TY - JOUR
T1 - Quantifying Color Perception of Marine Targets Through Image Color Appearance Framework
AU - Deng, Chenyang
AU - Ma, Shining
AU - Liao, Ningfang
AU - Wei, Lizhong
N1 - Publisher Copyright:
© 2025 The Illuminating Engineering Society of North America.
PY - 2025
Y1 - 2025
N2 - Regarding the ocean background, the painted camouflage on the surface of targets effectively conceals them, providing a strategic defense against military reconnaissance. Accurately predicting the color appearance of both the target and background is crucial for assessing the camouflage’s performance. This study investigates the perceived color attributes (lightness, chroma, and hue) of marine targets against varying ocean backgrounds using memory matching assessments. Visual data reveal that background color slightly influences target hue perception through simultaneous contrast effects, while lightness and chroma remain unaffected. As the image-based color appearance model–iCAM offers a potential solution for extracting color appearance attributes from a complex RGB image, it has been adopted to predict the pixel-wise color appearance of the marine targets. Comparative validation shows iCAM substantially outperforms existing color appearance models in marine environments, establishing its superior capability for naval camouflage assessment and design. Further analysis indicates that chroma predictions are sensitive to changes in the filter kernel size of iCAM and the image size, while lightness and hue predictions remain stable. Notably, undersized kernels systematically underestimate perceived chroma, highlighting the critical importance of parameter optimization.
AB - Regarding the ocean background, the painted camouflage on the surface of targets effectively conceals them, providing a strategic defense against military reconnaissance. Accurately predicting the color appearance of both the target and background is crucial for assessing the camouflage’s performance. This study investigates the perceived color attributes (lightness, chroma, and hue) of marine targets against varying ocean backgrounds using memory matching assessments. Visual data reveal that background color slightly influences target hue perception through simultaneous contrast effects, while lightness and chroma remain unaffected. As the image-based color appearance model–iCAM offers a potential solution for extracting color appearance attributes from a complex RGB image, it has been adopted to predict the pixel-wise color appearance of the marine targets. Comparative validation shows iCAM substantially outperforms existing color appearance models in marine environments, establishing its superior capability for naval camouflage assessment and design. Further analysis indicates that chroma predictions are sensitive to changes in the filter kernel size of iCAM and the image size, while lightness and hue predictions remain stable. Notably, undersized kernels systematically underestimate perceived chroma, highlighting the critical importance of parameter optimization.
KW - Color perception
KW - image color appearance model
KW - ocean target
KW - psychophysics experiment
UR - https://www.scopus.com/pages/publications/105013165068
U2 - 10.1080/15502724.2025.2527421
DO - 10.1080/15502724.2025.2527421
M3 - Article
AN - SCOPUS:105013165068
SN - 1550-2724
JO - LEUKOS - Journal of Illuminating Engineering Society of North America
JF - LEUKOS - Journal of Illuminating Engineering Society of North America
ER -