Luis Useche

dblp:72/4561 · DBLP profile ↗
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5ranked-venue papers
2as first author
0since 2021 · last 2015
—ORCID · none

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

Systems, architecture and hardware · 5 · 2 first-authorDatabases, data management, data science and information retrieval · 3

Expertise — from the expertise taxonomy: the topics of the expert's papers under the CCF categories. A weight counts papers with recency: 1 for a paper about the topic, 0.3 when the topic is its context, halved every five years.

Computer architecture, parallel and distributed computing, and storage systems
4 papers
Storage systems · 71% Energy-efficient computing · 26% Memory systems · 4%
Software engineering, system software, and programming languages
1 paper
Operating systems · 100%

Topics — the 7 heaviest of 9, each with the papers that count most for it

TopicWeightPapersLastEvidence papers
Storage systems
file systems
0.212015
Non-blocking Writes to Files · FAST 2015
Storage systems
energy-efficient storage
0.222010
SRCMap: Energy Proportional Storage Using Dynamic Consolidation · FAST 2010
EXCES: External caching in energy saving storage systems · HPCA 2008
Energy-efficient computing
power management
0.112010
SRCMap: Energy Proportional Storage Using Dynamic Consolidation · FAST 2010
Energy-efficient computing
storage power management
0.112008
EXCES: External caching in energy saving storage systems · HPCA 2008
Operating systems › resource management › storage management
file systems
0.112015
Non-blocking Writes to Files · FAST 2015
Memory systems
data layout optimization
0.012009
BORG: Block-reORGanization for Self-optimizing Storage Systems · FAST 2009
Storage systems › magnetic storage
disk storage
0.012008
EXCES: External caching in energy saving storage systems · HPCA 2008

Methods — techniques the papers use, named apart from their topics

prefetching · 0.1caching · 0.1buffering · 0.1
YearPublicationVenuePosition
2015 Non-blocking Writes to Files
Daniel Campello, Hector López, Ricardo Koller, Raju Rangaswami, Luis Useche
FAST5
2011 Truly Non-blocking Writes
Luis Useche, Ricardo Koller, Akshat Verma
HotStorage1
2010 SRCMap: Energy Proportional Storage Using Dynamic Consolidation
Akshat Verma, Ricardo Koller, Luis Useche, Raju Rangaswami
FAST3
2009 BORG: Block-reORGanization for Self-optimizing Storage Systems
Medha Bhadkamkar, Jorge Guerra, Luis Useche, Sam Burnett, Jason Liptak, Raju Rangaswami, Vagelis Hristidis
FAST3
2008 EXCES: External caching in energy saving storage systems
abstract
Power consumption within the disk-based storage subsystem forms a substantial portion of the overall energy footprint in commodity systems. Researchers have proposed external caching on a persistent, low-power storage device, which we term external caching device (ECD), to minimize disk activity and conserve energy. While recent simulation-based studies have argued in favor of this approach, the lack of an actual system implementation has precluded answering several key questions about external caching systems. We present the design and implementation of EXCES, an external caching system that employs prefetching, caching, and buffering of disk data for reducing disk activity. EXCES addresses important questions related to external caching, including the estimation of future data popularity, I/O indirection, continuous reconfiguration of the ECD contents, and data consistency. We evaluated EXCES with both micro- and macro- benchmarks that address idle, I/O intensive, and real-world workloads. Overall system energy savings was found to lie in the modest 2–14% range, depending on the workload, in somewhat of a contrast to the higher values predicted by earlier studies. Furthermore, while the CPU and memory overheads of EXCES were well within acceptable limits, we found that flash-based external caching can substantially degrade I/O performance. We believe that external caching systems hold promise. Further improvements in ECD technology, both in terms of their power consumption and performance characteristics can help realize the full potential of such systems.
Luis Useche, Jorge Guerra, Medha Bhadkamkar, Mauricio Alarcon, Raju Rangaswami
HPCA1