• Title/Summary/Keyword: paralle -complex

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Characteristics of Peach Vinegar by Parallel Complex Fermentation (복숭아 식초의 병행복발효 특성)

  • 조재욱;김임수;김미경;이윤경;김순동
    • Food Science and Preservation
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    • v.7 no.1
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    • pp.89-93
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    • 2000
  • The study was conducted to investigate the characteristics of peach vinegar by parallel-complex fermentations. The vinegars prepared by using Changbnag-Chosang and Yumung peach cultivars added with 7, 10, and 13% sugaring concentrations were examined. The rate of increase in alcohol degree and titratable acidity, and that of decrease in soluble solids showed higher at Yumyung peach than at Changbang-chosang. Alcohol and acetic acid fermentation by paralle-complex fermentation were performed better in Yumyung peach than Changbang -chosang. but the fermentation of Yumyung showed active alcohol fermentation in the early stage, and active acetic acetic acid fermentation in the late stage. Quality of the vinegar prepared with Yumyung peach was better than that of Changbang-chosang, which were evaluated by acetic acid contents , peach taste and odor in the vinegar, and overall taste. The fermentation was accelerated with an increase in sugaring , concentrating but overall taste was best in 10 % sugaring.

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Micro Programmable Sequential Controller Design of a Sequential Logic System With Parallel Sequence (병렬 Sequence를 갖는 순서논리 시스템의 Microprogrammable Sequential Controller의 설계)

  • 유창근;우광준
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.13 no.6
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    • pp.370-479
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    • 1988
  • This paper presents a microprogrammable sequential controller which realizes the sequential logic system with parallel sequences described by a GRAFCET. The proposed controller improves speed, flexibility, programming ease and the efficiency of controlled system by paralle sequencing capability. It is especially designed for complex high speed sequential contollers requiring large I/O capabilities, such as industrial process controller or power electronic conversion controller.

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Micro Programmable Sequential Controller Design of a Sequential Logic System With Parallel Sequence (병렬 Sequence를 갖는 순서논리 시스템의 Microprogrammable Sequential Controller의 설계)

  • RHU, Chang Keun;WOO, Kwang Joon
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.13 no.6
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    • pp.470-470
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    • 1988
  • This paper presents a microprogrammable sequential controller which realizes the sequential logic system with parallel sequences described by a GRAFCET. The proposed controller improves speed, flexibility, programming ease and the efficiency of controlled system by paralle sequencing capability. It is especially designed for complex high speed sequential contollers requiring large I/O capabilities, such as industrial process controller or power electronic conversion controller.

A framework for parallel processing in multiblock flow computations (다중블록 유동해석에서 병렬처리를 위한 시스템의 구조)

  • Park, Sang-Geun;Lee, Geon-U
    • Transactions of the Korean Society of Mechanical Engineers B
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    • v.21 no.8
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    • pp.1024-1033
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    • 1997
  • The past several years have witnessed an ever-increasing acceptance and adoption of parallel processing, both for high performance scientific computing as well as for more general purpose applications. Furthermore with increasing needs to perform the complex flow calculations in an efficient manner, the use of the message passing model on distributed networks has emerged as an important alternative to the expensive supercomputers. This work attempts to provide a generic framework to enable the parallelization of all CFD-related works using the master-slave model. This framework consists of (1) input geometry, (2) domain decomposition, (3) grid generation, (4) flow computations, (5) flow visualization, and (6) output display as the sequential components, but performs computations for (2) to (5) in parallel on the workstation clustering. The flow computations are parallized by having multiple copies of the flow-code to solve a PDE on different spatial regions on different processors, while their flow data are exchanged across the region boundaries, and the solution is time-stepped. The Parallel Virtual Machine (PVM) is used for distributed communication in this work.