• 제목/요약/키워드: Parallel Simulation

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효율적인 유체 시뮬레이션을 위한 투영 단계에서의 멀티 코어 프로세서와 그래픽 프로세서의 병렬처리 (Parallel Processing of Multi-Core Processor and GPUs in Projection Step for Efficient Fluid Simulation)

  • 김선태;정휘룡;홍정모
    • 한국콘텐츠학회논문지
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    • 제13권6호
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    • pp.48-54
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    • 2013
  • 최근 영화나 CF등에 사용되는 컴퓨터 그래픽스(Computer Graphics, 이하 CG)분야의 유체 시뮬레이션에서는 CPU와 GPU를 혼합하여 사용하는 기술들이 소개되고 있다. 본 논문에서는 유체 시뮬레이션 수행을 위한 투영 단계에서 멀티쓰레드를 이용하여 기존의 CPU와 GPU 간의 작업을 순차적으로 수행하던 방식을 개선하여 CPU와 GPU 간의 작업을 병렬처리 방법을 제시하였다. 제시된 방법을 통해 많은 계산량을 필요로 하는 유체시뮬레이션의 효율성을 높일 수 있었다.

Fast Circuit Simulation Based on Parallel-Distributed LIM using Cloud Computing System

  • Inoue, Yuta;Sekine, Tadatoshi;Hasegawa, Takahiro;Asai, Hideki
    • JSTS:Journal of Semiconductor Technology and Science
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    • 제10권1호
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    • pp.49-54
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    • 2010
  • This paper describes a fast circuit simulation technique using the latency insertion method (LIM) with a parallel and distributed leapfrog algorithm. The numerical simulation results on the PC cluster system that uses the cloud computing system are shown. As a result, it is confirmed that our method is very useful and practical.

Two-Step Eulerian 기법에 기반 한 충돌 해석의 병렬처리 및 병렬효율 평가 (Parallel Procedure and Evaluation of Parallel Performance of Impact Simulation Based on Two-Step Eulerian Scheme)

  • 김승조;이민형;백승훈
    • 대한기계학회논문집A
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    • 제30권10호
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    • pp.1320-1327
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    • 2006
  • Parallel procedure and performance of two-step Eulerian code have not been reported sufficiently yet even though it was developed and utilized widely in the impact simulation. In this study, parallel strategy of two-step Eulerian code was proposed and described in detail. The performance was evaluated in the self-made linux cluster computer. Compared with commercial code, a relatively good performance is achieved. Through the performance evaluation of each computation stage, remap is turned out to be the most time consuming part among the other part such as FE processing, communication, time marching etc.

Taylor-Galerkin/level-set 방법을 이용한 자유 표면의 병렬 유한 요소 해석 (Parallel finite element simulation of free surface flows using Taylor-Galerkin/level-set method)

  • 안영규;최형권;조명환;유정열
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2008년도 추계학술대회B
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    • pp.2558-2561
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    • 2008
  • In the present study, a parallel Taylor-Galerkin/level set based two-phase flow code was developed using finite element discretization and domain decomposition method based on MPI (Message Passing Interface). The proposed method can be utilized for the analysis of a large scale free surface problem in a complex geometry due to the feature of FEM and domain decomposition method. Four-step fractional step method was used for the solution of the incompressible Navier-Stokes equations and Taylor-Galerkin method was adopted for the discretization of hyperbolic type redistancing and advection equations. A Parallel ILU(0) type preconditioner was chosen to accelerate the convergence of a conjugate gradient type iterative solvers. From the present parallel numerical experiments, it has been shown that the proposed method is applicable to the simulation of large scale free surface flows.

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고장시뮬레이션의 병렬화 알고리듬에 관한 연구 (Study on parallel algorithmfor falult simulation)

  • 송오영
    • 한국통신학회논문지
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    • 제21권11호
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    • pp.2966-2977
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    • 1996
  • As design of very large circuits is made possible by rapid development of VLSI technologies, efficient fault simulation is needed. Ingeneral, fault simulation requires many computer resources. As general-purpose multiprocessors become more common and affordable, these seem to be an attractive and effective alternative for fault simulation. Efficient fault simulation of synchronous sequential circuits has been reported to be attainably by using a linear iterative array model for such a circuit, and combining parallel fault simulation with russogate fault simulation. Such fault simulation algorithm is parallelized on a general-purpose multiprocessor with shard memory for acceleration of fault simulation. Through the experimenal study, the effect of the number of processors on speed-up of simulation, processor utilization, and the effect of multiprocessor hardware on simulation performance are studied. Some results for experiments with benchmark circuits are shown.

