Company Filing History:
Years Active: 2020
Title: Shih-Kai Huang: Innovator in Space Coordinate Conversion Technology
Introduction: Shih-Kai Huang is a prominent inventor based in Taipei, Taiwan. He has made significant contributions to the field of space coordinate conversion technology. His innovative approach has led to the development of a unique patent that enhances the way 3D objects are processed and represented in digital environments.
Latest Patents: Shih-Kai Huang holds a patent for a "Space coordinate converting server and method thereof." This invention involves a space coordinate converting server that receives field video recorded with a 3D object from an image capturing device. The server generates a point cloud model and determines key frames of the field video. It maps the point cloud model to key images based on rotation and translation information, ultimately generating a characterized 3D coordinate set. The server also determines 2D coordinates of the 3D object in key images and selects 3D coordinates from the characterized set according to these 2D coordinates. This innovative method establishes a space coordinate converting relation based on marked points of the 3D object and the 3D coordinates.
Career Highlights: Shih-Kai Huang is affiliated with the Institute for Information Industry, where he continues to advance his research and development efforts. His work focuses on improving the accuracy and efficiency of 3D coordinate conversion processes, which are essential in various applications, including virtual reality and augmented reality.
Collaborations: Shih-Kai Huang collaborates with notable colleagues such as Jia-Wei Hong and Ming-Fang Weng. Their combined expertise contributes to the innovative projects at the Institute for Information Industry.
Conclusion: Shih-Kai Huang's contributions to space coordinate conversion technology exemplify the impact of innovative thinking in the field of 3D modeling. His patent and ongoing work continue to influence advancements in digital representation of 3D objects.