Design and Development of Innovative Imaging System for Terrestrial and Underwater Environment
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Abstract
This research presents a multifaceted approach to optimizing optical design
newlineparameters, addressing challenges in achieving optimal design aberration and error
newlinefunction performance. An expert optimization model, incorporating both spherical and
newlineaspherical tools, is introduced to enhance system performance. The model focuses on
newlinereducing the size of the converging point at the image plane and employs asphere glass
newlinesurfaces and glass substitution methods. Using Code V analysis, the proposed solution
newlinesuccessfully achieves optimal performance, reducing the imaging system merit function
newlinefrom 1859 to 21. The specification builder aids in determining specifications and
newlineperformance target values.
newlineThe cost of cameras is going up because of the optical lens elements that
newlinecause aberration in the images. This study suggests a new imaging system model with
newlinefewer and better optical lens elements that keeps the quality of output high by using the
newlinesuggested method of optical power and lens symmetry. Design stages, including
newlineautomatic global synthesis, asphere expert, and glass expert, are optimized to minimize
newlineerror and enhance performance. For testing, optical simulator analysis tools like
newlineModulation Transfer Function Spot Diagram, Quick Ray Aberration, and Merit
newlineFunction are used to show that the proposed imaging system is better in both qualitative
newlineand quantitative ways
newline