• Title/Summary/Keyword: e-AIRS

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Building A Cyberinfrastructure Based Research-Education Linkage Environment (사이버인프라 기반의 연구.교육 융합환경의 구축방안)

  • Cho, Man-H.;Cho, Keum-W.;Kim, Jong-A.;Lee, Young-M.;Lee, Joing-S.;Kim, Kyu-J.
    • Journal of Korea Technology Innovation Society
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    • v.13 no.3
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    • pp.423-445
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    • 2010
  • This study purposes to suggest a next generation research and education environment which is possible by the linkage of two sectors based on cyberinfrastructure. It is to design a new research-education linkage system which can apply the results of R&D to the higher education in natural science and engineering areas. literatures were reviewed on new paradigms of R&D triggered by the advent of cyberinfrastrcuture. A couple of overseas and domestic cases of such paradigm were introduced. With the backgrounds of case studies and theoretical models, a new research-education linkage environment system was suggested. Specially e-AIRS system was introduced as an example of new model in Korea. In addition, some policy issues were discussed as related to the successful promotion of such programs.

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Functionality design of the e-Science workbench (e-Science 워크벤치 기능 설계)

  • Lee, June H.;Nam, Dukyun;Kim, Byungsang;Suh, Youngkyoon;Hwang, Soonwook
    • Proceedings of the Korea Contents Association Conference
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    • 2007.11a
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    • pp.259-264
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    • 2007
  • To efficiently utilize an e-Science application service which is built on a grid computing environment, it is vital to develop technologies for integrating each e-Science application services into a workflow and for executing the workflow on a cooperative environment. In this paper, we analyze the requirements of e-AIRS system, one of the e-Science environment of aerospace research community. From the requirement analysis, we propose the required functionality and the architecture of e-Science workbench for effective utilization of e-Science services on cooperative environment.

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A Comparison Environment of Aerospace e-Science Experiments (항공 우주 e-Science에서의 실험 비교 환경)

  • Cho, Jung-Hyun;Hong, Mi-Hyun;Cho, Hye-Kyung;Kim, Yoon-Hee;Kim, Chong-Am;Cho, Kum-Won
    • Proceedings of the Korean Information Science Society Conference
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    • 2007.06b
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    • pp.432-436
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    • 2007
  • e-AIRS(e-Science Aerospace Integrated Research System)는 항공 우주 분야의 e-Science[1]를 제공하여 복잡한 문제를 해결하고 협력적인 연구 지원하기 위해 사용자 기반의 통합적 비교 환경을 구축하였다. e-AIRS에서는 CFD(Computational Fluid Dynamics)[2] 시뮬레이션 서비스 및 원격 실험 서비스를 제공하고 이 서비스들에서 도출된 결과 데이터에 대해 비교, 분석할 수 있는 환경을 제공한다. 사용자가 시뮬레이션 데이터와 실험 데이터를 비교 하여 오차가 큰 케이스에 대해 계산하고자 할 때, 계산 범위와 그에 따른 환경 값을 설정하면, 자동적으로 서브 케이스를 생성하여 계산함으로써 사용자에게 한 번의 실험으로 다양한 결과를 분석할 수 있는 연구 환경을 제공한다. 또한 연구자간 비교, 협력 환경을 지원하기 위해 사용자간에 협업 환경을 구성하고 기존의 시각적 데이터 공유 환경을 보완하여 연구자간 데이터 공유가 가능한 회의 환경을 제공하였다.

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An ID-based entity-authentication and authenicated key exchange protocol with ECDSA (ECDSA를 적용한 ID 기반의 사용자 인증 및 키 교환 프로토콜)

  • 박영호;박호상;정수환
    • Journal of the Korea Institute of Information Security & Cryptology
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    • v.12 no.1
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    • pp.3-10
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    • 2002
  • This paper proposes an ID-based entity-aunthentication and authenticated key exchange protocol with ECC via two-pass communications between two parties who airs registered to the trusted third-party KC in advance. The proposed protocol developed by applying ECDSA and Diffie-Hellman key exchange scheme to the ID-based key distribution scheme over ECC proposed by H. Sakazaki, E. Okamoto and M. Mambo(SOM scheme). The security of this protocol is based on the Elliptic Curve Discrete Logarithm Problem(ECDLP) and the Elliptic Curve Diffie-Hellman Problem(ECDHP). It is strong against unknown key share attack and it provides the perfect forward secrecy, which makes up for the weakness in SOM scheme,

Analytical examples of volatile amines in ambient airs (공기 중 저급아민류의 분석과 측정 사례)

  • Yu, Mee-Seon;Yang, Sung-Bong
    • Analytical Science and Technology
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    • v.18 no.3
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    • pp.216-223
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    • 2005
  • In this study, several kinds of volatile amines in ambiant air were collected and their concentrations were expected from the calibration curves prepared by standard solutions of 7 amines by the official measuring method prescribed in Japanese Offensive Odor Law. The obtained calibration curves showed a good linearity and the detection limit of trimethyl amine was found to be about 0.033 ppb (0.040 ng) in case of 50 liters air. It means that trimethyl amine could be detected with the concentration of lower than its permitting level at the border line of companies. As typical examples of measuring amines in air, results of investigation of two sewage works and one rendering plant around the capital area indicated that 4 kinds of amines, i.e. methyl amine, dimethyl amine, trimethyl amine and isopropyl amine were detectable and concentrations of trimethyl amine at the primary sedimentation pond and sludge dewatering building of the sewage plant A showed 9.07 ppb and 7.79 ppb respectively, being over the concentration of odor strength 2.5, And the aeration tank, excrement input facility and indoor of maintenance room of excrement process building in the sewage plant B showed 70.0 ppb of dimethyl amine and 2.44 ppb of trimethyl amine.