Xin.an Wang

Work place: Key Lab of Integrated Microsystem Science & Engineering Applications, Peking University Shenzhen Graduate School, Shenzhen 518055, China

E-mail: wangxa@pkusz.edu.cn

Website:

Research Interests: Interaction Design, Computer systems and computational processes, Algorithm Design

Biography

Xin’an Wang was born in Henan, China,  in 1963. He received the B.S. degree in  Computer Science from Wuhan University,  Wuhan, China, in 1983, and the M.S. and Ph.D.  degrees in microelectronics from Shanxi  Microelectronics Institute, Xi’an, China, in  1989 and 1992, respectively.  He is currently a Professor in the School  of Electronics Engineering and Computer Science, Peking  University, Beijing, China. He is now working in the school of  Computer & Information Engineering, Peking University  Shenzhen Campus. His research interests focus on the area of  application-specified integrated-circuit design and IC design  methodology. 

Author Articles
Operator Design Methodology and Application in H.264 Entropy Coding

By Ziyi Hu Teng Wang Kuilin Chen Zheng Xie Xin.an Wang

DOI: https://doi.org/10.5815/ijieeb.2010.01.08, Pub. Date: 8 Nov. 2010

Currently ASIC applications, such as multimedia processing, require shorter time-to-market and lower cost of Non Recurring Engineering (NRE). Also, with the IC manufacturing technology developing continually, from transistor level to logic gate level, the size of design cells in digital circuits is increasing correspondingly. New design methodology is in urgent need to meet the requirement for the developing processing technology and shorter time-to-market in IC industry. This paper proposed the concepts and principles of operator design methodology, then focused on the entropy coding application based on the operators and finally presented the implementation results. The results show that with the proposed methodology, a comparable hardware performance can be obtained against the traditional standard cell based design flow. Furthermore, the design speed can be improved efficiently.

[...] Read more.
Other Articles