伪装
多光谱图像
色度
材料科学
调制(音乐)
光学
普鲁士蓝
计算机科学
人工智能
计算机视觉
红外线的
遥感
光电子学
电极
仿生学
近红外光谱
像素
多光谱模式识别
人眼
模式识别(心理学)
镜头(地质)
热成像
作者
Tairan Wang,Junyu Yuan,Yulin Liu,Rongzong Zheng,Chunyang Jia
标识
DOI:10.1002/adom.202502945
摘要
Abstract Achieving independent modulation of distinct spectral characteristics in adaptive multispectral camouflage devices remains a key challenge. Drawing inspiration from the skin textures of felines, this research developed a biomimetic array electrode to enable independent visible‐infrared modulation. This is achieved using Prussian blue and MXene/CNT hybrid slurry as functional layers, which respectively modulate visible and infrared regions. Significant differences in optical response ranges and operating principles among the different functional layers provide a foundation for the device's independent modulation. The impact of visual integration between the two functional layers is analyzed via the contour area ratio, while infrared camouflage performance is comprehensively evaluated by analyzing their infrared temperature and chromaticity coordinate differences. The results indicate that the minimum distance required for contour recognition varies with array size. For instance, when a device with an array size of 0.6 mm is observed from a distance of 120 cm, the contour area ratios are only 3.4% (visible region) and 2.1% (infrared region), with a maximum temperature difference of 2.12 °C, which is far below the threshold required for contour detection by detection devices. This research provides crucial insights to advance the development of independent modulation adaptive multispectral camouflage technology.
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