This inventor holds 2 USPTO granted patents. Top assignee: Beijing Jiaotong University. Active years: 2021-2023.
Company Filing History:
Years Active: 2021-2023
Title: Innovations of Shengjia Wang in Laser Doppler Imaging
Introduction
Shengjia Wang is a prominent inventor based in Beijing, China. He has made significant contributions to the field of measurement technology, particularly through his innovative methods in laser doppler imaging. With a total of two patents to his name, Wang's work is recognized for its technical depth and practical applications.
Latest Patents
Wang's latest patents focus on a method for full-field measurement using dynamic laser doppler imaging. This method involves several intricate steps, including the activation and adjustment of a laser, the use of a spatial filter to create uniform circular laser spots, and the application of slight pressure to the measured object. The process also includes setting a charge coupled device (CCD) camera into a continuous acquisition mode to observe interference fringes. By controlling various parameters, Wang's method allows for the collection of time series light interference images, ultimately leading to the creation of a three-dimensional data module that captures continuous deformation of measured objects over time and space.
Career Highlights
Shengjia Wang is affiliated with Beijing Jiaotong University, where he continues to advance his research and development efforts. His work is characterized by a strong emphasis on precision and innovation, making him a valuable asset to the academic and scientific community.
Collaborations
Wang collaborates with notable colleagues, including Zhan Gao and Jie Qin, who contribute to his research endeavors. Their combined expertise enhances the quality and impact of their work in the field of laser imaging.
Conclusion
Shengjia Wang's contributions to laser doppler imaging exemplify the intersection of innovation and practical application in measurement technology. His patents reflect a commitment to advancing the field and improving measurement techniques.