Title
Cost, Capacity, and Performance Analyses for Hybrid SCM/NAND Flash SSD
Abstract
Storage class memories (SCMs) are fast and energy-efficient solid-state memories with high endurance. However, the bit cost of SCM is higher than that of NAND flash memory due to its relative production immaturity. As a cost-effective alternative to replace the conventional NAND flash-only solid-state drive (SSD), the hybrid SCM/MLC NAND SSD is a promising next generation storage solution. It is already understood that SCM capacity requirement depends on the workload characteristics. However, the optimum SCM capacity is also determined by the latency parameters of the SCM chips themselves. Therefore, in this paper, the dependencies of SCM capacity on SCM chip latency parameters are analyzed for the hybrid SCM/MLC NAND flash SSD. From the experimental results, increasing SCM capacity to accelerate the SSD performance is feasible when the write and read latencies of the SCM are below 1 μs. Furthermore, SSD energy consumption is more dependent on write rather than read latency. Finally, optimistic and pessimistic models of SCM area cost are considered in order to optimize the cost-efficiency of the SCM chip design in the hybrid SCM/MLC NAND SSD. According to the SCM area cost models, a SCM:NAND capacity ratio of at least 1.5% with a SCM read latency of less than 630 ns is recommended for the Financial1 workload, assuming that the SCM write/read latency ratio is 5.
Year
DOI
Venue
2014
10.1109/TCSI.2014.2309780
IEEE Trans. on Circuits and Systems
Keywords
Field
DocType
nand circuits,ssd,mlc nand flash,scm chip latency parameters,write latency,next generation storage solution,scm,read latency,solid-state drive,hybrid scm-mlc nand flash ssd,performance analysis,flash memories,scm chip design,storage class memories
Nand flash memory,Flash file system,Computer science,Latency (engineering),NAND gate,Chip,Electronic engineering,Integrated circuit design,Computer hardware,Energy consumption,Embedded system
Journal
Volume
Issue
ISSN
61
8
1549-8328
Citations 
PageRank 
References 
1
0.36
7
Authors
5
Name
Order
Citations
PageRank
Chao Sun1415.85
Tomoko Ogura Iwasaki210.70
Takahiro Onagi341.15
Koh Johguchi4437.87
Ken Takeuchi5308.01