DocumentCode
1290381
Title
PCRAM-assisted ECC management for enhanced data reliability in flash storage systems
Author
Lee, Hakyong ; Jung, Sanghyuk ; Song, Yong Ho
Author_Institution
Samsung Electron., Ltd., Hwasung, South Korea
Volume
58
Issue
3
fYear
2012
fDate
8/1/2012 12:00:00 AM
Firstpage
849
Lastpage
856
Abstract
Recent advance in per-cell bit density and semiconductor technology for NAND flash memories have led to significant cost reduction in non-volatile storage implementation. However, the reliability of data stored in flash memory has dramatically decreased, requiring an efficient mechanism to detect and correct bit errors during read and write operations of the data. For this purpose, when user data are often written into a flash page, an Error Correction Code (ECC) for the data is generated and stored in the spare area of the page. ECCs tend to become longer to correct more bit errors, sometimes beyond what is affordable by the spare area. In order to cope with this problem, there have been many attempts to keep ECCs in the data area, as opposed to the spare area of the flash memory. However, an additional mapping mechanism is required to locate ECCs for a given data page, and the program time and cycle are increased due to reading/storing the ECCs. In this paper, we present a novel ECC management mechanism with an assist from PCM for NAND flash storage systems. This technique uses PCM as a temporal storage to store ECCs for the data in log blocks. Later, the pages in log blocks are merged into data blocks with their ECCs kept in the PCM. Our experimental results show that the overhead from ECC management has been improved by 57% and 69% over previous attempts in BAST and FAST mapping schemes, respectively.
Keywords
NAND circuits; error correction codes; flash memories; random-access storage; BAST mapping schemes; FAST mapping schemes; NAND flash memories; PCM; PCRAM assisted ECC management; data reliability; error correction code; flash memory; flash storage systems; management mechanism; mapping mechanism; nonvolatile storage; percell bit density; semiconductor technology; Computer architecture; Error correction codes; Flash memory; Phase change materials; Phase change random access memory; Reliability; NAND flash memory; error correction codes; phase change memory;
fLanguage
English
Journal_Title
Consumer Electronics, IEEE Transactions on
Publisher
ieee
ISSN
0098-3063
Type
jour
DOI
10.1109/TCE.2012.6311327
Filename
6311327
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