DocumentCode
1842667
Title
GALS architecture of H.264 video encoding system on DN-DualV6-PCIe-4 FPGA platform
Author
Qihua Yang ; Teng Wang ; Xindong Su ; Lijia Wang ; Xin´an Wang
Author_Institution
Shenzhen Grad. Sch., Key Lab. of Integrated Micro-Syst. Sci. Eng. & Applic., Peking Univ., Shenzhen, China
Volume
1
fYear
2012
fDate
21-25 Oct. 2012
Firstpage
444
Lastpage
447
Abstract
To manage the increasing complexity of modern digital systems, Globally-Asynchronous Locally-Synchronous (GALS) is considered a promising solution, which is now widely adopted in large FPGA designs. The GALS methodology can effectively maximize the performance-power-ratio of the electronic system along with great reuse capability. With multiple clock domains in a GALS system, the accuracy with data transmission between different clock domains counts for a lot. In this paper, a GALS architecture of H.264 video encoding system is implemented on the DN-DualV6-PCIe-4 FPGA platform from the Dini Group. The data rate conversion module among different clock domains is designed with a stream controller and asynchronous FIFOs, in which gray code is applied to avoid metastability. The experiment results show the correctness and effectiveness of the proposed implementation. Furthermore, the proposed GALS scheme can be applied as a configurable architecture for more complicated applications.
Keywords
Gray codes; data communication; data conversion; field programmable gate arrays; queueing theory; video coding; DN-DualV6-PCIe-4 FPGA; GALS architecture; H.264; asynchronous FIFO; data rate conversion module; data transmission; electronic system; globally asynchronous locally synchronous; gray code; metastability; modern digital systems; multiclock domain; stream controller; video encoding system; FPGA prototyping; GALS; H.264 video encoding; data rate conversion;
fLanguage
English
Publisher
ieee
Conference_Titel
Signal Processing (ICSP), 2012 IEEE 11th International Conference on
Conference_Location
Beijing
ISSN
2164-5221
Print_ISBN
978-1-4673-2196-9
Type
conf
DOI
10.1109/ICoSP.2012.6491520
Filename
6491520
Link To Document