基于广义动态因子模型和生成对抗网络的风电场景生成

IF 8.7 1区 工程技术 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC
IEEE Transactions on Power Systems Pub Date : 2026-03-01 Epub Date: 2025-09-29 DOI:10.1109/TPWRS.2025.3615610
Young-ho Cho;Hao Zhu;Junghyeop Im;Duehee Lee;Ross Baldick
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引用次数: 0

摘要

为了进行资源充足性研究,我们利用时空相关性、波形、边际和斜坡率分布、功率谱密度和统计特征等时空特征,综合了分布式风电场的多个长期风电情景。在场景中产生空间相关性需要设计邻近风电场的共同因子和远距离风电场的对立因子。广义动态因子模型(GDFM)可以通过交叉谱密度分析提取出共同因子,但不能很好地复制波形模式。GAN通过假样本鉴别器对样本进行验证,从而合成表征时间相关性的可信样本。为了结合GDFM和GAN的优势,我们使用GAN提供一个滤波器,从观测数据中提取具有时间信息的动态因子,然后我们将该滤波器应用于GDFM中,以表示可信波形的空间和频率相关性。结合GDFM-GAN方法的数值测试表明,在澳大利亚的综合风力发电方案中,与竞争替代方案相比,性能有所提高。与(i)根据实际动态滤波器的分布合成滤波器的GDFM和(ii)没有动态因素的直接合成GAN等替代方法相比,所提出的方法更好地再现了实际风电的统计特征。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Wind Power Scenario Generation Based on the Generalized Dynamic Factor Model and Generative Adversarial Network
For conducting resource adequacy studies, we synthesize multiple long-term wind power scenarios of distributed wind farms by using the spatio-temporal features: spatial and temporal correlation, waveforms, marginal and ramp-rate distributions, power spectral densities, and statistical characteristics. Generating the spatial correlation in scenarios requires designing common factors for neighboring wind farms and antithetical factors for distant wind farms. The generalized dynamic factor model (GDFM) can extract the common factors through cross spectral density analysis, but it cannot closely replicate waveform patterns. The GAN can synthesize plausible samples representing the temporal correlation by verifying samples through a fake sample discriminator. To combine the advantages of GDFM and GAN, we use the GAN to provide a filter that extracts dynamic factors with temporal information from the observation data, and we then apply this filter in the GDFM to represent both spatial and frequency correlations of plausible waveforms. Numerical tests on the combined GDFM–GAN approach demonstrate performance improvements over competing alternatives in synthesizing wind power scenarios from Australia. The proposed method better reproduces the statistical characteristics of actual wind power compared with alternatives such as (i) GDFM with filters synthesized from distributions of actual dynamic filters and (ii) GAN with direct synthesis without dynamic factors.
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来源期刊
IEEE Transactions on Power Systems
IEEE Transactions on Power Systems 工程技术-工程:电子与电气
CiteScore
15.80
自引率
7.60%
发文量
696
审稿时长
3 months
期刊介绍: The scope of IEEE Transactions on Power Systems covers the education, analysis, operation, planning, and economics of electric generation, transmission, and distribution systems for general industrial, commercial, public, and domestic consumption, including the interaction with multi-energy carriers. The focus of this transactions is the power system from a systems viewpoint instead of components of the system. It has five (5) key areas within its scope with several technical topics within each area. These areas are: (1) Power Engineering Education, (2) Power System Analysis, Computing, and Economics, (3) Power System Dynamic Performance, (4) Power System Operations, and (5) Power System Planning and Implementation.
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