Control Techniques For Lcl Type Grid Connected Inverters


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Control Techniques for LCL-Type Grid-Connected Inverters


Control Techniques for LCL-Type Grid-Connected Inverters

Author: Xinbo Ruan

language: en

Publisher: Springer

Release Date: 2017-07-26


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This book focuses on control techniques for LCL-type grid-connected inverters to improve system stability, control performance and suppression ability of grid current harmonics. Combining a detailed theoretical analysis with design examples and experimental validations, the book offers an essential reference guide for graduate students and researchers in power electronics, as well as engineers engaged in developing grid-connected inverters for renewable energy generation systems.

Advanced Control Techniques for Grid-Connected Inverters


Advanced Control Techniques for Grid-Connected Inverters

Author: Huafeng Xiao

language: en

Publisher: Springer Nature

Release Date: 2025-05-02


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This book introduces planning method of power control configuration and structuring method of signal process link for grid-connected power conversion. These methods can be used for readers in research and engineering fields of renewable energy system. In this way, readers wishing to learn these control methods can gain insight on how to design and practice each control method easily. Readership: Graduate students and academics majored in power electronics, and engineers engaged in developing grid-connected inverters for renewable energy system; senior undergraduate students majored in electrical engineering and automation engineering.

Modeling and Control of Power Electronic Converters for Microgrid Applications


Modeling and Control of Power Electronic Converters for Microgrid Applications

Author: Yang Han

language: en

Publisher: Springer Nature

Release Date: 2021-08-27


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This book covers the fundamentals of power electronic converter modeling and control, digital simulation, and experimental studies in the area of renewable energy systems and AC/DC microgrid. Recent advanced control methods for voltage source inverters (VSIs) and the hierarchical controlled islanded microgrid are discussed, including the mathematical modeling, controller synthesis, parameter selection and multi-scale stability analysis, and consensus-based control strategies for the microgrid and microgrid clusters. The book will be an invaluable technical reference for practicing engineers and researchers working in the areas of renewable energy, power electronics, energy internet, and smart grid. It can also be utilized as reference book for undergraduate and postgraduate students in electrical engineering.