Title :
Energy-efficient architecture for advanced video memory
Author :
Sampaio, Frederico ; Shafique, Muhammad ; Zatt, Bruno ; Bampi, Sergio ; Henkel, Jörg
Author_Institution :
Inf. Inst., Fed. Univ. of Rio Grande do Sul (UFRGS), Porto Alegre, Brazil
Abstract :
An energy-efficient hybrid on-chip video memory architecture (enHyV) is presented that combines private and shared memories using a hybrid design (i.e., SRAM and emerging STT-RAM). The key is to leverage the application-specific properties to efficiently design and manage the enHyV. To increase STT-RAM lifetime, we propose a data management technique that alleviates the bit-toggling write occurrences. An adaptive power management is also proposed for static-energy savings. Experimental results illustrate that enHyV reduces on-chip static memory energy compared to SRAM-only version of enHyV and to state-of-art AMBER hybrid video memory [9] by 66%-75% and 55%-76%, respectively. Furthermore, negligible external memory energy consumption is required for reference frames communication (98% lower than state-of-the-art Level C+ technique [18]). Our data management significantly improves the enHyV STT-RAM lifetime, achieving 0.83 of normalized lifetime (near to the optimal case). Our hybrid memory design and management incur low overhead in terms of latency and dynamic energy.
Keywords :
SRAM chips; storage management chips; video codecs; SRAM; STT-RAM lifetime; adaptive power management; advanced video memory; data management technique; energy-efficient architecture; external memory energy consumption; hybrid design; on-chip static memory energy; on-chip video memory architecture; Energy consumption; Energy efficiency; Memory architecture; Memory management; Random access memory; Streaming media; System-on-chip;
Conference_Titel :
Computer-Aided Design (ICCAD), 2014 IEEE/ACM International Conference on
Conference_Location :
San Jose, CA
DOI :
10.1109/ICCAD.2014.7001343