Optimized laser beam parameters for communications in space environments in the presence of pointing errors

Chandana Tatineni, Javier Perez-Ramirez, D. Borah, D. Voelz
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Abstract

We investigate the behavior of spatially partially coherent beams (PCBs) in the presence of pointing errors in the space communication environment. Closed form expressions for the optimal coherence length for minimizing outage probability and maximizing average signal-to-noise ratio (SNR) are derived. In the case of outage probablity, we observe that the optimal coherence parameter does not depend on the pointing error statistics. For average SNR results, PCBs can improve performance when large fixed beam offsets are present. We also provide BER performance analysis results for a convolutionally coded system and demonstrate significant performance improvement using PCBs with optimized parameters.
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针对存在指向误差的空间环境下的通信,优化了激光光束参数
我们研究了空间部分相干波束在空间通信环境中存在指向误差时的行为。导出了最小化中断概率和最大化平均信噪比(SNR)的最佳相干长度的封闭表达式。在存在中断概率的情况下,我们观察到最优相干参数不依赖于指向误差统计量。对于平均信噪比结果,当存在较大的固定波束偏移时,pcb可以提高性能。我们还提供了卷积编码系统的误码率性能分析结果,并展示了使用优化参数的pcb的显著性能改进。
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