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Development of an MPI for Power System Distributed Parallel Computing in Wide Area Network with P2P Technology

机译:用P2P技术开发电力系统MPI的电力系统分布式计算

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The analysis of modern power system becomes more computation intensive, and has to be performed in a dispersed IT infrastructure due to the inherently distributed topology of power system. Grid computing is potentially an ideal solution for electric power system and power network infrastructure also provides potential application field for grid computing because grid computing is most efficient in a large organization. This paper presents a new version of MPI (Message Passing Interface) based on P2P, WD-MPI, in order to exploit the maximum performance in a heterogeneous environment for power system distributed computing. The problems of traditional MPI and some versions of modified MPI to improve its performance on heterogeneous and wide area network are analyzed. The system structure is presented and the design of the system, including asynchronous iterative algorithm, task and resource partition, is presented. The power flow calculation problem of an IEEE 300 bus system is used to compare the performances of the proposed scheme and previous solutions. The test is performed in a grid environment built in campus, which can simulate the behavior of wide area network to some extent. The test results show that the P2P based WD-MPI can give better performance than that of MPICH, MPICH-G2 and Globus solution.
机译:现代电力系统的分析变得更加计算密集型,并且由于电力系统的固有分布式拓扑结构,必须在分散的IT基础设施中进行。电网计算可能是电力系统的理想解决方案,电网基础设施也为网格计算提供了潜在的应用领域,因为网格计算在大型组织中最有效。本文介绍了基于P2P,WD-MPI的新版本的MPI(消息传递接口),以利用用于电力系统的异构环境中的最大性能。分析了传统MPI和一些改进的MPI版本,以改善其在异构和广域网上的性能的问题。提出了系统结构,并呈现了系统的设计,包括异步迭代算法,任务和资源分区。 IEEE 300总线系统的电力流量计算问题用于比较所提出的方案和先前解决方案的性能。该测试是在校园内置的网格环境中进行的,可以在一定程度上模拟广域网的行为。测试结果表明,基于P2P的WD-MPI可以提供比MPICH,MPICH-G2和Globus解决方案更好的性能。

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