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Measurements and simulation of ionospheric scattering on VHF and UHF radar signals:coherence times, coherence bandwidths and S4

机译:VHF和UHF雷达信号电离层散射的测量和模拟:相干时间,相干带宽和S4

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摘要

Irregularities in the electron density of the ionosphere cause phase and amplitude scintillation on transionospheric VHF and UHF radar signals, particularly at lower radio frequencies. The design of radar and other transionospheric systems requires good estimates of the coherence bandwidth (CB) and coherence time (CT) imposed by a turbulent ionosphere. CB and CT measurements of the equatorial ionosphere, made using the Advanced Research Project Agency Long-range Tracking and Identification Radar 158 MHz and 422 MHz phase coherent radar located on Kwajalein (9.4°N, 167.5°E), are presented as a function of the two-way S4 scintillation index at 422 MHz The log linear regression equations are CT = 1.46 exp(−1.40 S4) s at 158 MHz and CT = 2.31 exp(−1.10 S4) s at 422 MHz. CT also varies by a factor of 2–3 depending on the effective scan velocity through the ionosphere, veff. The CT and CB, as a function of S4, have been compared to those from the Trans-Ionospheric Radio Propagation Simulator, a phase screen model. A close agreement is achieved using appropriate values of veff and midrange values of phase spectral index and outer scale. Validation of CB is, however, limited by insufficient radar chirp bandwidth. Formulating the model in terms of the two-way S4 index (an easily measurable parameter) rather than more fundamental phase screen parameters (which are difficult to obtain), improves its utility for the systems engineer. The frequency dependencies (spectral indices) of S4 and of CT are also presented to allow interpolation and some extrapolation of these results to other frequencies.
机译:电离层电子密度的不规则性会导致跨电离层VHF和UHF雷达信号发生相位和幅度闪烁,特别是在较低的射频下。雷达和其他跨电离层系统的设计需要对湍流电离层施加的相干带宽(CB)和相干时间(CT)进行良好的估算。赤道电离层的CB和CT测量是使用位于夸贾林(9.4°N,167.5°E)上的158 MHz和422 MHz相干相干雷达进行的。 422 MHz时的双向S4闪烁指数对数线性回归方程在158 MHz时CT = 1.46 exp(-1.40 S4)s,在422 MHz时CT = 2.31 exp(-1.10 S4)s。根据通过电离层的有效扫描速度veff,CT也会变化2-3倍。作为S4的函数,CT和CB已与相屏蔽模型跨电离层无线电传播模拟器的CT和CB进行了比较。使用veff的适当值以及相谱指数和外部标度的中间范围值可以达成密切的共识。但是,CB的验证受到雷达chi带宽不足的限制。用双向S4指数(一个容易测量的参数)而不是更基本的相位屏蔽参数(很难获得)来表示模型,可以提高系统工程师的实用性。还介绍了S4和CT的频率依赖性(频谱指数),以允许将这些结果内插和外推到其他频率。

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