Anjus George

dblp:223/0832 · DBLP profile ↗
← Back
2ranked-venue papers
1as first author
2since 2021 · last 2025
0000-0001-7973-7061ORCID · corroborated

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

Systems, architecture and hardware · 2 · 1 first-author · 2 since 2021

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
2 papers
Storage systems · 91% High-performance computing · 5% Cloud and datacenter computing · 4%

Topics — the 8 heaviest of 8, each with the papers that count most for it

TopicWeightPapersLastEvidence papers
Storage systems › file systems
distributed file system
0.912025
Lustre Unveiled: Evolution, Design, Advancements, and Current Trends · ACM Trans. Storage 2025
Storage systems
file systems
0.912025
Lustre Unveiled: Evolution, Design, Advancements, and Current Trends · ACM Trans. Storage 2025
Storage systems › file systems › distributed file system › parallel file system
lustre file system
0.912025
Lustre Unveiled: Evolution, Design, Advancements, and Current Trends · ACM Trans. Storage 2025
Storage systems › distributed storage
parallel storage system
0.912025
Lustre Unveiled: Evolution, Design, Advancements, and Current Trends · ACM Trans. Storage 2025
Storage systems › storage reliability
erasure coding
0.712023
Design Considerations and Analysis of Multi-Level Erasure Coding in Large-Scale Data Centers · SC 2023
Storage systems
storage reliability
0.712023
Design Considerations and Analysis of Multi-Level Erasure Coding in Large-Scale Data Centers · SC 2023
High-performance computing › supercomputing
exascale computing
0.312025
Lustre Unveiled: Evolution, Design, Advancements, and Current Trends · ACM Trans. Storage 2025
Cloud and datacenter computing
datacenter storage
0.212023
Design Considerations and Analysis of Multi-Level Erasure Coding in Large-Scale Data Centers · SC 2023

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

workload analysis · 0.9simulation · 0.7mathematical modeling · 0.7dynamic programming · 0.7
YearPublicationVenuePosition
2025 Lustre Unveiled: Evolution, Design, Advancements, and Current Trends
abstract
The Lustre filesystem serves as a vital element in high-performance parallel storage, meeting the rising demands of scientific, research, and enterprise environments. Widely deployed across HPC environments, ranging from small-scale applications in AI/ML, to domains like oil and gas, drug discovery, and meteorology, and manufacturing, Lustre addresses the universal challenge of efficiently accessing vast and ever-increasing volumes of data. Lustre is the filesystem of choice on six out of the top 10 fastest supercomputers in the world today, over 65% of the top 100, and also for over 60% of the top 500. Despite its widespread popularity, there is a lack of a complete and up-to-date reference, covering Lustre’s evolution, design, and various advancements made over the years. In this journal, we aim to fill this gap by providing a comprehensive journey of Lustre, including its history with significant contributions to HPC, detailed architecture and design elements, exploration of advancements added through its evolution, and future directions. Additionally, we present a comparison of Lustre with other prominent storage technologies of the era. To illustrate the current state of Lustre, we analyze several filesystem trends, including utilization, performance, and usage patterns on Orion, the Lustre filesystem on the first exascale supercomputer Frontier. We hope that this journal serves as a comprehensive educational reference for the current and future generations interested in HPC filesystem storage aspects.
Anjus George, Andreas Dilger, Michael J. Brim, Rick Mohr, Amir Shehata, Jong Choi 0001, Ahmad Maroof Karimi, Jesse Hanley, James Simmons, Dominic Manno, Verónica G. Vergara Larrea, Sarp Oral, Christopher Zimmer 0001
ACM Trans. Storage1
2023 Design Considerations and Analysis of Multi-Level Erasure Coding in Large-Scale Data Centers
abstract
Multi-level erasure coding (MLEC) has seen large deployments in the field, but there is no in-depth study of design considerations for MLEC at scale. In this paper, we provide comprehensive design considerations and analysis of MLEC at scale. We introduce the design space of MLEC in multiple dimensions, including various code parameter selections, chunk placement schemes, and various repair methods. We quantify their performance and durability, and show which MLEC schemes and repair methods can provide the best tolerance against independent/correlated failures and reduce repair network traffic by orders of magnitude. To achieve this, we use various evaluation strategies including simulation, splitting, dynamic programming, and mathematical modeling. We also compare the performance and durability of MLEC with other EC schemes such as SLEC and LRC and show that MLEC can provide high durability with higher encoding throughput and less repair network traffic over both SLEC and LRC.
Meng Wang 0056, Jiajun Mao, Rajdeep Rana, John Bent, Serkay Olmez, Anjus George, Garrett Wilson Ransom, Jun Li 0017, Haryadi S. Gunawi
SC6