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Sensor Fusion for Airborne Landmine Detection

机译:用于机载地雷检测的传感器融合

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Sensor fusion has become a vital research area for mine detection because of the countermine community's conclusion that no single sensor is capable of detecting mines at the necessary detection and false alarm rates over a wide variety of operating conditions. The U. S. Army Night Vision and Electronic Sensors Directorate (NVESD) evaluates sensors and algorithms for use in a multi-sensor multi-platform airborne detection modality. A large dataset of hyperspectral and radar imagery exists from the four major data collections performed at U. S. Army temperate and arid testing facilities in Autumn 2002, Spring 2003, Summer 2004, and Summer 2005. There are a number of algorithm developers working on single-sensor algorithms in order to optimize feature and classifier selection for that sensor type. However, a given sensor/algorithm system has an absolute limitation based on the physical phenomena that system is capable of sensing. Therefore, we perform decision-level fusion of the outputs from single-channel algorithms and we choose to combine systems whose information is complementary across operating conditions. That way, the final fused system will be robust to a variety of conditions, which is a critical property of a countermine detection system. In this paper, we present the analysis of fusion algorithms on data from a sensor suite consisting of high frequency radar imagery combined with hyperspectral long-wave infrared sensor imagery. The main type of fusion being considered is Choquet integral fusion. We evaluate performance achieved using the Choquet integral method for sensor fusion versus Boolean and soft "and," "or," mean, or majority voting.
机译:传感器融合已成为防雷探测的重要研究领域,因为反雷社区的结论是,没有一个传感器能够在各种运行条件下以必要的探测率和误报率来探测地雷。美国陆军夜视和电子传感器局(NVESD)评估用于多传感器多平台机载检测方式的传感器和算法。在2002年秋季,2003年春季,2004年夏季和2005年夏季,在美国陆军温带和干旱测试设施进行的四次主要数据收集中,存在着大量的高光谱和雷达图像数据。有许多算法开发人员正在研究单传感器算法,以针对该传感器类型优化特征和分类器选择。但是,给定的传感器/算法系统基于系统能够感知的物理现象具有绝对限制。因此,我们对单通道算法的输出执行决策级融合,并选择合并信息在整个工作条件下都是互补的系统。这样,最终的熔融系统将对各种条件都具有鲁棒性,这是防雷探测系统的关键特性。在本文中,我们对融合传感器的数据进行了分析,该传感器包括高频雷达图像和高光谱长波红外传感器图像。考虑的融合的主要类型是Choquet积分融合。我们评估使用Choquet积分方法进行传感器融合与布尔和软“与”,“或”,均值或多数表决的性能。

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