Please use this identifier to cite or link to this item: http://bura.brunel.ac.uk/handle/2438/4409
Title: A distributed analysis and monitoring framework for the compact Muon solenoid experiment and a pedestrian simulation
Authors: Karavakis, Edward
Advisors: Khan, A
Keywords: Grid computing;Distributed computing;Distributed analysis;CMS;Experiment dashboard
Issue Date: 2010
Publisher: Brunel University School of Engineering and Design PhD Theses
Abstract: The design of a parallel and distributed computing system is a very complicated task. It requires a detailed understanding of the design issues and of the theoretical and practical aspects of their solutions. Firstly, this thesis discusses in detail the major concepts and components required to make parallel and distributed computing a reality. A multithreaded and distributed framework capable of analysing the simulation data produced by a pedestrian simulation software was developed. Secondly, this thesis discusses the origins and fundamentals of Grid computing and the motivations for its use in High Energy Physics. Access to the data produced by the Large Hadron Collider (LHC) has to be provided for more than five thousand scientists all over the world. Users who run analysis jobs on the Grid do not necessarily have expertise in Grid computing. Simple, userfriendly and reliable monitoring of the analysis jobs is one of the key components of the operations of the distributed analysis; reliable monitoring is one of the crucial components of the Worldwide LHC Computing Grid for providing the functionality and performance that is required by the LHC experiments. The CMS Dashboard Task Monitoring and the CMS Dashboard Job Summary monitoring applications were developed to serve the needs of the CMS community.
Description: This thesis was submitted for the degree of Doctor of Philosophy and awarded by Brunel University.
URI: http://bura.brunel.ac.uk/handle/2438/4409
Appears in Collections:Brunel University Theses
Electronic and Computer Engineering
Dept of Electronic and Electrical Engineering Theses

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