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dc.contributor.advisorBeltrán Ramírez, Jesús Raúl
dc.contributor.advisorOrizaga Trejo, José Antonio
dc.contributor.advisorParra González, Ezra Federico
dc.contributor.advisorMaciel Arellano, María Del Rocío
dc.contributor.authorSalazar Linares, Pablo
dc.date.accessioned2024-09-18T14:27:11Z-
dc.date.available2024-09-18T14:27:11Z-
dc.date.issued2018-01-12
dc.identifier.urihttps://wdg.biblio.udg.mx
dc.identifier.urihttps://hdl.handle.net/20.500.12104/104666-
dc.description.abstractNowadays the use of disruptive cloud virtualization technologies oriented towards Smart Cities is not being seized entirely, it is possible to take advantage of new resources management solutions to evolve and turn traditional cloud management processes into a smart quality of service oriented approach. High performance computing (HPC) applications are evolving each day in the cities in order to send more information every moment, HPC applications demand a huge amount of resources. HPC applications have traditionally been executed in Cluster and Grid platforms. Cloud computing has emerged as a platform able to reduce costs while offering on demand access to large amount of computing resources. Hence, it has become attractive to run HPC applications in the cloud. However, the performance penalty imposed by cloud platforms is prohibitive to certain kind of HPC applications. An additional challenge to efficiently run HPC applications in the cloud involves reducing performance interference, which negatively impacts the performance of such applications. In this work, we present a virtual machine placement approach for smart cities infrastructure clouds. We propose the use of a simulated annealing algorithm in order to minimize the interference produced by HPC applications while maintaining the contracted service level agreement (SLA) and minimizing monetary costs. This approach will help Smart Cities cloud resource managers to improve their service and maintain the quality of service demands of the users.
dc.description.tableofcontentsArticles Published Abstract I. Introduction 1.1 Real world problem 1.2 Solution strategy 1.3 Hypothesis 1.4 Research problem 1.4.1 Research Questions 1.5 Document structure II. State of the art 2.1 Smart Cities 2.2 Cloud infrastructure in Smart Cities 2.3 High performance computing in Smart Cities and Cloud Cognitive Services 2.4 High Performance Computing issues in Cloud Computing 2.5 Analysis of the HPC classification III. Proposal Implementation 3.1 Introduction 3.2 Related work 3.3 Job Manager Architecture IV. Results 4.1 Introduction 4.2 Smart Cities Simulators 4.3 Using Cloud Workflow for cloud V. Conclusions and future work 5.1 Conclusions 5.2 Research Line 5.3 Contributions
dc.formatapplication/PDF
dc.language.isoeng
dc.publisherBiblioteca Digital wdg.biblio
dc.publisherUniversidad de Guadalajara
dc.rights.urihttps://www.riudg.udg.mx/info/politicas.jsp
dc.subjectSmart Cities
dc.subjectCloud Computing
dc.subjectPerformance Interference
dc.subjectHpc
dc.subjectVirtual Machine Placement.
dc.titleHybrid Virtualization Approach for High-Performance Computing Applications in Smart Cities Cloud Infrastructure
dc.typeTesis de Doctorado
dc.rights.holderUniversidad de Guadalajara
dc.rights.holderSalazar Linares, Pablo
dc.coverageZAPOPAN, JALISCO
dc.type.conacytdoctoralThesis
dc.degree.nameDOCTORADO EN TECNOLOGIAS DE INFORMACION
dc.degree.departmentCUCEA
dc.degree.grantorUniversidad de Guadalajara
dc.rights.accessopenAccess
dc.degree.creatorDOCTOR EN TECNOLOGIAS DE INFORMACION
dc.contributor.directorLarios Rosillo, Víctor Manuel
Aparece en las colecciones:CUCEA

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