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Harmonic Estimation and Forecasting in Sparsely Monitored Uncertain Power Systems

235,39 €*

Dieses Produkt erscheint am 1. November 2025

Produktnummer: 18043f9dd22eb4438b9d611a576bd441f1
Autor: Zhao, Yuqi
Themengebiete: ANN Artificial Neural Networks Data Prediction Harmonic State Estimation Machine Learning Power Quality Power System Uncertainties Power Systems Harmonics Probabilistic Modelling Renewable Energy Sources
Veröffentlichungsdatum: 01.11.2025
EAN: 9783031990472
Sprache: Englisch
Seitenzahl: 232
Produktart: Gebunden
Verlag: Springer International Publishing
Untertitel: Probabilistic and Machine Learning Approaches
Produktinformationen "Harmonic Estimation and Forecasting in Sparsely Monitored Uncertain Power Systems"
This book tackles the technical challenges of integrating renewable energy sources into power grids to reduce exposure to significant financial and operational risks. It does so by introducing advanced methods for harmonic estimation and forecasting in sparsely monitored and uncertain power networks, leveraging probabilistic and machine learning techniques.With a focus on practical applications, the book introduces a Monte-Carlo-based simulation framework to address operational randomness and uncertainties, along with the development of a Norton equivalent model of wind farms for probabilistic harmonic propagation studies. The author also presents cost-effective methods for harmonic estimation in non-radial distribution networks and proposes a sequential artificial-neural-network-based approach for probabilistic harmonic forecasting in transmission networks with limited harmonic measurements. By significantly reducing the reliance on extensive power-quality-monitoring installations, these methods provide robust, accurate, and reliable harmonic data and enable more effective and informed decision-making for future power system operations.Targeted at academic researchers, industrial engineers, and graduate students, this book matches theoretical advance with practical application. It supports the assessment of standard compliance and benchmarking, minimizes the need for power-quality-monitoring installations, accelerates the evaluation of harmonic propagation and mitigation strategies in uncertain, power-electronics-rich networks, and advances the forecasting of potential harmonic issues in future power systems.
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