arXiv:2510.02700eess.IVcs.CV2025-10中稿 · and presented as a…被引 4

无人机采集可见近红外高光谱数据,用于地雷与未爆弹药检测研究

A UAV-Based VNIR Hyperspectral Benchmark Dataset for Landmine and UXO Detection

  • 用无人机搭载高光谱传感器采集地雷与未爆弹药数据
  • 共采集143个目标,覆盖埋深不同配置,波段范围398-1002 nm
  • 数据包含校正后的反射率数据,适合多源数据融合研究

本文介绍了一个基于无人机平台的可见近红外(VNIR)高光谱影像基准数据集,用于地雷与未爆弹药(UXO)检测研究。数据在受控测试场采集,包含143个真实仿真地雷与未爆弹药目标,涵盖表面、部分埋藏和完全埋藏三种状态。采用安装于多传感器无人机上的Headwall Nano-Hyperspec传感器,在约20.6米高度飞行,获取270个连续波段,覆盖398-1002纳米范围。经过辐射定标、正射校正和拼接处理,使用两点经验线法(ELM)进行反射率反演,参考光谱由SVC光谱辐射计获取。对六种参考物的交叉验证显示,400-900纳米范围内均方根误差低于1.0,光谱角距离在1至6度之间,表明光谱保真度高。数据集随原始辐射率立方体、控制点/航点数据及参考光谱一同发布,支持可复现研究。该工作填补了公开可用的无人机高光谱地雷检测数据空白,并可与此前同场地的无人机电磁感应(EMI)数据结合,形成多传感器基准。

原文摘要 · Abstract (English)

This paper introduces a novel benchmark dataset of Visible and Near-Infrared (VNIR) hyperspectral imagery acquired via an unmanned aerial vehicle (UAV) platform for landmine and unexploded ordnance (UXO) detection research. The dataset was collected over a controlled test field seeded with 143 realistic surrogate landmine and UXO targets, including surface, partially buried, and fully buried configurations. Data acquisition was performed using a Headwall Nano-Hyperspec sensor mounted on a multi-sensor drone platform, flown at an altitude of approximately 20.6 m, capturing 270 contiguous spectral bands spanning 398-1002 nm. Radiometric calibration, orthorectification, and mosaicking were performed followed by reflectance retrieval using a two-point Empirical Line Method (ELM), with reference spectra acquired using an SVC spectroradiometer. Cross-validation against six reference objects yielded RMSE values below 1.0 and SAM values between 1 and 6 degrees in the 400-900 nm range, demonstrating high spectral fidelity. The dataset is released alongside raw radiance cubes, GCP/AeroPoint data, and reference spectra to support reproducible research. This contribution fills a critical gap in open-access UAV-based hyperspectral data for landmine detection and offers a multi-sensor benchmark when combined with previously published drone-based electromagnetic induction (EMI) data from the same test field.

高光谱无人机地雷检测遥感数据

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