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다수대의 해상크레인 병렬 운용을 위한 리프팅 하중 Factor 적용 기준 마련 및 시뮬레이션을 통한 검증 (Guideline of Weight Factor for Lifting Operation by Parallel Connected Floating Cranes and Verification using Simulation)

  • 황진호;김윤호;하수호;서정길;이찬영;이규열;박광필;차주환
    • 대한조선학회 특별논문집
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    • 대한조선학회 2009년도 특별논문집
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    • pp.107-114
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    • 2009
  • In the recent large block are used to build the ship to improve productivity. For this reason, two or more floating cranes that are connected in parallel is the trend. Typically, when working with floating crane load safety factor is considered. Even in the parallel operation, load safety factor is calculated similar to working alone. For this reason, operations do not guarantee the reliability or excessive safety factor applied. Therefore, the subdivided cases for calculating the safety factor are defined when parallel connected floating cranes are operated. Based on those cases, the operation standard is made about procedure using parallel connected floating cranes. And to verify this, dynamics simulation was performed for verification using the dynamics simulation program.

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직렬입력-병렬출력 연결된 2-스위치 포워드 컨버터에 대한 이산 시간 영옌 고속 시뮬레이션 (A Fast Discrete-Time-Domain Simulation for the Input- Series -Output-Parallel Connected 2-Switch Forward Converter)

  • 김만고
    • 전력전자학회:학술대회논문집
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    • 전력전자학회 2002년도 전력전자학술대회 논문집
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    • pp.533-537
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    • 2002
  • A fast time domain modeling and simulation is performed for the input-series-output-parallel connected 2-switch forward converter Steady-state and large-signal transient responses due to a step load change are simulated. The simulation results are verified through experiments.

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Dynamic simulation of squeezing flow of ER fluids using parallel processing

  • Kim, Do-Hoon;Chu, Sang-Hyon;Ahn, Kyung-Hyun;Lee, Seung-Jong
    • Korea-Australia Rheology Journal
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    • 제11권3호
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    • pp.233-240
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    • 1999
  • In order to understand the flow behavior of Electrorheological (ER) fluid, dynamic simulation has been intensively performed for the last decade. When the shear flow is applied, it is easy to carry out the simulation with relatively small number of particles because of the periodic boundary condition. For the squeezing flow, however, it is not easy to apply the periodic boundary condition, and the number of particles needs to be increased to simulate the ER system more realistically. For this reason, the simulation of ER fluid under squeezing flow has been mostly performed with some representative chains or with the approximation that severely restricts the flow geometry to reduce the computational load. In this study, Message Passing Interface (MPI), which is one of the most widely-used parallel processing techniques, has been employed in a dynamic simulation of ER fluid under squeezing flow. As the number of particles used in the simulation could be increased significantly, full domain between the electrodes has been covered. The numerical treatment or the approximation used to reduce the computational load has been evaluated for its validity, and was found to be quite effective. As the number of particles is increased, the fluctuation of the normal stress becomes diminished and the prediction in general was found to be qualitatively In good agreement with the experimental results.

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도시철도역사에서 화재유동에 대한 병렬계산방법연구 (The development of parallel computation method for the fire-driven-flow in the subway station)

  • 장용준;이창현;김학범;박원희
    • 한국철도학회:학술대회논문집
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    • 한국철도학회 2008년도 춘계학술대회 논문집
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    • pp.1809-1815
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    • 2008
  • 본 연구는 병렬처리기법을 이용하여 지하역사 화재유동을 시뮬레이션 하였다. 화재해석 프로그램으로는 LES(Large Eddy Simulation)화재해석 프로그램 중 하나인 FDS(Fire Dynamics Simulation)를 사용하여 연구를 진행하였으며, 각 Node당 3.0Ghz_2set이 탑재된 6-node parallel Cluster장비를 사용하여 병렬계산을 수행하였다. 시뮬레이션 모델은 광주 금난로 4가 지하역사를 대상으로 하였으며, 총 시뮬레이션 시간은 600s로 하였다. 먼저 Single-CPU와 Multi-CPU를 이용한 병렬계산과의 결과 비교를 위하여 전체역사를 1-Mesh와 8-Mesh로 나누어 각각 Single-CPU계산과 Multi-CPU를 이용하여 계산결과를 비교분석 하였으며, Single-CPU에서 처리가 불가능한 격자수($15{\times}10^6$)를 가지고 승강장 중앙에서의 화재와 객차 내에서의 화재유동분석 하였다. 연구결과 Single-CPU 해석과 Multi-CPU를 이용한 병렬계산에 있어서, 해석결과의 차이는 거의 없는 것으로 나타났다. 또한 계산시간의 비교에서도 14개의 Mesh를 가지고 약 300만개의 격자를 사용한 경우에 있어서 2CPU(4core)와 7CPU(14core)의 계산시간은 1CPU에 비하여 각각, 2배, 5배의 차이를 보였다. 병렬처리기법의 도입으로 Single-CPU의 한계를 극복하여 보다 빠르고 정확한 결과값을 얻을 수 있을 것으로 기대된다. 향후 병렬처리기법연구에 있어서 계산효율성 증대를 위한 연구가 계속적으로 진행되어야 할 것이다.

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