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High-Speed Target Identification System Based on the Plume’s Spectral Distribution

机译:基于羽流光谱分布的高速目标识别系统

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摘要

In order to recognize the target of high speed quickly and accurately, an identification system was designed based on analysis of the distribution characteristics of the plume spectrum. In the system, the target was aligned with visible light tracking module, and the spectral analysis of the target’s plume radiation was achieved by interference module. The distinguishing factor recognition algorithm was designed on basis of ratio of multifeature band peaks and valley mean values. Effective recognition of the high speed moving target could be achieved after partition of the active region and the influence of target motion on spectral acquisition was analyzed. In the experiment the small rocket combustion was used as the target. The spectral detection experiment was conducted at different speeds 2.0 km away from the detection system. Experimental results showed that spectral distribution had significant spectral offset in the same sampling period for the target with different speeds, but the spectral distribution was basically consistent. Through calculation of the inclusion relationship between distinguishing factor and distinction interval of the peak value and the valley value at the corresponding wave-bands, effective identification of target could be achieved.
机译:为了快速和准确地识别高速的目标,一个识别系统是基于对羽流谱的分布特性分析而设计的。在该系统中,目标是用可见光跟踪模块对准,并通过干扰模块实现目标的羽流辐射的光谱分析。所述区别因子识别算法被设计上的多特征带的峰和谷的平均值比的基础。所述有源区的分区和光谱采集目标运动的影响之后可实现的高速移动目标的有效识别进行了分析。在实验中,小型火箭燃烧作为目标。该光谱检测实验,以不同的速度远离检测系统2.0公里进行。实验结果表明,光谱分布有显著光谱在相同的采样周期为以不同的速度的目标偏移量,但光谱分布基本一致。通过区别因子和峰值的区别时间间隔和在对应的波带中的谷值之间的包含关系的计算,目标的有效的识别可以实现的。

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