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Observed Frequency Scaling of Amplitude Scintillation at 20, 40, and 50 GHz

机译:观察到的20、40和50 GHz幅度闪烁的频率缩放

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This paper presents an analysis of instantaneous frequency scaling of scintillation using propagation data recorded during a three month period (May-July 1997) at Sparsholt U.K. from the ITALSAT satellite beacons at frequencies 18.7, 39.6, and 49.5 GHz. Variations in the height of turbulence within reasonable limits were found to have a negligible effect on the scaling ratios. Furthermore, the exponent in the power law dependence of scintillation intensity on signal frequency was found to be on average 27% smaller than the theoretical value of 7/12 and to exhibit a slight diurnal effect. It is shown that this behavior can be partly accounted for by receiver thermal noise contribution to the measured signal variance. Ascribing the minimum observed short-term variance in each beacon to thermal noise and excluding this contribution yielded a higher exponent, which was nevertheless 15% below the theoretical value.
机译:本文使用在三个月(1997年5月至7月)在英国Sparsholt从ITALSAT卫星信标以18.7、39.6和49.5 GHz频率记录的传播数据对闪烁的瞬时频率定标进行了分析。发现湍流高度在合理范围内的变化对缩放比例的影响可忽略不计。此外,发现闪烁强度与信号频率的幂律相关性指数平均比理论值7/12小27%,并表现出轻微的昼夜作用。结果表明,这种行为可以部分归因于接收器热噪声对测量信号方差的贡献。将每个信标中观察到的最小短期方差归因于热噪声,并排除此影响,将产生较高的指数,但仍比理论值低15%。

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