DocumentCode
3676027
Title
Energy efficient task allocation for hybrid main memory architecture
Author
Xiaojun Cai;Lei Ju;Xin Li;Zhiyong Zhang;Zhiping Jia
Author_Institution
School of Computer Science and Technolog Shandong University, China
fYear
2015
fDate
8/1/2015 12:00:00 AM
Firstpage
1
Lastpage
6
Abstract
Compared with the conventional dynamic random access memory (DRAM), emerging non-volatile memory such as the phase change random access memory (PRAM) has better density and energy efficiency. However, it usually suffers shortcomings of high write power/latency and low write endurance. In this paper, we study the task allocation problem on the hybrid main memory with both DRAM and PRAM in order to leverage the energy consumption and the performance of the memory subsystem. For a static task set, we design an integer linear programming (ILP) based offline allocation algorithm to obtain the optimal task allocation. Furthermore, we propose a heuristic algorithm, which is an offline adaptive space allocation (offline- ASA) algorithm. Experimental results shown that our proposed schemes achieves average 35.1% energy saving, with additional performance cost of 17.1%.
Keywords
"Phase change random access memory","Energy consumption","Resource management","Memory architecture","Memory management","Algorithm design and analysis"
Publisher
ieee
Conference_Titel
Non-Volatile Memory System and Applications Symposium (NVMSA), 2015 IEEE
Type
conf
DOI
10.1109/NVMSA.2015.7304371
Filename
7304371
Link To Document