考虑特征值分布的小信号稳定性约束优化功率流

IF 5.7 1区 工程技术 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC Journal of Modern Power Systems and Clean Energy Pub Date : 2024-01-29 DOI:10.35833/MPCE.2023.000135
Zheng Huang;Kewen Wang;Yi Wang;Jing Han;Jun Liang
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引用次数: 0

摘要

在现有的小信号稳定性约束最优功率流(SSSC-OPF)算法中,小信号稳定性约束只考虑最右边的特征值或不满足给定阈值($\mathbf{e}.\mathbf{g}$.)、阻尼比阈值和特征值实部阈值的特征值。稳态(即工作点)变化对特征值的影响未被充分考虑。本文通过分析复平面上的特征值分布,形成了能充分反映特征值变化和系统动态性能要求的小信号稳定性约束。小信号稳定性约束被嵌入到发电重新安排的标准优化功率流模型中。建立了 SSSC-OPF 的同步求解公式,并采用准牛顿方法求解,同时根据约束特征值的稳定程度确定特征值约束对应的惩罚因子。为了提高计算速度,提出了优化过程中特征值计算的混合算法,包括特征值估计的变量选择和特征值计算的策略选择。所提算法的有效性在新英格兰 10 台机器 39 总线系统和修改后的 68 台机器 2395 总线实用系统上进行了测试和验证。
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Small-Signal Stability Constrained Optimal Power Flow Considering Eigenvalue Distribution
In the existing small-signal stability constrained optimal power flow (SSSC-OPF) algorithms, only the rightmost eigenvalue or eigenvalues that do not satisfy a given threshold, $\mathbf{e}.\mathbf{g}$ ., damping ratio threshold and real-part threshold of eigenvalue, are considered in the small-signal stability constraints. The effect of steady-state, i.e., operating point, changes on eigenvalues is not fully taken into account. In this paper, the small-signal stability constraint that can fully reflect the eigenvalue change and system dynamic performance requirement is formed by analyzing the eigenvalue distribution on the complex plane. The small-signal stability constraint is embedded into the standard optimal power flow model for generation rescheduling. The simultaneous solution formula of the SSSC-OPF is established and solved by the quasi-Newton approach, while penalty factors corresponding to the eigenvalue constraints are determined by the stabilization degree of constrained eigenvalues. To improve the computation speed, a hybrid algorithm for eigenvalue computation in the optimization process is proposed, which includes variable selection for eigenvalue estimation and strategy selection for eigenvalue computation. The effectiveness of the proposed algorithm is tested and validated on the New England 10-machine 39-bus system and a modified practical 68-machine 2395-bus system.
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来源期刊
Journal of Modern Power Systems and Clean Energy
Journal of Modern Power Systems and Clean Energy ENGINEERING, ELECTRICAL & ELECTRONIC-
CiteScore
12.30
自引率
14.30%
发文量
97
审稿时长
13 weeks
期刊介绍: Journal of Modern Power Systems and Clean Energy (MPCE), commencing from June, 2013, is a newly established, peer-reviewed and quarterly published journal in English. It is the first international power engineering journal originated in mainland China. MPCE publishes original papers, short letters and review articles in the field of modern power systems with focus on smart grid technology and renewable energy integration, etc.
期刊最新文献
Contents Contents Regional Power System Black Start with Run-of-River Hydropower Plant and Battery Energy Storage Power Flow Calculation for VSC-Based AC/DC Hybrid Systems Based on Fast and Flexible Holomorphic Embedding Machine Learning Based Uncertainty-Alleviating Operation Model for Distribution Systems with Energy Storage
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