首页> 外文会议>Conference on SAR Image Analysis, Modeling, and Techniques V, Sep 23-24, 2002, Agia Pelagia, Crete, Greece >COMPARISON OF CHIRP SCALING AND WAVENUMBER DOMAIN ALGORITHMS FOR AIRBORNE LOW FREQUENCY SAR DATA PROCESSING
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COMPARISON OF CHIRP SCALING AND WAVENUMBER DOMAIN ALGORITHMS FOR AIRBORNE LOW FREQUENCY SAR DATA PROCESSING

机译:机载低频SAR数据处理的Chirp标度和波数域算法的比较

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摘要

In recent years a new class of Synthetic Aperture Radar (SAR) systems, using low frequencies, have emerged. The combination of low frequencies with high bandwidths allows a variety of new applications. Several new fields arise in forestry, biomass estimation and in archaeological and geological exploration. The P-band SAR technology benefits from technological advances in antenna design, low noise amplifiers, band pass filters, digital receiver technology, as well as new processing algorithms. For all the new applications of an airborne P-band SAR system, the high-resolution imaging is an important parameter, but it cannot be easily achieved with conventional processing techniques. In this paper, the performance and limitations of the Extended Chirp Scaling (ECS) algorithm and wavenumber domain Omega-K processing algorithm are analysed and discussed. Additionally, modifications of both algorithms are proposed, which optimise the respective algorithm for processing low frequency, wide-beam and wide-band SAR data. Despite of the inherent limitations of the above mentioned processing algorithms, a deterministic phase error, called "digital phase error", due to digital signal processing characteristics is formulated and its effect to the processed SAR data is analytically described. The analysis is carried out, using simulated low frequency airborne SAR data.
机译:近年来,出现了一种使用低频的新型合成孔径雷达(SAR)系统。低频与高带宽的结合允许各种新应用。林业,生物量估计以及考古和地质勘探领域出现了几个新领域。 P波段SAR技术得益于天线设计,低噪声放大器,带通滤波器,数字接收器技术以及新的处理算法方面的技术进步。对于机载P波段SAR系统的所有新应用,高分辨率成像是一个重要参数,但是使用常规处理技术无法轻松实现。本文分析并讨论了扩展线性调频标度(ECS)算法和波数域Omega-K处理算法的性能和局限性。另外,提出了两种算法的修改,它们优化了用于处理低频,宽波束和宽带SAR数据的相应算法。尽管上述处理算法具有固有的局限性,但由于数字信号处理特性,确定了确定性的相位误差,称为“数字相位误差”,并分析性地描述了其对处理后的SAR数据的影响。使用模拟的低频机载SAR数据进行分析。

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