• Title/Summary/Keyword: Performability

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Generation Expansion Planning Model Supporting Diverse Environmental Policies for Reduction of Greenhouse Gases

  • Lee, Jeong-In;Lee, Il-Woo;Kim, Bal-Ho
    • ETRI Journal
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    • v.37 no.2
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    • pp.295-305
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    • 2015
  • The purpose of this paper is to a develop model for generation expansion planning that can support diverse environmental policies for the reduction of greenhouse gases (GHGs) of South Korea. South Korea is required to reduce its GHG emissions by 30% from the BAU level by 2020. The Wien Automatic System Planning Package currently used in South Korea has limitations in terms of the application of renewable energy policies and GHG targets; this paper proposes the use of an equipment planning model named generation and transmission expansion program, which has been developed to resolve such limitations. For verification of the model, a case study on the 6th Basic Plan of Long-Term Electricity Supply and Demand has been conducted. The results show that for the year 2020 South Korea's annual GHG emissions will be 36.6% more than the GHG Target Management System (GHG TMS) target set for the same year (30%). To achieve the GHG TMS target, the costs involved amount to about 72 trillion KRW (70 billion USD). Consequently, the South Korean government needs to review the performability of this target.

Analysis of Available Performance Satisfying Waiting Time Deadline for (n, k)-way Systems (대기시간 데드라인 조건을 고려한(n, k)-way 시스템의 가용 성능 분석)

  • 박기진;김성수
    • Journal of KIISE:Computer Systems and Theory
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    • v.30 no.9
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    • pp.445-453
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    • 2003
  • As cluster systems used for high performance computing consist of large number of running servers, one has to solve the low availability problems occurred by the high chance of the server failures. To handle the problems, it is necessary to have the precise definition of available performance of cluster systems that represents availability and performability of the systems simultaneously. Previous research results that mention availability issues lack for concerning system performance such as waiting time and response time in their availability definition. In this paper, we propose a new availability metric for (n, k)-way cluster systems which compose of n primary servers and k backup servers. With the metric, the change of system performance according to arrival rates is captured and the waiting time of a request can be kept below to a certain level. Using various system operating parameters, we calculate availability and downtime of cluster systems along with waiting tine deadline.