),交错和/或重传的混合来增强用于改进的数据传输。本文将介绍一个终端和调制解调器架构,用于低交换FSO通信系统,可在陆地应用中发现的高闪烁链路下实现强大,高带宽通信,如空到空气,空气到表面和表面-to-surface链接。

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