Duwon Hong

dblp:228/7938 · DBLP profile ↗
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4ranked-venue papers
2as first author
3since 2021 · last 2022
0000-0002-6954-6787ORCID · corroborated

Domains — the database's venue-derived domains; a paper can count in several

Systems, architecture and hardware · 4 · 2 first-author · 3 since 2021Databases, data management, data science and information retrieval · 2 · 1 first-author · 1 since 2021
YearPublicationVenuePosition
2022 GuardedErase: Extending SSD Lifetimes by Protecting Weak Wordlines
Duwon Hong, Myungsuk Kim, Geonhee Cho, Dusol Lee, Jihong Kim 0001
FAST1
2021 RealWear: Improving performance and lifetime of SSDs using a NAND aging marker
Myungsuk Kim, Myoungjun Chun, Duwon Hong, Yoona Kim, Geonhee Cho, Dusol Lee, Jihong Kim 0001
Perform. Evaluation3
2021 Reparo: A Fast RAID Recovery Scheme for Ultra-large SSDs
abstract
A recent ultra-large SSD (e.g., a 32-TB SSD) provides many benefits in building cost-efficient enterprise storage systems. Owing to its large capacity, however, when such SSDs fail in a RAID storage system, a long rebuild overhead is inevitable for RAID reconstruction that requires a huge amount of data copies among SSDs. Motivated by modern SSD failure characteristics, we propose a new recovery scheme, called reparo , for a RAID storage system with ultra-large SSDs. Unlike existing RAID recovery schemes, reparo repairs a failed SSD at the NAND die granularity without replacing it with a new SSD, thus avoiding most of the inter-SSD data copies during a RAID recovery step. When a NAND die of an SSD fails, reparo exploits a multi-core processor of the SSD controller in identifying failed LBAs from the failed NAND die and recovering data from the failed LBAs. Furthermore, reparo ensures no negative post-recovery impact on the performance and lifetime of the repaired SSD. Experimental results using 32-TB enterprise SSDs show that reparo can recover from a NAND die failure about 57 times faster than the existing rebuild method while little degradation on the SSD performance and lifetime is observed after recovery.
Duwon Hong, Keonsoo Ha, Minseok Ko, Myoungjun Chun, Yoona Kim, Sungjin Lee 0001, Jihong Kim 0001
ACM Trans. Storage1
2019 Fully Automatic Stream Management for Multi-Streamed SSDs Using Program Contexts
Duwon Hong, Sangwook Shane Hahn, Myoungjun Chun, Sungjin Lee 0001, Joo Young Hwang, Jongyoul Lee, Jihong Kim 0001
FAST2