• 제목/요약/키워드: Supercomputer

검색결과 142건 처리시간 0.03초

Intelligent u-Learning and Research Environment for Computational Science on Mobile Device

  • Park, Sun-Rae;Jin, Duseok;Lee, Jongsuk Ruth;Cho, Kum Won;Lee, Kyu-Chul
    • KSII Transactions on Internet and Information Systems (TIIS)
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    • 제8권2호
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    • pp.709-722
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    • 2014
  • In the $21^{st}$ century, IT reform has led to the development of cyber-infrastructure owing to the outstanding enhancement of computer and network performance. The ripple effect has continued to increase. Accordingly, this study suggests a new computational research environment using mobile devices. In order to simplify the access of supercomputer, Science AppStore, task management and virtualization technologies are developed on mobile devices. User can be able to research by utilizing computational science SW such as compressible flow solver and nano device simulation tool that in installed on supercomputer in mobile environments. Also, this research environment makes it possible to monitor the simulation result and covers 14 university, 33 subjects, and 1,202 individuals.

빅데이터 분석을 위한 슈퍼컴퓨터 환경에서 R의 병렬처리 (Parallel Computing Environment for R with on Supercomputer Systems)

  • 이상열;원중호
    • 한국경영과학회지
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    • 제39권4호
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    • pp.19-31
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    • 2014
  • We study parallel processing techniques for the R programming language of high performance computing technology. In this study, we used massively parallel computing system which has 25,408 cpu cores. We conducted a performance evaluation of a distributed memory system using MPI and of a the shared memory system using OpenMP. Our findings are summarized as follows. First, For some particular algorithms, parallel processing is about 150 times faster than serial processing in R. Second, the distributed memory system gets faster as the number of nodes increases while shared memory system is limited in the improvement of performance, due to the limit of the number of cpus in a single system.

원격 CAE를 위한 PC기반 전.후처리기 개발 (Development of a PC-based Pre- and Post-processor for Remote CAE)

  • 서영성;변철진;유승현;이재영;김현
    • 한국CDE학회논문집
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    • 제5권2호
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    • pp.113-121
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    • 2000
  • A compact pre- and post-processor that runs on PC has been developed for the purpose of remote CAE. This includes a linear-finite-element-analysis module for on-site analysis of simple and midium-sized structural problems and an interfacing module for remote analysis of more complex cases such as nonlinear and large-scale linear problems which are cpu-consuming to solve. The software was designed to provide convenient interfacing capability for the use of client-server-type analysis. In this paper, the interface module was specially designed to use ABAQUS on the supercomputer. As a benchmark for the remote CAE, a sheet-forming simulation was perfomed on a PC networked with the supercomputer.

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기상/기후 연구 및 예보 기관의 슈퍼컴퓨터 보유 역사와 현황 (The History and Current Status of the Supercomputers in Institutions for Research and Forecast of Weather/Climate)

  • 조민수
    • 대기
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    • 제16권2호
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    • pp.141-157
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    • 2006
  • A revolution in weather and climate forecasting is in progress. This has been made possible as a result of theoretical advances in our understanding of the predictability of weather and climate, and by the extraordinary developments in supercomputer technology. New problem areas have been discovered and different solutions have been found by the recent high performance computers whose performance has been increased rapidly. Such advances in the computational performance may change the strategy of development of numerical models and prediction methods. This paper discusses a brief history and current status of the supercomputers in institutions for research and forecast of weather/climate. The main purpose of this study is to provide the preliminary information about supercomputers such as architecture of system and processor. Such information would be useful for meteorologists to understand the features and the preference of supercomputers in each institution.

CPU 기술과 미래 반도체 산업 (I) (CPU Technology and Future Semiconductor Industry (I))

  • 박상기
    • 전자통신동향분석
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    • 제35권2호
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    • pp.89-103
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    • 2020
  • Knowledge of the technology, characteristics, and market trends of the latest CPUs used in smartphones, computers, and supercomputers and the research trends of leading US university experts gives an edge to policy-makers, business executives, large investors, etc. To this end, we describe three topics in detail at a level that can help educate the non-majors to the extent possible. Topic 1 comprises the design and manufacture of a CPU and the technology and trends of the smartphone SoC. Topic 2 comprises the technology and trends of the x86 CPU and supercomputer, and Topic 3 involves an optical network chip that has the potential to emerge as a major semiconductor chip. We also describe three techniques and experiments that can be used to implement the optical network chip.

