The next generation of supercomputers will break the exascale barrier. Soon we will have systems capable of at least one quintillion (billion billion) floating-point operations per second (1018 FLOPS). Tremendous amounts of work have been invested into identifying and overcoming the challenges of the exascale era. In this work, we present an overview of these efforts and provide insight into the important trends, developments, and exciting research opportunities in exascale computing. We use a three-stage approach in which we (1) discuss various exascale landmark studies, (2) use data-driven techniques to analyze the large collection of related literature, and (3) discuss eight research areas in depth based on influential articles. Overall,...
The Department of Energy s Leadership Computing Facility, located at Oak Ridge National Laboratory s...
Nowadays, the most powerful supercomputers in the world, needed for solving complex models and simu...
International audienceExtreme scale parallel computing systems will have tens of thousands of option...
The next generation of supercomputers will break the exascale barrier. Soon we will have systems cap...
From the Foreword: “The authors of the chapters in this book are the pioneers who will explore the e...
From the Foreword: “The authors of the chapters in this book are the pioneers who will explore the e...
This report investigates the transition of applications from multi-petascale to exascale performance...
c © The Authors 2015. This paper is published with open access at SuperFri.org Extreme scale paralle...
As Exascale computing proliferates, we see an accelerating shift towards clusters with thousands of ...
International audienceExtreme scale parallel computing systems will have tens of thousands ...
Developing a computer system that can deliver sustained Exaflop performance is an extremely difficul...
Nowadays, the most powerful supercomputers in the world, needed for solving complex models and simu...
Nowadays, the most powerful supercomputers in the world, needed for solving complex models and simu...
Nowadays, the most powerful supercomputers in the world, needed for solving complex models and simu...
Nowadays, the most powerful supercomputers in the world, needed for solving complex models and simu...
The Department of Energy s Leadership Computing Facility, located at Oak Ridge National Laboratory s...
Nowadays, the most powerful supercomputers in the world, needed for solving complex models and simu...
International audienceExtreme scale parallel computing systems will have tens of thousands of option...
The next generation of supercomputers will break the exascale barrier. Soon we will have systems cap...
From the Foreword: “The authors of the chapters in this book are the pioneers who will explore the e...
From the Foreword: “The authors of the chapters in this book are the pioneers who will explore the e...
This report investigates the transition of applications from multi-petascale to exascale performance...
c © The Authors 2015. This paper is published with open access at SuperFri.org Extreme scale paralle...
As Exascale computing proliferates, we see an accelerating shift towards clusters with thousands of ...
International audienceExtreme scale parallel computing systems will have tens of thousands ...
Developing a computer system that can deliver sustained Exaflop performance is an extremely difficul...
Nowadays, the most powerful supercomputers in the world, needed for solving complex models and simu...
Nowadays, the most powerful supercomputers in the world, needed for solving complex models and simu...
Nowadays, the most powerful supercomputers in the world, needed for solving complex models and simu...
Nowadays, the most powerful supercomputers in the world, needed for solving complex models and simu...
The Department of Energy s Leadership Computing Facility, located at Oak Ridge National Laboratory s...
Nowadays, the most powerful supercomputers in the world, needed for solving complex models and simu...
International audienceExtreme scale parallel computing systems will have tens of thousands of option...