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A Novel Hyperspectral Anomaly Detection Algorithm for Real-Time Applications With Push-Broom Sensors

机译:一种新型高光谱异常检测算法,具有推扫扫帚传感器的实时应用

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摘要

Most practical hyperspectral anomaly detection (AD) applications require real-time processing for detecting complex targets from their background. This is especially critical in defense and surveillance domains, but also in many other scenarios, in which a rapid response is mandatory to save human lives. Dealing with such a high dimensionality of data requires the conception of new algorithms to ease the demanding computing performance. Push-broom scanning represents the mainstream in hyperspectral imaging, introducing added complexity to the equation as there is no information of future pixels. In this paper, a novel technique named line-by-line anomaly detection (LbL-AD) algorithm, is presented as a way of performing real-time processing with a push-broom sensor. The sensor has been mounted on an unmanned aerial vehicle, and the acquired images, together with others from the scientific literature and synthetic ones, have been used to extensively validate the proposed algorithm in terms of accuracy, based on different metrics and processing time. Comparisons with state-of-the-art algorithms were accomplished in order to evaluate the goodness of the LbL-AD, giving as a result an outstanding performance.
机译:大多数实际的高光谱异常检测(AD)应用需要实时处理来检测从背景中检测复杂的目标。这在防御和监视域中尤其重要,而且在许多其他场景中,这种情况是拯救人类生活的快速反应。处理如此高度的数据需要新算法的概念来缓解苛刻的计算性能。推送扫描扫描代表高光谱成像中的主流,引入了等式的增加的复杂性,因为没有未来像素的信息。在本文中,将一种名为逐行异常检测(LBL-AD)算法的新技术作为执行具有推扫帚传感器的实时处理的方式。传感器已安装在无人驾驶飞行器上,并且所获取的图像与来自科学文献和合成文件的其他人一起使用,以便根据不同的指标和处理时间在准确性方面广泛地验证所提出的算法。完成了最先进的算法的比较,以便评估LBL广告的良好,因此提供了出色的性能。

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