Company Filing History:
Years Active: 2017-2019
Title: Innovations of Shengli Fan in Microscopic Measurement Systems
Introduction
Shengli Fan is a notable inventor based in Zhejiang, China. He has made significant contributions to the field of microscopic measurement systems, holding two patents that enhance the capabilities of stereo microscopes. His work focuses on improving measurement accuracy and depth perception in optical imaging.
Latest Patents
Shengli Fan's latest patents include a "Microscopic three-dimensional measurement system and method based on moving diaphragm." This invention introduces a diaphragm into existing optical microscopic imaging systems to limit the light irradiation angle during imaging. This innovation reduces the diameter of the blur circle, extends the depth of field, and increases the depth measurement range, allowing for the three-dimensional measurement of large-size objects. By changing the position of the diaphragm, two images with different light incident directions are obtained, similar to binocular stereo vision. This method uses a disparity map to predict depth and achieve 3D scene reconstruction. Additionally, he has developed a "Rapid autofocus method for stereo microscope," which involves calculating disparities in stereo microscopic images and extracting clear images for autofocus. This method enhances the efficiency of focusing on target objects in stereo microscopic images.
Career Highlights
Shengli Fan is affiliated with Ningbo University, where he continues to advance research in microscopic measurement technologies. His innovative approaches have garnered attention in the scientific community, contributing to the development of more precise imaging techniques.
Collaborations
Shengli Fan collaborates with esteemed colleagues, including Mei Yu and Yigang Wang, who share his passion for advancing optical measurement systems. Their combined expertise fosters a productive research environment that drives innovation.
Conclusion
Shengli Fan's contributions to microscopic measurement systems exemplify the impact of innovative thinking in scientific research. His patents not only enhance measurement accuracy but also pave the way for future advancements in optical imaging technology.
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