<--- Back to Details
First PageDocument Content
Computing / Engineering / Parallel computing / Fault-tolerant computer systems / Software quality / Application checkpointing / Classes of computers / MapReduce / Computer cluster / Reliability engineering / Fault tolerance / Distributed computing
Date: 2015-11-10 08:26:34
Computing
Engineering
Parallel computing
Fault-tolerant computer systems
Software quality
Application checkpointing
Classes of computers
MapReduce
Computer cluster
Reliability engineering
Fault tolerance
Distributed computing

Cluster Fault-Tolerance: An Experimental Evaluation of Checkpointing and MapReduce through Simulation Thomas C. Bressoud #1 , Michael A. Kozuch ∗2 #

Add to Reading List

Source URL: personal.denison.edu

Download Document from Source Website

File Size: 841,03 KB

Share Document on Facebook

Similar Documents

Millisort: An Experiment in Granular Computing Seo Jin Park with Yilong Li, Collin Lee and John Ousterhout  Massively Parallel Granular Computing

Millisort: An Experiment in Granular Computing Seo Jin Park with Yilong Li, Collin Lee and John Ousterhout Massively Parallel Granular Computing

DocID: 1xUyt - View Document

arXiv:1803.04432v1 [cs.DC] 12 MarMemory Models for C/C++ Programmers Manuel P¨oter Jesper Larsson Tr¨aff Research Group Parallel Computing

arXiv:1803.04432v1 [cs.DC] 12 MarMemory Models for C/C++ Programmers Manuel P¨oter Jesper Larsson Tr¨aff Research Group Parallel Computing

DocID: 1xTxL - View Document

FEIIC International Journal of Engineering and Technology, Vol. 13, No.2, 2016, ppSURVEY ANALYSIS ON THE EMBEDDED TCPP CURRICULUM IN PARALLEL AND DISTRIBUTED COMPUTING COURSE

FEIIC International Journal of Engineering and Technology, Vol. 13, No.2, 2016, ppSURVEY ANALYSIS ON THE EMBEDDED TCPP CURRICULUM IN PARALLEL AND DISTRIBUTED COMPUTING COURSE

DocID: 1vq34 - View Document

Parallel Computing with IPython: an application to air pollution modeling

Parallel Computing with IPython: an application to air pollution modeling

DocID: 1vlLp - View Document

Multi-EM Multi-Method Inversion to Determine the Electrical Conductivity Distribution of the Subsurface Using Parallel Computing Architectures  Multi-EM

Multi-EM Multi-Method Inversion to Determine the Electrical Conductivity Distribution of the Subsurface Using Parallel Computing Architectures Multi-EM

DocID: 1uVPD - View Document