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A grid computing based approach for the power system dynamic security assessment

机译:基于网格计算的电力系统动态安全评估方法

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This paper addresses the problem of parallel dynamic security assessment applications from static homogeneous cluster environment to dynamic heterogeneous grid environment. Functional parallelism and data parallelism are supported by each of the message passing interface model and TCP/IP model. To consider the differences in heterogeneous computing resources and complexity of large-scale power system communities, a kernel-based multilevel algorithm is proposed for network partitioning. Since the bottleneck in distributed computation is low speed network communication, a bi-level latency exploitation technique is introduced for numerically solving system differential equations. The proposed grid-based implementation includes the core simulation engine, grid computing middleware, a Python interface and Python front-end utilities. Tests for a 39-bus network, a 4000-bus network and a 10,000-bus network are reported, and the results of these experiments demonstrate that the proposed scheme is able to execute the distributed simulations on computational grid infrastructure and provide efficient parallelism.
机译:本文解决了从静态同构集群环境到动态异构网格环境的并行动态安全评估应用程序的问题。消息传递接口模型和TCP / IP模型均支持功能并行性和数据并行性。考虑到异构计算资源的差异和大规模电力系统社区的复杂性,提出了一种基于内核的多级算法进行网络划分。由于分布式计算的瓶颈是低速网络通信,因此引入了双层延迟开发技术来数值求解系统微分方程。提出的基于网格的实现包括核心仿真引擎,网格计算中间件,Python接口和Python前端实用程序。报告了对39总线网络,4000总线网络和10,000总线网络的测试,这些实验的结果表明,该方案能够在计算网格基础设施上执行分布式仿真并提供有效的并行性。

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