Title :
Application specific optimization of coarse-grained reconfigurable architecture by dynamic context compression
Author :
Priyadharsini, S. ; Srilalitha, A.
Author_Institution :
Dept. of Elec. & Electr. Eng, Arunai Eng. Coll., Tiruvannamalai, India
Abstract :
Most of the coarse-grained reconfigurable architectures (CGRAs) are composed of reconfigurable ALU arrays and configuration cache (or context memory) to achieve high performance and flexibility. Specially, configuration cache is the main component in CGRA that provides distinct feature for dynamic reconfiguration in every cycle. However, frequent memory-read operations for dynamic reconfiguration cause much power consumption. Thus, reducing power in configuration cache has become critical for CGRA to be more competitive and reliable for its use in embedded systems. In this paper, we propose dynamically compressible context architecture for power saving in configuration cache. This power-efficient design of context architecture works without degrading the performance and flexibility of CGRA. Experimental results show that the proposed approach saves up to 39.72% power in configuration cache with negligible area overhead (2.16%).
Keywords :
cache storage; embedded systems; optimisation; reconfigurable architectures; CGRA; application specific optimization; coarse-grained reconfigurable architecture; configuration cache; dynamic context compression; dynamic reconfiguration; dynamically compressible context architecture; embedded system; memory-read operation; power consumption; power saving; reconfigurable ALU array; Arrays; Context; Educational institutions; Power demand; Registers; Runtime; Coarse-grained reconfigurable architecture (CGRA); configuration cache; context architecture; embedded system; low power;
Conference_Titel :
Information Communication and Embedded Systems (ICICES), 2014 International Conference on
Conference_Location :
Chennai
Print_ISBN :
978-1-4799-3835-3
DOI :
10.1109/ICICES.2014.7033779