research:projects:pecoh:start

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research:projects:pecoh:start [2020-01-15 13:25]
Kai Himstedt [Deliverables]
research:projects:pecoh:start [2020-05-15 18:45] (current)
Kai Himstedt [Deliverables]
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   * {{:research:projects:pecoh:D1_1-annual-report.pdf|D1.1 Annual Report}}   * {{:research:projects:pecoh:D1_1-annual-report.pdf|D1.1 Annual Report}}
     * This deliverable contains the first annual report and it includes information about the project progress, status and next steps. For the sake of completeness, the report gives a brief overview of the major project goals, the partners and scientific institutions involved in the project. The relevant information about the general organization of the project (e.g. about a delayed project start due to the difficulties in hiring of qualified scientific employees) is also included. The results achieved in the six work packages are listed in more detail in the technical section of the report. The emphasis is on modeling HPC usage costs to calculate costs and statistics for SLURM jobs and on developing an HPC certification program to improve the education of HPC users.     * This deliverable contains the first annual report and it includes information about the project progress, status and next steps. For the sake of completeness, the report gives a brief overview of the major project goals, the partners and scientific institutions involved in the project. The relevant information about the general organization of the project (e.g. about a delayed project start due to the difficulties in hiring of qualified scientific employees) is also included. The results achieved in the six work packages are listed in more detail in the technical section of the report. The emphasis is on modeling HPC usage costs to calculate costs and statistics for SLURM jobs and on developing an HPC certification program to improve the education of HPC users.
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 +  * {{:research:projects:pecoh:D1_2-and-D1_3-annual-reports.pdf|D1.2 & D1.3 Annual Reports}}
 +    * This deliverable contains the second and third annual report summarized as a single report. It includes information about the project progress, status, and sustainability. For the sake of completeness -- similar to the first annual report (D1.1) -- the report gives a brief overview of the major project goals, as well as the partners and scientific institutions involved in the project. The relevant information about the general organization of the project and required adjustments is also included. The results achieved in the six work packages are listed in more detail in the technical section of the report. The emphasis is on performance and software engineering concepts, tuning parallel programs without modifying the source code, an automatic tuning approach using a Black Box Optimizer tool (based on genetic algorithms), and success stories based on best practices to support scientists in their daily work.
  
   * {{:research:projects:pecoh:D2_1-performance-engineering-concepts-and-software-engineering-concepts-for-hpc.pdf|D2.1 Performance Engineering Concepts and Software Engineering Concepts for HPC}}   * {{:research:projects:pecoh:D2_1-performance-engineering-concepts-and-software-engineering-concepts-for-hpc.pdf|D2.1 Performance Engineering Concepts and Software Engineering Concepts for HPC}}
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   * {{:research:projects:pecoh:D4_1-hpc-certification-program.pdf|D4.1 HPC Competences and Certification Program}}   * {{:research:projects:pecoh:D4_1-hpc-certification-program.pdf|D4.1 HPC Competences and Certification Program}}
     * This deliverable discusses the identification of HPC competences and a new approach for an HPC certification program. Our approach is based on an HPC skill tree that supports different views on the HPC content by the help of additional attributes to define the level of a skill (Basic, Intermediate, or Expert), its suitability for the role of a user, and its suitability for a scientific domain. We strictly separate the certificate definition from content providing (similar to the concept of a "Zentralabitur") and assume that collaborating scientific institutions will complement each other in producing content, whereas the certification board has the power to establish generally accepted certificate definitions and corresponding exams without the burden of being responsible for the content.     * This deliverable discusses the identification of HPC competences and a new approach for an HPC certification program. Our approach is based on an HPC skill tree that supports different views on the HPC content by the help of additional attributes to define the level of a skill (Basic, Intermediate, or Expert), its suitability for the role of a user, and its suitability for a scientific domain. We strictly separate the certificate definition from content providing (similar to the concept of a "Zentralabitur") and assume that collaborating scientific institutions will complement each other in producing content, whereas the certification board has the power to establish generally accepted certificate definitions and corresponding exams without the burden of being responsible for the content.
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 +  * {{:research:projects:pecoh:D4_2-workshop-material.pdf|D4.2 Workshop Material}}
 +    * This deliverable contains the workshop material to gain basic level HPC skills. It covers topics like System Architectures, Hardware Architectures, I/O Architectures, Performance Modeling, Parallelization Overheads, Domain Decomposition, Job Scheduling, Use of the Cluster Operating System, Use of a Workload Manager, and Benchmarking.
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 +  * [[https://www.hhcc.uni-hamburg.de/learning-hpc/getting-started-with-hpc-clusters-b.html|D4.3 Online Tutorial]]
 +    * This deliverable is available online via the Hamburg HPC Competence Center (HHCC) website. The tutorial is also available in text form ({{:research:projects:pecoh:D4_3-tutorial.pdf|PDF}}).
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 +  * {{:research:projects:pecoh:D4_4-online-examination.pdf|D4.4 Online Examination}}
 +    * This deliverable contains the description of the prototypical process to facilitate multiple choice tests for the online examination of HPC skills. It is based on the insight that trust in the generated certificates is important and it describes the overall architecture and security concept of our solution. The process strategy to mitigate potential cheating attempts is based on the creation of a big question pool, the users‘ registration, and the technical verifiability, based on cryptographic methods, of the tests and the certificates.
  
   * {{:research:projects:pecoh:D5_1-documentation-of-recommendations.pdf|D5.1 Documentation of Recommendations}}   * {{:research:projects:pecoh:D5_1-documentation-of-recommendations.pdf|D5.1 Documentation of Recommendations}}
research/projects/pecoh/start.1579091130.txt.gz · Last modified: 2020-01-15 13:25 by Kai Himstedt