Papers
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Total Citations
2
H-Index
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About
Yongle Li is a researcher whose work centers on computational imaging and optical system design, with a particular focus on catadioptric omnidirectional imaging and defocus deblurring. His key contribution lies in addressing the inherent defocus blur in catadioptric systems—a challenge exacerbated by large apertures and mirror curvatures, especially as high-resolution sensors become more common. In his 2012 paper, "Coded aperture techniques for catadioptric omni-directional image defocus deblurring," Li proposed a simple yet effective modification to conventional catadioptric setups, leveraging coded aperture techniques to mitigate blur and enhance image clarity. While this work has garnered modest attention with 2 citations, it represents a foundational step in improving the practicality of omnidirectional imaging for applications in robotics, surveillance, and panoramic photography. Li’s research bridges optical engineering and computational methods, offering solutions that extend the capabilities of wide-field imaging systems. His work is particularly valuable for students and researchers exploring non-traditional camera designs and image restoration, demonstrating how targeted modifications can yield significant improvements in real-world imaging performance.
Research Focus
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Top Papers
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