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首页> 外文期刊>Optik: Zeitschrift fur Licht- und Elektronenoptik: = Journal for Light-and Electronoptic >Performance analysis of a laser satellite-communication system with a three-layer altitude spectrum over weak-to-strong turbulence
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Performance analysis of a laser satellite-communication system with a three-layer altitude spectrum over weak-to-strong turbulence

机译:具有三层高度频谱的激光卫星通信系统的性能分析弱到强湍流

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AbstractIn this article, the downlink bit-error-rate (BER) performance of scintillation models for a laser satellite communication system influenced by weak-to-strong turbulence on a slant path is investigated, which take optical wavelength, zenith angle, terrestrial turbulence strength and modulation schemes into account. To describe the properties of atmospheric turbulence which vary with the altitude between a satellite station and a ground station, a three-layer altitude spectrum is used. By adopting the extended Rytov theory valid in weak-to-strong turbulence, scintillation models of an unbounded plane wave for downlink path and spherical wave for uplink path are derived, respectively. The optical fading channel influenced by weak-to-strong turbulence is modeled by Gamma–Gamma distribution. The numeric results show that when the system is under strong terrestrial turbulence conditions or at large zenith angles, disparities in BER performance among different kinds of level of pulse position modulation (PPM) schemes are quite small. Under real circumstances, a longer optical wavelength and a suitable zenith angle range can be selected to reduce turbulence effects for the satellite communication system through weak-to-strong turbulence.]]>
机译:<![CDATA [ 抽象 在本文中,所述下行链路误码率(BER),用于通过影响的激光卫星通信系统的闪烁模式的性能弱TO-一个倾斜路径上强湍流进行了研究,其取光波长,天顶角,地面湍流强度和调制方案考虑。为了描述,其与卫星站和地面站之间的高度变化的大气湍流的性质,使用了三层高度频谱。通过采用所述扩展Rytov理论在弱到强湍流,无界平面波用于下行路径和上行链路路径的球面波的闪烁模型导出,分别有效的。由弱到强湍流影响光学衰落信道是通过γ-Gamma分布建模。数值结果表明,当系统处于强湍流地面条件下或在大天顶角,在不同种类的脉冲位置调制的电平之间的BER性能差距(PPM)方案是相当小的。下真实的情况下,较长的光波长和合适的天顶角范围可以选择通过弱到强湍流减小用于卫星通信系统湍流效应 ]]>

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