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Advanced control and optimization pa...
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Kamal, Tariq.
Advanced control and optimization paradigms for wind energy systems
紀錄類型:
書目-電子資源 : Monograph/item
正題名/作者:
Advanced control and optimization paradigms for wind energy systemsedited by Radu-Emil Precup, Tariq Kamal, Syed Zulqadar Hassan.
其他作者:
Precup, Radu-Emil.
出版者:
Singapore :Springer Singapore :2019.
面頁冊數:
xv, 257 p. :ill. (some col.), digital ;24 cm.
Contained By:
Springer eBooks
標題:
Wind power.
電子資源:
https://doi.org/10.1007/978-981-13-5995-8
ISBN:
9789811359958$q(electronic bk.)
Advanced control and optimization paradigms for wind energy systems
Advanced control and optimization paradigms for wind energy systems
[electronic resource] /edited by Radu-Emil Precup, Tariq Kamal, Syed Zulqadar Hassan. - Singapore :Springer Singapore :2019. - xv, 257 p. :ill. (some col.), digital ;24 cm. - Power systems,1612-1287. - Power systems..
Nonlinear Modeling, Analysis and Simulation of Wind Turbine Control System With and Without Pitch Control as in Industry -- Distributed Cooperative Control of Wind Farms with On-site Battery Energy Storage Systems -- Sensitivity Analysis of Frequency Regulation Parameters in Power Systems with Wind Generation -- Wind Turbines Integration into Power Systems: Advanced Control Strategy for Harmonics Mitigation -- Power Conversion and Predictive Control of Wind Energy Conversion Systems -- Adaptive Guaranteed Performance Control of Wind Energy Systems -- Machine Learning and Meta-heuristic Algorithms For Renewable Energy: A Systematic Review -- Design of a supervisory control system based on fuzzy logic for a hybrid system comprising wind power, battery and ultracapacitor energy storage system -- Neural-based P-Q Decoupled Control for Doubly Fed Induction Generator in Wind Generation System -- An Indirect Adaptive Control Paradigm for Wind Generation Systems.
This book presents advanced studies on the conversion efficiency, mechanical reliability, and the quality of power related to wind energy systems. The main concern regarding such systems is reconciling the highly intermittent nature of the primary source (wind speed) with the demand for high-quality electrical energy and system stability. This means that wind energy conversion within the standard parameters imposed by the energy market and power industry is unachievable without optimization and control. The book discusses the rapid growth of control and optimization paradigms and applies them to wind energy systems: new controllers, new computational approaches, new applications, new algorithms, and new obstacles.
ISBN: 9789811359958$q(electronic bk.)
Standard No.: 10.1007/978-981-13-5995-8doiSubjects--Topical Terms:
238374
Wind power.
LC Class. No.: TJ820 / .A38 2019
Dewey Class. No.: 621.312136
Advanced control and optimization paradigms for wind energy systems
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Nonlinear Modeling, Analysis and Simulation of Wind Turbine Control System With and Without Pitch Control as in Industry -- Distributed Cooperative Control of Wind Farms with On-site Battery Energy Storage Systems -- Sensitivity Analysis of Frequency Regulation Parameters in Power Systems with Wind Generation -- Wind Turbines Integration into Power Systems: Advanced Control Strategy for Harmonics Mitigation -- Power Conversion and Predictive Control of Wind Energy Conversion Systems -- Adaptive Guaranteed Performance Control of Wind Energy Systems -- Machine Learning and Meta-heuristic Algorithms For Renewable Energy: A Systematic Review -- Design of a supervisory control system based on fuzzy logic for a hybrid system comprising wind power, battery and ultracapacitor energy storage system -- Neural-based P-Q Decoupled Control for Doubly Fed Induction Generator in Wind Generation System -- An Indirect Adaptive Control Paradigm for Wind Generation Systems.
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This book presents advanced studies on the conversion efficiency, mechanical reliability, and the quality of power related to wind energy systems. The main concern regarding such systems is reconciling the highly intermittent nature of the primary source (wind speed) with the demand for high-quality electrical energy and system stability. This means that wind energy conversion within the standard parameters imposed by the energy market and power industry is unachievable without optimization and control. The book discusses the rapid growth of control and optimization paradigms and applies them to wind energy systems: new controllers, new computational approaches, new applications, new algorithms, and new obstacles.
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