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Optimization of Beam Width, Bit Error Rate and Availability for Free-Space Optical Links

机译:优化光束宽度,钻头误差率和可用空间光学链路的可用性

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The design of free-space optical (FSO) communication links based on beam width optimization is investigated. Bit error rate (BER) and link availability for on-off keying (OOK) and pulse position modulations (PPM) are analyzed. For a required BER and fixed transmitted optical power, optimizing the transmitted beam width maximizes link availability. The combined effects of atmospheric turbulence and pointing errors are considered. Different weather conditions are considered and three scenarios are investigated: adaptive, semi-adaptive and fixed beam width over weather conditions. The performance-complexity tradeoff is analyzed in the design. Beam width adaptation for subsets of weather conditions as a sub-optimum solution shows a remarkable performance improvement over the fixed beam scenario. In all cases, significant performance in link availability is shown when employing PPM over widely used OOK signaling at a cost of more bandwidth.
机译:研究了基于光束宽度优化的自由空间光学(FSO)通信链路的设计。分析误码率(BER)和开关键控(OOK)和脉冲位置调制(PPM)的链路可用性。对于所需的BER和固定的传输光功率,优化传输的光束宽度最大化链路可用性。考虑了大气湍流和指向误差的组合效果。考虑了不同的天气条件,并调查了三种情况:天气条件的自适应,半自适应和固定光束宽度。在设计中分析了性能复杂性权衡。作为次优化解决方案的天气条件子集的光束宽度适配,显示了对固定光束场景的显着性能改进。在所有情况下,当使用PPM以更大的带宽以超过广泛使用的高酷信令时,显示了链接可用性的显着性能。

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