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首页> 外文期刊>IEEE Transactions on Antennas and Propagation >Evidence for the presence of turbulent attenuation on low-elevationangle Earth-space paths. 2. Frequency scaling of scintillation intensityon a 10° path
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Evidence for the presence of turbulent attenuation on low-elevationangle Earth-space paths. 2. Frequency scaling of scintillation intensityon a 10° path

机译:低高度角地球-空间路径上存在湍流衰减的证据。 2.在10°路径上闪烁强度的频率缩放

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For pt.1 see ibid., vol.45, no.1, p.73-84 (1997). This paper presents the results of and conclusions drawn from two experimental studies of low-elevation, slant-path scintillation. Part I related to 11.2-GHz measurements at an elevation angle of 3.3°. Part II describes 14- and 11-GHz observations made on a (nominal) 10° path over a four year period. The resulting time-series data have enabled frequency scaling to be investigated in some depth. Scintillation occurring during periods unassociated with fading is found to be well modeled in its frequency scaling behavior by classical theories of clear air turbulence (CAT). This is not the case, however, for scintillation that occurs during, just before, or just after rain-induced fading. A rapidly fluctuating attenuation mechanism, not separable from CAT-induced scintillation on the basis of its spectrum alone, is thought to be responsible for this anomalous frequency-scaling result
机译:关于第1点,请参见同上,第45卷,第1期,第73-84页(1997)。本文介绍了两项低海拔倾斜路径闪烁实验研究的结果和结论。第一部分涉及在3.3°仰角下的11.2 GHz测量。第二部分描述了在四年内在(标称)10°路径上进行的14 GHz和11 GHz观测。所得的时间序列数据已使频率定标得以深入研究。发现通过经典的晴空湍流(CAT)理论可以很好地模拟与衰落无关的周期内发生的闪烁。但是,在降雨引起的衰落期间,之前或之后发生闪烁的情况并非如此。快速波动的衰减机制(仅凭其频谱无法与CAT引起的闪烁分离)是造成这种异常频率缩放结果的原因

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