arXiv:2608.02964cs.CV2026-08

用分割技术精准校正文物热成像的发射率,提升异常检测准确性。

Material-Segmented Per-Pixel Emissivity Correction for Thermographic Anomaly Detection in Cultural Heritage Digital Twins

  • 基于RGB图像分割材料,为每个像素匹配对应发射率表。
  • 在真实数据上将温度误差从1.97K降至0.91K,显著提升精度。
  • 适合文物数字孪生中需高精度热成像的场景,尤其低发射率区域。

文化遗产表面的定量长波热成像受限于反普朗克温度反演中全局恒定发射率假设;在异质表面上,发射率在单个视场内变化,产生模拟和掩盖次表面异常的表观温度伪影。本文提出一种无需训练的流程:利用SAM 3.1开放词汇分割技术对共位、共校准的RGB通道进行分割,将分割区域映射到基于原始测量文献构建的材料-发射率表,并将该发射率场用于原始辐射数据的逐像素反普朗克求解。由于缺乏包含原始辐射数据、温度参考和共位RGB相机的公开数据集,我们在基于物理的合成基准和四个真实数据集上进行评估。在基准测试中,当色板覆盖低发射率例外情况时,修正后均方误差从1.97 K降至0.91 K(20 K对比度下);使用准确发射率表时,在所有布局中均优于最佳全局常数拟合;但在遗产真实发射率分布下表现不佳。我们贡献了量化的工作区间图,并发现一个关键结论:风化户外遗产的发射率多聚集在传统默认值附近,因此该修正对典型表面影响小,主要集中于真正的低发射率例外。我们还分析了主要失效模式——开放词汇分割依赖外观而非材料,以及发射率定义异常被抑制的禁忌情形。

原文摘要 · Abstract (English)

Quantitative longwave thermography of heritage surfaces is limited by the global-constant emissivity assumption in inverse-Planck temperature retrieval; on heterogeneous surfaces emissivity varies within one field of view, producing apparent-temperature artifacts that mimic and mask subsurface anomalies. We present a training-free pipeline that derives per-pixel emissivity by applying SAM 3.1 open-vocabulary segmentation to a colocated, co-calibrated RGB channel, mapping segments to a material-keyed LWIR emissivity table compiled from primary measurement literature, and propagating the field into a per-pixel inverse-Planck solve on raw radiometric data. Lacking any public dataset with raw radiometry, a temperature reference, and a colocated RGB camera, we evaluate on a physics-based synthetic benchmark and four real datasets. On the benchmark, under a palette spanning the low-emissivity exceptions, the correction cuts mean absolute error from 1.97 K to 0.91 K at 20 K contrast and, with an accurate table, beats the best fitted global constant on every layout; on a heritage-realistic emissivity distribution it does not. We contribute a quantified operating-regime map, and a measurement-backed finding that tempers the heritage claim: weathered outdoor heritage emissivities cluster near the conventional default, so the correction is small on typical surfaces and concentrated on genuine low-emissivity exceptions. We characterize the dominant failure mode, in which open-vocabulary segmentation matches appearance rather than material, and the contraindicated regime in which emissivity-defined anomalies are suppressed.

热成像文物修复发射率校正数字孪生

Thank you to arXiv for use of its open access interoperability. PaperDance 不是 arXiv 官方产品;中文卡片由大模型生成,请以原文为准。