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脉冲星辐射、信号建模与被动逆合成孔径雷达成像

Pulsar Emissions, Signal Modeling and Passive ISAR Imaging.

作者信息

Lazarov Andon

机构信息

Department of Information Technologies, Naval Academy, 9026 Varna, Bulgaria.

出版信息

Sensors (Basel). 2019 Jul 30;19(15):3344. doi: 10.3390/s19153344.

Abstract

The present work addresses pulsar Crab Nebula emissions from point of view of their modeling and applications for asteroid detection and imaging by applying inverse synthetic aperture radar (ISAR) principles. A huge value of the plasma's effective temperature is a reason for pulsar emission coherency, a property of great practical meaning for a space objects navigation, localization and imaging. Based on measurement data obtained by Goldstone-Apple Valley and Arecibo radio telescopes, an original time frequency grid mathematical model of pulsar emissions is created. Passive ISAR scenario, a space object's geometry and a model of pulsar signals reflected from the space object's surface are also described and graphically illustrated. A new range compression approach for ISAR imaging is suggested and demonstrated. In order to reduce the level of additive white Gaussian noise in signals and enlarge the signal to noise ratio in the final image, coherent summation of multiple complex images is applied. To prove the correctness of the geometry, signal models and theoretical analysis, results of numerical experiments are provided.

摘要

本工作从脉冲星蟹状星云发射的建模以及通过应用逆合成孔径雷达(ISAR)原理进行小行星探测和成像的应用角度出发进行研究。等离子体有效温度的巨大值是脉冲星发射相干性的一个原因,这一特性对于空间物体的导航、定位和成像具有重大实际意义。基于戈德斯通-苹果谷和阿雷西博射电望远镜获得的测量数据,创建了脉冲星发射的原始时频网格数学模型。还描述并以图形方式说明了无源ISAR场景、空间物体的几何形状以及从空间物体表面反射的脉冲星信号模型。提出并演示了一种用于ISAR成像的新距离压缩方法。为了降低信号中加性高斯白噪声的水平并提高最终图像的信噪比,应用了多个复图像的相干求和。为了证明几何形状、信号模型和理论分析的正确性,给出了数值实验结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f29c/6695695/b766e62a1c10/sensors-19-03344-g001.jpg

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