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Extremely Robust Remote-Target Detection Based on Carbon Dioxide-Double Spikes in Midwave Spectral Imaging

机译:基于中频光谱成像的二氧化碳双峰值的极其稳健的遥控探测

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摘要

Infrared ship-target detection for sea surveillance from the coast is very challenging because of strong background clutter, such as cloud and sea glint. Conventional approaches utilize either spatial or temporal information to reduce false positives. This paper proposes a completely different approach, called carbon dioxide-double spike (CO2-DS) detection in midwave spectral imaging. The proposed CO2-DS is based on the spectral feature where a hot CO2 emission band is broader than that which is absorbed by normal atmospheric CO2, which generates CO2-double spikes. A directional-mean subtraction filter (D-MSF) detects each CO2 spike, and final targets are detected by joint analysis of both types of detection. The most important property of CO2-DS detection is that it generates an extremely low number of false positive caused by background clutter. Only the hot CO2 spike of a ship plume can penetrate atmosphere, and furthermore, there are only ship CO2 plume signatures in the double spikes of different spectral bands. Experimental results using midwave Fourier transform infrared (FTIR) in a remote sea environment validate the extreme robustness of the proposed ship-target detection.
机译:由于强大的背景杂乱,如云和海云等强大的背景混乱,红外线船舶目标检测是非常具有挑战性的。传统方法利用空间或时间信息来减少误报。本文提出了一种完全不同的方法,称为中频光谱成像中的多氧​​化碳双尖峰(CO2-DS)检测。所提出的CO2-DS基于光谱特征,其中热的CO2发射带宽比正常大气二氧化碳吸收的光谱特征,所述电二氧化碳二氧化碳吸收,其产生CO2双峰值。定向 - 平均减法滤波器(D-MSF)检测每个CO2峰值,并且通过对两种类型的检测进行联合分析来检测最终目标。 CO2-DS检测最重要的属性是它产生了由背景杂波引起的极低数量的假阳性。只有船舶羽毛的热CO2穗才能穿透大气,而且,在不同光谱带的双峰值中只有船舶CO2羽毛签名。在远程海洋环境中使用Midwave Fourier变换红外(FTIR)的实验结果验证了所提出的船舶目标检测的极端稳健性。

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