伪装
高光谱成像
织物
遥感
环境科学
计算机科学
人工智能
地质学
地理
考古
标识
DOI:10.1080/00405000.2022.2027074
摘要
Camouflage textile assessments are limited in defense research for single and multidimensional combat background (CB) against hyperspectral imaging (HSI). The development of camouflage textiles needs to be upgraded for the capabilities of modern battlefield surveillance. The purpose of this simulation work is to design remote sensing methodology and desired spectral properties of camouflage textiles. A spectral signal (SL) of camouflage textile was hypothetically simulated against dry leaves, green leaves, tree bark-woodland, water-marine, sand-desertland, stone-stoneland, snow-snowland, sky and ice-iceland CB (DGTWSIB), and a simultaneous CB of woodland-marine and marine-desert for camouflage textiles assessment. This simulation is to establish SL assessment technique of object-background (OB) in ultraviolet (UV), visible (Vis) and infrared (IR) illumination in terms of HSI spectrometry, near infrared spectrophotometry (NIRS) and Fourier transform infrared spectrometry (FTIRS) for the advancement and establishment of camouflage textiles assessment. The broad geographical DGTWSIB of camouflage textiles has been contemplated for spectral reflection in OB environments for concealment, detection, recognition, and identification (CDRI). Theoretical simulation of SL has been derived for assessment of camouflage textiles compared with single, simultaneous, and adaptive backgrounds from military CB or locations. The hypothetical and methodological model will direct advanced formulation of camouflage textile measurement for combat mechanism of reflection-SL-CDRI-OB-DGTWSIB-UV-Vis-IR (100–10,000 nm) against defense threat of HSI.
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