• 제목/요약/키워드: Upstream Backup

검색결과 3건 처리시간 0.018초

분산 공간 데이터 스트림 시스템에서 연산 처리율 기반의 적응적 업스트림 백업 기법 (Adaptive Upstream Backup Scheme based on Throughput Rate in Distributed Spatial Data Stream System)

  • 정원일
    • 한국산학기술학회논문지
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    • 제14권10호
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    • pp.5156-5161
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    • 2013
  • 분산 공간 데이터 스트림 처리에서는 분산 노드의 활용도를 높이고 고장이 발생한 경우 신속하게 시스템을 복구하기 위해 하위 노드에서 처리된 튜플에 대해 상위 노드로 데이터를 백업한다. 그러나 데이터의 유입량이 증가하고 노드의 연산 결과를 다수의 하위 노드들과 공유할 때 튜플 처리가 지연되면 상위 노드의 삭제 지연으로 인해 백업 데이터의 손실을 야기할 수 있다. 본 논문에서는 노드들의 데이터 유입량과 하위 노드의 연산 처리율을 분석하고 적응적 업스트림 백업 방법을 적용하여 노드의 평균 부하율을 감소시키고, 노드 연산 결과의 공유에 따른 데이터 손실을 최소화하는 방법을 제안한다. 그리고 실험에서는 제안 기법을 통해 데이터 손실을 방지하고, 노드 모니터링에 소요되는 CPU 사용률을 평균 20% 감소시키는 결과를 나타낸다.

조사후시험시설에서의 핫셀 배기포집시스템의 성능평가 (Performance of the Exhaust Filtration System of Hot Cell at PIEF)

  • 황용화
    • 설비공학논문집
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    • 제23권12호
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    • pp.799-804
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    • 2011
  • Radioactivity of high concentrations have existed in the handling nuclear materials in hot cell of PIEF(Post Irradiation Examination Facility). The exhaust filtration system was enabled to process cylindrical filters by using a manipulator in the hot cell. By establishing a double filtration system with two filters, backup protection against leakage or failure of the first is provided by the second filter. Additionally, this a arrangement is arrange intended to increase the total filtration efficiency. The result of the pressure drop changing in the air flow of the cylindrical and HEPA filters is observed by a curved line. A filtering efficiency of more than 99.99% to $0.3{\mu}m$ particle appears in the upstream and downstream during the efficiency test on the HEPA filters. The V-pleats type had a lower pressure drop than the separator type. There was no damage during usage and was found to be suitable with high capacity of air volume. Therefore, by carrying out performance tests of the exhaust filtration system, efficiency and safety can be achieved.

Filter- and Denuder-Based Organic Carbon Correction for Positive Sampling Artifacts

  • Hwang, InJo;Na, Kwangsam
    • Asian Journal of Atmospheric Environment
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    • 제11권2호
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    • pp.107-113
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    • 2017
  • This study describes (1) the impact of positive sampling artifacts caused by not only a filter-based sampling, but also a denuder-based sampling in the determination of particle-phase organic carbon (POC), (2) the effect of sample flow rate on positive artifacts, and (3) an optimum flow rate that provides a minimized negative sampling artifact for the denuder-based sampling method. To achieve the goals of this study, four different sampling media combinations were employed: (1) Quartz filter-alone (Q-alone), (2) quartz filter behind quartz-fiber filter (QBQ), (3) quartz filter and quartz filter behind Teflon filter (Q-QBT), and (4) quartz filter behind carbon-based denuder (Denuder-Q). The measurement of ambient POC was carried out in an urban area. In addition, to determine gas-phase OC (GOC) removal efficiency of the denuder, a Teflon filter and a quartz filter were deployed upstream and downstream of the denuder, respectively with varying sample flow rates: 5, 10, 20, and 30 LPM. It was found that Q-alone sampling configuration showed a higher POC than QBQ, Q-QBT, and Denuder-Q by 12%, 28%, and 23%, respectively at a sample flow rate of 20 LPM due to no correction for positive artifact caused by adsorption of GOC onto the filter. A lower quantity of GOC was collected from the backup quartz filter on QBQ than that from Q-QBT. This was because GOC was not in equilibrium with that adsorbed on the front quartz filter of QBQ during the sampling period. It is observed that the loss of particle number and mass across the denuder increases with decreasing sample flow rate. The contribution o f positive arti facts to POC decreased with increasing sample flow rate, showing 29%, 25%, and 22% for 10, 20, and 30 LPM, respectively. The 20 LPM turns out to be the optimum sample flow rate for both filter and denuder-based POC sampling.