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Infrared Small Target Detection Method with Trajectory Correction Fuze Based on Infrared Image Sensor

机译:基于红外图像传感器的轨迹校正引信的红外小目标检测方法

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摘要

Due to the complexity of background and diversity of small targets, robust detection of infrared small targets for the trajectory correction fuze has become a challenge. To solve this problem, different from the traditional method, a state-of-the-art detection method based on density-distance space is proposed to apply to the trajectory correction fuze. First, parameters of the infrared image sensor on the fuze are calculated to set the boundary limitations for the target detection method. Second, the density-distance space method is proposed to detect the candidate targets. Finally, the adaptive pixel growth (APG) algorithm is used to suppress the clutter so as to detect the real targets. Three experiments, including equivalent detection, simulation and hardware-in-loop, were implemented to verify the effectiveness of this method. Results illustrated that the infrared image sensor on the fuze has a stable field of view under rotation of the projectile, and could clearly observe the infrared small target. The proposed method has superior anti-noise, different size target detection, multi-target detection and various clutter suppression capability. Compared with six novel algorithms, our algorithm shows a perfect detection performance and acceptable time consumption.
机译:由于小目标的背景和多样性的复杂性,轨迹更正引信的红外小目标的强大检测已成为挑战。为了解决这个问题,不同于传统方法,提出了一种基于密度距离空间的最先进的检测方法来应用于轨迹校正引信。首先,计算引导上的红外图像传感器的参数以设置目标检测方法的边界限制。其次,提出了密度距离空间方法以检测候选目标。最后,使用自适应像素生长(APG)算法来抑制杂波,以便检测真实目标。实施了三个实验,包括等效检测,仿真和硬件环路,以验证该方法的有效性。结果表明,引信上的红外图像传感器在弹丸的旋转下具有稳定的视野,可以清楚地观察红外小目标。所提出的方法具有卓越的抗噪声,不同尺寸的目标检测,多目标检测和各种杂波抑制能力。与六种新算法相比,我们的算法显示了完美的检测性能和可接受的时间消耗。

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