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Radar detection of high-energy cosmic rays in non-Gaussian background using a time-frequency technique

机译:使用时频技术对非高斯背景下的高能宇宙射线进行雷达探测

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Cosmic rays are the highest-energy observable particles in the universe. Their study opens a new frontier for scientists to better understand the nature of the universe. This paper reports our study of a bistatic radar approach that is being developed for remote sensing of cosmic-ray induced air showers. In this context, we propose a robust detection technique based on time-frequency domain for the received radar echoes. These echoes are modeled as linear-downward chirp signals, characterized by very short sweep periods, low energies, and corrupted by non-stationary and non-Gaussian background noise. In addition, the related parameters of the received echoes are variable within some expected ranges, determined by the physical parameters of the air showers. In this paper, we explore the performance of the proposed detection method through an extensive theoretical analysis. We derive formulae for probability of the correct detection, as well as false-alarm rate. Numerical simulations and experimental results that corroborate our analysis are also presented. (C) 2016 Elsevier Inc. All rights reserved.
机译:宇宙射线是宇宙中能量最高的可观测粒子。他们的研究为科学家更好地了解宇宙的本质开辟了新的领域。本文报告了我们对双基地雷达方法的研究,该方法正在开发中,用于遥感宇宙射线诱发的空气喷淋。在这种情况下,我们针对接收到的雷达回波提出了一种基于时频域的鲁棒检测技术。这些回波被建模为线性向下线性调频信号,其特征在于扫频周期短,能量低,并且受到非平稳和非高斯背景噪声的破坏。另外,接收回波的相关参数在某些期望范围内是可变的,该期望范围由空气喷淋的物理参数确定。在本文中,我们通过广泛的理论分析来探索所提出的检测方法的性能。我们得出正确检测的概率以及误报率的公式。数值模拟和实验结果也证实了我们的分析。 (C)2016 Elsevier Inc.保留所有权利。

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