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Quantitative analysis of Faraday rotation impacts on image formation of spaceborne VHF/UHF-SAR

机译:法拉第旋转对星载VHF / UHF-SAR成像影响的定量分析

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The performance of spaceborne synthetic aperture radar (SAR) at lower frequencies, such as VHF/UHF bands, is affected by ionosphere effects, especially Faraday rotation (FR). A quantitative analysis of Faraday rotation impacts on spaceborne VHF/UHF-SAR image formation is presented in this paper. The error models of FR resulting from calm Total Electron Content (TEC) and fluctuant TEC, for Linearly Polarized (LP) and Dual Circularly Polarized (DCP) mode, are established. The simulation results indicate that for LP mode Faraday rotation effect on azimuth signal can be neglected, while the range signal is seriously affected, bur for DCP mode, the error in both range and azimuth signals is negligible. Therefore, DCP mode is a better choice to decrease the effect on image focusing caused by FR effect.
机译:电离层效应,尤其是法拉第旋转(FR),会影响星载合成孔径雷达(SAR)在较低频率(例如VHF / UHF频带)下的性能。本文对法拉第旋转对星载VHF / UHF-SAR成像的影响进行了定量分析。建立了线性极化(LP)和双圆极化(DCP)模式下由平稳的总电子含量(TEC)和波动的TEC引起的FR误差模型。仿真结果表明,对于LP模式,法拉第旋转对方位信号的影响可以忽略不计,而距离信号受到严重影响,对于DCP模式,bur的范围和方位信号的误差都可以忽略不计。因此,DCP模式是减少由FR效应引起的对图像聚焦的影响的更好选择。

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