JOURNAL ARTICLE

Ultra-Short-Term Wind Farm Power Prediction Considering Correlation of Wind Power Fluctuation

Chuandong LiMinghui ZhangYi ZhangZiyuan YiHuaqing Niu

Year: 2024 Journal:   Sensors Vol: 24 (20)Pages: 6538-6538   Publisher: Multidisciplinary Digital Publishing Institute

Abstract

Accurate ultra-short-term power prediction for wind farms is challenging under rapid wind speed fluctuations, complicating production planning and power balancing. This paper proposes a new method considering spatial and temporal correlations of wind fluctuations among adjacent wind farms. The method first calculates the time difference between power fluctuations based on wind speed, direction, and relative positions, determining the prior information period. The variational Bayesian model is then used to extract implicit relationships between power fluctuations of adjacent wind farms, enabling power prediction during the prior information period. Finally, the non-prior information period is predicted to complete the ultra-short-term power prediction. Using measured data from three wind farms in Fujian Province, compared to other models, the method demonstrates improved accuracy by effectively leveraging the power fluctuation characteristics of adjacent wind farms, and it has a certain amount of generalizability.

Keywords:
Wind power Term (time) Wind speed Environmental science Meteorology Generalizability theory Power (physics) Wind power forecasting Electric power system Computer science Statistics Mathematics Engineering Electrical engineering Geography Physics

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Topics

Energy Load and Power Forecasting
Physical Sciences →  Engineering →  Electrical and Electronic Engineering
Wind Energy Research and Development
Physical Sciences →  Engineering →  Aerospace Engineering
Solar Radiation and Photovoltaics
Physical Sciences →  Computer Science →  Artificial Intelligence
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