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Measurements and simulation of ionospheric scattering on VHF and UHF radar signals:channel scattering function

机译:VHF和UHF雷达信号电离层散射的测量和模拟:信道散射功能

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摘要

The design and operation of transionospheric VHF and UHF radars requires knowledge of amplitude and phase scintillation due to ionospheric scattering. Phase coherence is of particular importance where long coherent integration periods and large bandwidths are required. A thin phase screen, parabolic equation based, Trans-Ionospheric Radio Propagation Simulator (TIRPS) is described. Modeled channel scattering functions (CSFs) are compared to experimental VHF and UHF data derived from the Advanced Research Projects Agency Long-range Tracking and Instrumentation Radar on Kwajalein Island (9.4°N, 166.8°E). TIRPS quantitatively reproduces the experimental results, including the quasi-parabolic profile observed in the measured CSFs under strong turbulence conditions. Variations in the simulated CSF with ionospheric phase screen parameters are also presented. Under conditions of high integrated strength of turbulence (CkL), a low phase spectral index (p = 1), indicating relatively dense small-scale irregularities, produces pronounced range spreading. Conversely, when the spectral index is high (p = 4), indicative of strong focusing/defocusing by large-scale irregularities, there is increased Doppler spreading and, when the outer scale of irregularities is large, a greater likelihood of asymmetry of the CSF about the zero Doppler axis.
机译:跨电离层VHF和UHF雷达的设计和操作需要了解由于电离层散射而引起的幅度和相位闪烁。在需要长相干积分周期和大带宽的情况下,相位相干特别重要。描述了一种基于薄相筛,抛物线方程的跨电离层无线电传播模拟器(TIRPS)。将模型化的信道散射函数(CSF)与来自夸贾林岛(9.4°N,166.8°E)的高级研究计划局远程跟踪和仪器雷达的实验VHF和UHF数据进行了比较。 TIRPS定量再现了实验结果,包括在强湍流条件下在测量的CSF中观察到的准抛物线轮廓。还介绍了电离层相位筛选参数随模拟CSF的变化。在湍流综合强度(CkL)高的条件下,低相位光谱指数(p = 1)表示相对密集的小尺度不规则现象,会产生明显的范围扩展。相反,当光谱指数高(p = 4)时,表明由大型不规则现象引起的强聚焦/散焦,多普勒扩展增加,而当不规则外部尺度较大时,CSF不对称的可能性更大关于零多普勒轴。

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