This inventor holds 1 USPTO granted patent. Top assignee: Nvidia Corporation. Active years: 2018.
Company Filing History:
Years Active: 2018
Title: Innovations of Yu Xinyang in Video Coding Technology
Introduction
Yu Xinyang is an accomplished inventor based in Shanghai, China. He has made significant contributions to the field of video coding technology, particularly in optimizing memory management for motion vector prediction. His innovative approach addresses the challenges faced by conventional codecs, leading to improved efficiency and reduced power consumption.
Latest Patents
Yu Xinyang holds a patent titled "Memory management of motion vectors in high efficiency video coding motion vector prediction." This patent focuses on optimizing memory resources used during motion vector prediction in high efficiency video coding codecs. The claimed approach involves the codec performing read and write operations on a fixed-sized neighbor union buffer that represents the motion vectors associated with processed coding units. By determining the indices of proximally-located neighbor motion vectors, the codec can compute new motion vectors and update the neighbor union buffer effectively. This method reduces memory usage and operations compared to conventional codecs, enhancing overall codec efficiency.
Career Highlights
Yu Xinyang is currently employed at Nvidia Corporation, a leading technology company known for its advancements in graphics processing and artificial intelligence. His work at Nvidia has allowed him to collaborate with other talented professionals in the field, furthering the development of innovative video coding solutions.
Collaborations
One of Yu Xinyang's notable collaborators is Stefan Eckart. Their partnership has contributed to the advancement of video coding technologies, showcasing the importance of teamwork in driving innovation.
Conclusion
Yu Xinyang's contributions to video coding technology through his patent demonstrate his commitment to innovation and efficiency. His work not only enhances codec performance but also sets a benchmark for future developments in the field.
