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首页> 外文期刊>Geoscience and Remote Sensing, IEEE Transactions on >Chirp-Scaling Algorithm for Bistatic SAR Data in the Constant-Offset Configuration
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Chirp-Scaling Algorithm for Bistatic SAR Data in the Constant-Offset Configuration

机译:恒定偏移配置下双基地SAR数据的线性调频缩放算法

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This paper discusses the processing method for bistatic SAR data in the constant-offset configuration. The constant-offset configuration is also known as the azimuth stationary or invariant configuration where transmitter and receiver follow each other, moving on identical velocity vector. In this paper, the proposed processing method for bistatic SAR data is based on Loffeld's bistatic formula that consists of two terms, i.e., the quasi-monostatic (QM) term and bistatic-deformation (BD) term. Our basic idea is to linearize the aforementioned two terms and then incorporate the BD term into the QM term to obtain an analogous monostatic spectrum. Based on the new spectrum, any efficient 2-D frequency or range-Doppler domain processor can easily be employed to process the bistatic data, where the Doppler phase parameters of the processor need to be adjusted. In this paper, we concentrate on the application of chirp-scaling-algorithm (CSA) processor. In addition, a bistatic-motion error model is developed where the position deviations of the two platforms are simplified as the bistatic slant-range displacement in the zero Doppler plane. Using this model, the monostatic motion-compensation technique is applied and integrated into CSA to compensate the trajectory deviations of transmitter and receiver. Finally, real and simulated data are used to validate the proposed processing method.
机译:本文讨论了在恒定偏移配置下双基地SAR数据的处理方法。恒定偏移配置也称为方位静止或不变配置,其中发送器和接收器彼此跟随,以相同的速度矢量移动。本文提出的双基地SAR数据处理方法基于Loffeld的双基地公式,该公式由准单基地(QM)项和双基地变形(BD)项组成。我们的基本思想是线性化上述两个项,然后将BD项合并到QM项中,以获得类似的单静态频谱。基于新频谱,可以轻松地使用任何有效的二维频率或范围多普勒域处理器来处理双基地数据,其中需要调整处理器的多普勒相位参数。在本文中,我们专注于线性调频缩放算法(CSA)处理器的应用。另外,建立了双基地运动误差模型,其中将两个平台的位置偏差简化为零多普勒平面上的双基地倾斜范围位移。使用该模型,单静态运动补偿技术被应用并集成到CSA中,以补偿发射器和接收器的轨迹偏差。最后,真实的和模拟的数据被用来验证所提出的处理方法。

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