Applied Sciences · 2020 · 31 citations · 14 references
EngineeringSpace OpticImage AnalysisCalibrationSparse ImageActive OpticsImage EstimationRapid Auto-focus MethodsAstronomical Image AnalysisComputational ImagingSatellite ImagingRadiologyMachine VisionSynthetic Aperture RadarRadio TelescopeImage EnhancementImage Quality AssessmentTenengrad IefComputer VisionAdaptive OpticTelescope ObservationGeometrical Aberration
Aiming at improving the speed and accuracy of auto-focus for telescope observation, algorithms for image estimation and auto-focus were investigated and are discussed in this article. Based on the image quality assessment, the auto-focusing process of the telescope system is realized by using the mountain-climb search method. Several evaluation functions were tested in different scenarios. It is demonstrated that the Tenengrad image estimation function (IEF) is suitable for an instant and accurate auto-focus process of the telescope. Furthermore, we implemented sampling and dynamic adaptive focusing window (ES-DAFW) methods with the Tenengrad IEF to enhance the sensitivity and accuracy of the auto-focus process. The experimental results showed that our ES-DATW method can provide more accurate results in less time for the auto-focus process compared to the conventional approaches, especially for a sparse image. These results promise significant applications to the auto-focusing of other telescopes with image quality assessment.
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Infrared Small Target Detection Based on Non-Convex Optimization with Lp-Norm Constraint
Tianfang Zhang, Hao Wu, Yuhan Liu et al. · Remote Sensing · 2019 · 153 citations · Full text