Description

Book Synopsis

Power electronics converters are devices that change parameters of electric power, such as voltage and frequency, as well as between AC and DC. They are essential parts of both advanced drives, for machines and vehicles, and energy systems to meet required flexibility and efficiency criteria. In energy systems both stationary and mobile, control and converters help ensure reliability and quality of electric power supplies.

This reference in two volumes is useful reading for scientists and researchers working with power electronics, drives and energy systems; manufacturers developing power electronics for advanced applications; professionals working in the utilities sector; and for advanced students of subjects related to power electronics.

Volume 1 covers converters and control for drives, while Volume 2 addresses clean generation and power grids. The chapters enable the reader to directly apply the knowledge gained to their research and designs. Topics include reliability, WBG power semiconductor devices, converter topology and their fast response, matrix and multilevel converters, nonlinear dynamics, AI and machine learning. Robust modern control is covered as well. A coherent chapter structure and step-by-step explanation provide the reader with the understanding to pursue their research.



Table of Contents
  • Chapter 1: Performance of modern industrial plants with renewable power generation: a comprehensive system analysis
  • Chapter 2: Maximum power extraction from partially shaded photovoltaic power conversion systems
  • Chapter 3: Transformerless grid-connected inverter for PV integration
  • Chapter 4: PMSG and DFIG-based wind energy conversion systems
  • Chapter 5: Novel AI, machine, deep learning, and optimization-based computing for energy systems
  • Chapter 6: Converter topologies for grid-integration of renewable power sources
  • Chapter 7: PV powered DC microgrid with plug-in energy harvesting and EV incorporated functions
  • Chapter 8: Power electronics technology and applications in clean generation and power grids

Power Electronics for Next-Generation Drives and Energy Systems: Clean generation and power grids: Volume 2

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    Order before 4pm tomorrow for delivery by Mon 22 Jun 2026.

    A Hardback by Nayan Kumar, Josep M. Guerrero, Debaprasad Kastha

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      View other formats and editions of Power Electronics for Next-Generation Drives and Energy Systems: Clean generation and power grids: Volume 2 by Nayan Kumar

      Publisher: Institution of Engineering and Technology
      Publication Date: 24/05/2023
      ISBN13: 9781839534690, 978-1839534690
      ISBN10:

      Description

      Book Synopsis

      Power electronics converters are devices that change parameters of electric power, such as voltage and frequency, as well as between AC and DC. They are essential parts of both advanced drives, for machines and vehicles, and energy systems to meet required flexibility and efficiency criteria. In energy systems both stationary and mobile, control and converters help ensure reliability and quality of electric power supplies.

      This reference in two volumes is useful reading for scientists and researchers working with power electronics, drives and energy systems; manufacturers developing power electronics for advanced applications; professionals working in the utilities sector; and for advanced students of subjects related to power electronics.

      Volume 1 covers converters and control for drives, while Volume 2 addresses clean generation and power grids. The chapters enable the reader to directly apply the knowledge gained to their research and designs. Topics include reliability, WBG power semiconductor devices, converter topology and their fast response, matrix and multilevel converters, nonlinear dynamics, AI and machine learning. Robust modern control is covered as well. A coherent chapter structure and step-by-step explanation provide the reader with the understanding to pursue their research.



      Table of Contents
      • Chapter 1: Performance of modern industrial plants with renewable power generation: a comprehensive system analysis
      • Chapter 2: Maximum power extraction from partially shaded photovoltaic power conversion systems
      • Chapter 3: Transformerless grid-connected inverter for PV integration
      • Chapter 4: PMSG and DFIG-based wind energy conversion systems
      • Chapter 5: Novel AI, machine, deep learning, and optimization-based computing for energy systems
      • Chapter 6: Converter topologies for grid-integration of renewable power sources
      • Chapter 7: PV powered DC microgrid with plug-in energy harvesting and EV incorporated functions
      • Chapter 8: Power electronics technology and applications in clean generation and power grids

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