CPU 기술과 미래 반도체 산업 (III) (CPU Technology and Future Semiconductor Industry (III))

  • 박상기
    • 전자통신동향분석
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    • 제35권2호
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    • pp.120-136
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    • 2020
  • Knowledge of the technology, characteristics, and market trends of the latest CPUs used in smartphones, computers, and supercomputers and the research trends of leading US university experts gives an edge to policy-makers, business executives, large investors, etc. To this end, we describe three topics in detail at a level that can help educate the non-majors to the extent possible. Topic 1 comprises the design and manufacture of a CPU and the technology and trends of the smartphone SoC. Topic 2 comprises the technology and trends of the x86 CPU and supercomputer, and Topic 3 involves an optical network chip that has the potential to emerge as a major semiconductor chip. We also describe three techniques and experiments that can be used to implement the optical network chip.

CPU 기술과 미래 반도체 산업 (II) (CPU Technology and Future Semiconductor Industry (II))

  • 박상기
    • 전자통신동향분석
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    • 제35권2호
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    • pp.104-119
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    • 2020
  • Knowledge of the technology, characteristics, and market trends of the latest CPUs used in smartphones, computers, and supercomputers and the research trends of leading US university experts gives an edge to policy-makers, business executives, large investors, etc. To this end, we describe three topics in detail at a level that can help educate the non-majors to the extent possible. Topic 1 comprises the design and manufacture of a CPU and the technology and trends of the smartphone SoC. Topic 2 comprises the technology and trends of the x86 CPU and supercomputer, and Topic 3 involves an optical network chip that has the potential to emerge as a major semiconductor chip. We also describe three techniques and experiments that can be used to implement the optical network chip.

Vector algorithm for layered reinforced concrete shell element stiffness matrix

  • Min, Chang Shik;Gupta, Ajaya Kumar
    • Structural Engineering and Mechanics
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    • 제3권2호
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    • pp.173-183
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    • 1995
  • A new vector algorithm is presented for computing the stiffness matrices of layered reinforced concrete shell elements. Each element stiffness matrix is represented in terms of three vector arrays of lengths 78, 96 and 36, respectively. One element stiffness matrix is calculated at a time without interruption in the vector calculations for the uncracked or cracked elements. It is shown that the present algorithm is 1.1 to 7.3 times more efficient then a previous algorithm developed by us on a Cray Y-MP supercomputer.

막에서 전하고분자의 동적 현상 II. 미시적 연구 (Dynamic Motion of Polyelectrolyte in a Composite Membrane: II. Molecular Study)

  • Park, Young;Lim, Hwa A.
    • 멤브레인
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    • 제4권2호
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    • pp.96-105
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    • 1994
  • 이 논문은 거대전하고분자의 막전달 현상을 위한 이론적 모델을 연구하는데 있다. 전기적 힘에 의한 전하고분자 물질의 형상은 빠르게 곧게 뻗으면서 진행되며, 곧게 뻗는 시간과 길이는 막 전달의 동적현상을 이해하는데 도움을 주고 있다. 빠르게 곧게 뻗을 때, 전하고분자의 두 끝이 전기힘 방향으로 동시에 끌리는 현상이 일어난다. 이같은 형식의 이해는 거대전하고분자의 막분리를 이해하는데 도움을 주고 있다.

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Study of Dark Matter at e+e- Collider using KISTI-5 Supercomputer

  • Park, Kihong;Cho, Kihyeon
    • International Journal of Contents
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    • 제17권3호
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    • pp.67-73
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    • 2021
  • Dark matter is barely known because it cannot be explained using the Standard Model. In addition, dark matter has not been detected yet. It is currently being explored through various ways. In this paper, we studied dark matter in an electron-positron collider using MadGraph5. The signal channel is e+e- → 𝜇+𝜇-A' where A' decays to dimuon. We studied the cross-section by increasing the center-of-mass energy. Central processing unit (CPU) time of simulation was compared with that using a local Linux machine and a KISTI-5 supercomputer (Knight Landing and Skylake). Furthermore, one or more cores were used for comparing CPU time among machines. Results of this study will enable the exploration of dark matter in electron-positron experiments. This study also serves as a reference for optimizing high-energy physics simulation toolkits.