论文标题

微振动模式基于微置换剂的重合成像重建

Micro-Vibration Modes Reconstruction Based on Micro-Doppler Coincidence Imaging

论文作者

Liu, Shuang, Deng, Chenjin, Wang, Chaoran, Bo, Zunwang, Han, Shensheng, Lin, Zihuai

论文摘要

微振动是一种无处不在的自然现象,可以看作是物体上的特征,这些振动总是具有微小的幅度,幅度远小于传感系统的波长,因此这些运动信息只能反映在Echo相位项目中。通常,常规雷达系统可以通过时间频率分析检测这些微振动,但是这些振动特性只能通过时频频谱来反映,这些微振动的空间分布不能精确地重建。 Ghost Imaging(GI)是一种新型成像方法,也称为巧合成像,起源于量子和光场,可以使用计算方法重建未知图像。为了重建微振动的空间分布,本文提出了一种基于重合成像系统的新方法。考虑到两类:离散和连续目标,首先创建了目标微振动的详细模型。我们使用一阶场相关特征根据复杂的目标模型和本工作中的时频分析获得客观的不同微振动分布。

Micro-vibration, a ubiquitous nature phenomenon, can be seen as a characteristic feature on the objects, these vibrations always have tiny amplitudes which are much less than the wavelengths of the sensing systems, thus these motions information can only be reflected in the phase item of echo. Normally the conventional radar system can detect these micro vibrations through the time frequency analyzing, but these vibration characteristics can only be reflected by time-frequency spectrum, the spatial distribution of these micro vibrations can not be reconstructed precisely. Ghost imaging (GI), a novel imaging method also known as Coincidence Imaging that originated in the quantum and optical fields, can reconstruct unknown images using computational methods. To reconstruct the spatial distribution of micro vibrations, this paper proposes a new method based on a coincidence imaging system. A detailed model of target micro-vibration is created first, taking into account two categories: discrete and continuous targets. We use the first-order field correlation feature to obtain objective different micro vibration distribution based on the complex target models and time-frequency analysis in this work.

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