CSC-LCG · CERN Schools of Computing for the LHC Computing Grid
6РП — Действия „Мария Кюри“
- Период
- 2004-04-01 → 2008-03-31
- Финансиране от ЕС
- 591 000 €
- Участници
- 1
- Схема
- —
Накратко на български
Компютърните мрежи за Големия адронен колайдер се изучават чрез специализирани курсове за млади изследователи. Обучението помага на учените да обработват огромни обеми от данни в областта на физиката на елементарните частици.
Кратко обяснение, генерирано от езиков модел по текста на CORDIS. Оригиналът е по-долу.
Резултати накратко
Final Activity Report Summary - CSC-LCG (CERN schools of computing for the LHC computing grid)
The CERN Schools of Computing Since the early seventies CERN has organised the CERN Schools of Computing (CSCs). They last two weeks and are open to postgraduate students and research workers with a few years of experience in elementary particle physics, in computing or in related fields. Attendance ranges from 70 to 80 students, typically of 15 to 25 different nationalities. The two-week programme of the CSC is comprised of a series of lectures and hand-on exercises. To this end, a computing infrastructure is created on the site of the school. Students apply to the CSC from all over the world. Since 1970, 30 schools have been organised in 19 different countries, attended by a total of 1947 students. Support from the EC From 2004 to 2007, the school was supported by the Marie Curie Action (MCA) programme of the European Commission (EC), providing grants to eligible participants to cover part of all of their costs. During this period, 4 schools were organised in 4 different countries: 2004: Vico-Equense (Italy); 2005: Saint-Malo (France); 2006: Helsinki (Finland); 2007: Dubrovnik (Croatia). Facts and figures During the period of EC support (2004-2007), a total of 314 young scientists attended the school, of which 313 were eligible for support by the MCA programme, some of them from developing regions being fully funded. The young researchers were of 55 different nationalities. Final examination One key aspect of CSCs is the optional examination. The examination is computer-based, in the form of multiple-choice questions and was overseen by a jury formed of lecturers and chaired by the School Director. In case of success, formal certificates of proficiency were delivered by CERN. They may be used by some participants who are engaged in university curricula, to obtain credits. Scientific programme Each of the 4 CSCs was organised around three themes. The programme consisted on average of 30 hours of lectures and 20 hours of exercises. - The Grid computing theme provided the ability to get hand-on experience with modern Grid tools. A major part was dedicated to Grid software that is deployed by the LHC Computing Grid system and the EC-funded EGEE project (both managed by CERN). - The Software Technologies theme presented modern techniques for software design and engineering. It was complemented by a series on Network Quality of Service. Depending on the year, were organised series on: Software Evolution and Testing; Technologies for Interactive & Distributed Computing; Computer Security; Web services; Creating secure software. - The Physics Computing theme started with a series on the fundamentals of physics computing, giving an overview of the software and hardware components required for the processing of the experimental data. This was followed by a series on scientific simulation. Depending on the year, were organised series on: Databases and object persistency; Data Analysis and Visualisation; On-line Data Acquisition; Introduction to ROOT technologies. Lecturers and organisation Lecturers came from from Austria, Bulgaria, France, Germany, Italy, the Netherlands, Poland, Switzerland, UK, USA. During this period, the School Director was François Fluckiger. Equal opportunity On average, 21% of the young participants were female. Year by year, the fraction of female participants was as follows: 2004: 18%. 2005: 12%, 2006: 12%, 2007: 30%. Inverted School: One objective is to favour the persistency of relationships between all participants after the events. To this end, a novel idea was introduced in 2004: holding an "Inverted CERN School of Computing" (iCSC) 6 months after the main school, "where Students turn unto teachers". After each school, participants worked together to develop topics. Some of them were selected to form a 2.5-day school which took place at CERN in March 2005, 2006 and 2008. In total, over the three inverted schools, 41 hours of tuition were delivered by 22 young researchers.
Текст от CORDIS, на английски · Данни: CORDIS, © Европейски съюз
Цел на проекта
This proposal concerns a series of four annual schools as part of the CSC (CERN Schools of Computing) programme, covering the period 2004-2007. CSCs are two-week schools, attended by up to 80 students, taking place in one of CERN's Member States, leading t o an optional examination and certificate of proficiency, comprising lecture series and practical work (project-oriented). The proposed series will focus on the computing technologies needed for the LHC, CERN's new accelerator to be put in operation in 200 7. One of the biggest challenges that the LHC is facing is to build a global computing environment, the LHC Computing Grid (LCG), to meet requirements far beyond any past demand: 11 petabytes of data to be recorded per year, a hundred thousand of today's f astest processors. Technologies specifically relevant to the LHC Computing Grid, to be covered during the series will include: ? Grid middleware: Virtual Organization (VO) management; data management; resource location and brokering; security including PKI s, authentication, authorization; system monitoring and error handling. ? Very-large scale computing: large-scale mass storage (incl. management of high-capacity disk/tape systems); high-end compute farms for intensive data processing; very-high bit-rate n etworks. ? Software management for large-scale distributed projects Key distinguishing feature: Novel technologies such as Grid middleware are rarely taught from a practical angle. The yearly program will adjust to the progress of the LCG, taking into acco unt actual results and lessons learnt from the phased implementation. Training will be practical, not purely theoretical, will match the reality and reflect problems encountered. Strategic importance: It is admitted that Grid technologies will permeate the society at large - industry, SMEs, residential users - and that it is of strategic importance that a Grid technical culture be created among European computer scientists #'
Оригинален текст от CORDIS (на английски).
Участници
- EUROPEAN ORGANIZATION FOR NUCLEAR RESEARCH · GENEVA 23КоординаторПриблизително местоположениенепознат регион
Връзки
Данни: CORDIS, © Европейски съюз
