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Impacts of Ionospheric Irregularities on L-Band Geosynchronous Synthetic Aperture Radar

机译:电离层不规则性对L波段地球同步合成孔径雷达的影响

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摘要

An L-band geosynchronous synthetic aperture radar (GEO SAR) system has to be confronted by an intractable issue of the decorrelations imposed by ionospheric irregularities. On the one hand, the phase and amplitude scintillations will bring about the decorrelation within the synthetic aperture and result in azimuth-imaging degradation. On the other hand, the imposed scintillation history is spatially decorrelated across the ultra-large GEO SAR scene. In this article, a signal model of the GEO SAR acquisitionis established with the two-way ionospheric transfer function (ITF) modulation to incorporate these two types of decorrelations. This model meanwhile takes the anisotropic and flowing irregularities into account. By using this model, the L-band GEO SAR azimuth-imaging is evaluated in terms of five indexes, whose performances are dependent on nine ionospheric parameters. Furthermore, the spatial correlation of the phase and intensity scintillation histories is investigated for the L-band GEO SAR scene, both in simulation and statistics. The statistical result implies a sized scene, in which the phase scintillation history tends to be consistent. Finally, the interferometric performance is investigated between the pure and contaminated GEO SAR images. The simulation result shows that the degradation of the interferometric coherence results from the in-aperture decorrelation.
机译:L波段地质同步合成孔径雷达(Geo SAR)系统必须面对电离层违规施加的去掩固性的难以处理问题。一方面,相位和幅度闪烁将带来合成孔径内的去相关性并导致方位形成像降解。另一方面,施加的闪烁历史在超大地Geo SAR场上在空间上切断。在本文中,用双向电离层传递函数(ITF)调制建立了Geo SAR获取的信号模型,以包含这两种类型的去相关性。该模型同时考虑到各向异性和流动的违规行为。通过使用该模型,根据五个指标评估L波段Geo SAR方位形成像,其性能取决于九个电离层参数。此外,在模拟和统计中,研究了相位和强度闪烁历史的空间相关性,用于L波段Geo SAR场景。统计结果意味着大小的场景,其中相闪烁历史趋于一致。最后,在纯粹和受污染的地质SAR图像之间研究了干涉性能。仿真结果表明,来自孔径去相关性的干涉式相干性的降低。

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