Advances in non-linear apodization for irregularly shaped and sparse two dimensional apertures

H. C. Stankwitz, S. Taylor
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引用次数: 2

Abstract

Presented in this paper are selected new methods and applications of non-linear apodization for irregularly-shaped and sparse coherent apertures and arrays. The benefits include improved impulse response performance, i.e. reduced peak sidelobes and integrated sidelobe power, along with improved mainlobe resolution, compared to classic windowing techniques. Non-linear apodization (NLA) techniques can also serve as powerful engines for effective superresolution and bandwidth extrapolation of coherent data for filling sparse apertures. The sparse aperture filling property of superresolution algorithms for radar data forms the basis for a new concept which is introduced here: synthetic multiple aperture radar technology (SMART). Increased swath and/or reduced antenna size are some of the benefits postulated for SMART applied to synthetic aperture radar (SAR) systems. The benefits of these new methods and applications for nonlinear apodization are then demonstrated for two specific applications: 1) side lobe control for Y-type synthetic aperture radiometers, such as the European soil moisture and ocean salinity (SMOS) system [12] and JPL's proposed GeoSTAR [13] concept; and, 2) filling of sparse synthetic aperture radar data by exploiting the bandwidth extrapolation properties of non-linear apodization based superresolution techniques. The methods that have been developed and demonstrated here have potential application to a wide range of passive and e microwave remote sensing and radar systems.
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不规则形状和稀疏的二维孔径的非线性apoization研究进展
本文介绍了异形稀疏相干孔径和阵列非线性解析的新方法及其应用。与传统的加窗技术相比,其优点包括提高脉冲响应性能,即降低峰值旁瓣和集成旁瓣功率,以及提高主瓣分辨率。非线性apodiization (NLA)技术也可以作为有效的超分辨率和带宽外推相干数据填充稀疏孔径的强大引擎。雷达数据的超分辨率算法的稀疏孔径填充特性构成了一个新概念的基础,本文介绍了合成多孔径雷达技术(SMART)。增大的幅线和/或减小的天线尺寸是SMART应用于合成孔径雷达(SAR)系统的一些好处。这些新方法和应用在非线性离化方面的好处随后在两个具体应用中得到了证明:1)y型合成孔径辐射计的旁瓣控制,如欧洲土壤湿度和海洋盐度(SMOS)系统[12]和JPL提出的GeoSTAR[13]概念;2)利用基于非线性apoization的超分辨率技术的带宽外推特性对稀疏合成孔径雷达数据进行填充。在此开发和演示的方法在广泛的无源和微波遥感和雷达系统中具有潜在的应用前景。
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