双天线宽带孔径合成系统中辐射图像的最佳恢复算法

V. Pavlikov
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引用次数: 2

摘要

辐射测量装置和系统广泛应用于射电天文学、射电气象、遥感、雷达定位和医学等领域。在这样的系统中,物理对象的辐射的功率特性受到估计。对于恢复辐射图像(作为角坐标或空间坐标函数的功率特性),使用两种主要方法。第一种是基于扫描或移动辐射计的使用。二是基于孔径合成的使用系统。尽管孔径合成系统的硬件实现难度较大,但其在图像生成问题上的优势是显而易见的。这样的系统允许在角(空间)坐标上达到高分辨率。在射电天文学领域深入研究了几十年之后,他们最近扩展了对更广泛问题的解决方案(例如,SMOS项目)。但分析表明,该系统中空时信号处理的综合优化算法问题需要深入研究,主要考虑天线阵的几何结构选择问题。
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Algorithm of optimum restoration of the radiometric image in two-antenna broadband system of aperture synthesis
Radiometric devices and systems widely apply at the solution of problems of radio astronomy, radio meteorology, remote sensing, radar-location and medicine. In such systems power characteristics of radiation of physical objects are subject to estimation. For restoration of radiometric images (power characteristics as functions of angular or spatial coordinates) use two main approaches. The first is based on use of scanning or mobile radiometers. The second is based on use systems of aperture synthesis. In spite of the fact that hardware realization of aperture synthesis systems is more difficult, advantages of their use in problems of images formation are obvious. Such systems allow to reach high resolution on angular (spatial) coordinates. Decades of developing in a depths of radio astronomy they recently extended on the solution of significantly wider class of problems (for example, the SMOS project). However the analysis showed that, paying essential attention to a choice of geometry of antenna arrays, questions of synthesis optimum algorithms of space-time signal processing in such systems need detailed research.
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