黄耿业, 邵振国, 黄圆皓, 陈飞雄. 仿射型区间潮流算法应用与展望[J]. 电网技术, 2021, 45(7): 2675-2682. DOI: 10.13335/j.1000-3673.pst.2020.0501
引用本文: 黄耿业, 邵振国, 黄圆皓, 陈飞雄. 仿射型区间潮流算法应用与展望[J]. 电网技术, 2021, 45(7): 2675-2682. DOI: 10.13335/j.1000-3673.pst.2020.0501
HUANG Gengye, SHAO Zhenguo, HUANG Yuanhao, CHEN Feixiong. Application and Prospect of Interval Power Flow Algorithm Based on Affine Arithmetic[J]. Power System Technology, 2021, 45(7): 2675-2682. DOI: 10.13335/j.1000-3673.pst.2020.0501
Citation: HUANG Gengye, SHAO Zhenguo, HUANG Yuanhao, CHEN Feixiong. Application and Prospect of Interval Power Flow Algorithm Based on Affine Arithmetic[J]. Power System Technology, 2021, 45(7): 2675-2682. DOI: 10.13335/j.1000-3673.pst.2020.0501

仿射型区间潮流算法应用与展望

Application and Prospect of Interval Power Flow Algorithm Based on Affine Arithmetic

  • 摘要: 可再生能源的大规模开发和并网,给电力系统带来了极大的不确定性,增加了电力系统分析的复杂性。仿射算术作为区间算术的一种扩展,能够考虑不确定因素之间的相互影响,对于分析电力系统不确定性具有重要意义。对比了现有仿射型区间潮流算法的差异,分析了各自特点及其应用现状。首先整理与分析了目前采用的仿射算术,总结其保守性的主要来源和特点;将仿射型区间潮流分成仿射迭代类和仿射优化类潮流,并分别对这两类潮流算法进行对比分析;而后分析了目前仿射型区间潮流算法的应用现状;最后指出了仿射型区间潮流亟待解决的关键问题及未来的研究方向。

     

    Abstract: The large-scale development and integration of renewable energy has brought great uncertainty to the power system and increased the complexity of power system analysis. As an extension of interval arithmetic, affine arithmetic is of great significance for the uncertainty analysis of the power system by considering the interactions between the uncertain factors. This paper compares the differences between the current affine arithmetic-based power flow algorithms, and analyzes their characteristics and applications. Firstly, the affine arithmetic is reviewed and analyzed, and the main sources and characteristics of its conservatism are summarized. The affine arithmetic-based power flow algorithms are divided into the affine iterative algorithm and the affine optimization algorithm, and the two types of the common algorithms are compared and analyzed. Then, the applications of the interval power flow algorithm based on the affine arithmetic are analyzed. Finally, the problems and research directions of the affine flow in the future are pointed out.

     

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