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Power System Probabilistic and Security Analysis on Commodity High Performance Computing Systems

机译:商品高性能计算系统的电力系统概率与安全性分析

摘要

Large scale integration of stochastic energy resources in power systems requires probabilistic analysis approaches for comprehensive system analysis. The large-varying grid condition on the aging and stressed power system infrastructures also requires merging of offline security analyses into online operation. Meanwhile in computing, the recent rapid hardware performance growth comes from the more and more complicated architecture. Fully utilizing the computing power for specific applications becomes very difficult. Given the challenges and opportunities in both the power system and the computing fields, this paper presents the unique commodity high performance computing system solutions to the following fundamental tools for power system probabilistic and security analysis: 1) a high performance Monte Carlo simulation (MCS) based distribution probabilistic load flow solver for real-time distribution feeder probabilistic solutions. 2) A high performance MCS based transmission probabilistic load flow solver for transmission grid probabilistic analysis. 3) A SIMD accelerated AC contingency calculation solver based on Woodbury matrix identity on multi-core CPUs. By aggressive algorithm level and computer architecture level performance optimizations including optimized data structures, optimization for superscalar out-of-order execution, SIMDization, and multi-core scheduling, our software fully utilizes the modern commodity computing systems, makes the critical and computational intensive power system probabilistic and security analysis problems solvable in real-time on commodity computing systems.
机译:电力系统中随机能源的大规模集成需要采用概率分析方法来进行全面的系统分析。电网老化和受压的电力系统基础设施的大范围电网条件还要求将离线安全分析合并到在线操作中。同时,在计算中,最近硬件性能的快速增长来自于越来越复杂的体系结构。充分利用特定应用的计算能力变得非常困难。鉴于电力系统和计算领域的挑战与机遇,本文针对以下用于电力系统概率和安全性分析的基本工具,提出了独特的商品高性能计算系统解决方案:1)高性能蒙特卡洛模拟(MCS)基于分布的概率潮流求解器,用于实时分布馈线概率解决方案。 2)基于高性能MCS的传输概率潮流求解器,用于传输网格概率分析。 3)在多核CPU上基于伍德伯里矩阵标识的SIMD加速AC应急计算求解器。通过积极的算法级别和计算机体系结构级别的性能优化,包括优化的数据结构,针对超标量无序执行的优化,SIMD化和多核调度,我们的软件充分利用了现代商品计算系统,从而发挥了关键和计算密集型功能可在商品计算系统上实时解决的系统概率和安全性分析问题。

著录项

  • 作者

    Cui Tao; Franchetti Franz;

  • 作者单位
  • 年度 2013
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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