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{ "item_title" : "Weak Grid Integration of Inverter-Based Resources", "item_author" : [" Lingling Fan "], "item_description" : "Comprehensive resource discussing specific challenges and control solutions associated with operating inverter-based resources in weak grid scenariosWeak Grid Integration of Inverter-Based Resources delves into current operational challenges and control solutions associated with inverter-based resources (IBR) in weak grid scenarios, with real-world examples included throughout to elucidate key concepts. The book introduces the control architecture of IBR power plants and the underlying AC circuit topology, providing readers with a comprehensive overview of the system. It discusses specific operational challenges and examines how they relate to the grid-following control system and circuit characteristics. The book also reviews various grid-forming control designs and their role in enhancing weak-grid operation, while analyzing potential challenges arising from interactions between IBRs and series or shunt compensation. In addition, it investigates the different fault behaviors associated with grid-following and grid-forming control.Written by two highly qualified experts, Weak Grid Integration of Inverter-Based Resources includes information on:IBR inverter-level and power plant-level control logicRoot causes of a variety of oscillation phenomenaImpact of series and shunt compensation on grid characteristicsStability analysis and associated modeling techniques, including complex vector-based modeling and analysis and forming customized feedback systemsFault behaviors and their connection to IBR control logicComprehensive in scope, Weak Grid Integration of Inverter-Based Resources appeals to a wide spectrum of readers in the field, including professionals in the power industry and university students in related programs of study.", "item_img_path" : "https://covers4.booksamillion.com/covers/bam/1/39/431/608/1394316089_b.jpg", "price_data" : { "retail_price" : "110.00", "online_price" : "110.00", "our_price" : "110.00", "club_price" : "110.00", "savings_pct" : "0", "savings_amt" : "0.00", "club_savings_pct" : "0", "club_savings_amt" : "0.00", "discount_pct" : "10", "store_price" : "" } }
Weak Grid Integration of Inverter-Based Resources|Lingling Fan

Weak Grid Integration of Inverter-Based Resources

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Overview

Comprehensive resource discussing specific challenges and control solutions associated with operating inverter-based resources in weak grid scenarios

Weak Grid Integration of Inverter-Based Resources delves into current operational challenges and control solutions associated with inverter-based resources (IBR) in weak grid scenarios, with real-world examples included throughout to elucidate key concepts. The book introduces the control architecture of IBR power plants and the underlying AC circuit topology, providing readers with a comprehensive overview of the system. It discusses specific operational challenges and examines how they relate to the grid-following control system and circuit characteristics. The book also reviews various grid-forming control designs and their role in enhancing weak-grid operation, while analyzing potential challenges arising from interactions between IBRs and series or shunt compensation. In addition, it investigates the different fault behaviors associated with grid-following and grid-forming control.

Written by two highly qualified experts, Weak Grid Integration of Inverter-Based Resources includes information on:

  • IBR inverter-level and power plant-level control logic
  • Root causes of a variety of oscillation phenomena
  • Impact of series and shunt compensation on grid characteristics
  • Stability analysis and associated modeling techniques, including complex vector-based modeling and analysis and forming customized feedback systems
  • Fault behaviors and their connection to IBR control logic

Comprehensive in scope, Weak Grid Integration of Inverter-Based Resources appeals to a wide spectrum of readers in the field, including professionals in the power industry and university students in related programs of study.

This item is Non-Returnable

Details

  • ISBN-13: 9781394316083
  • ISBN-10: 1394316089
  • Publisher: Wiley-IEEE Press
  • Publish Date: December 2025
  • Dimensions: 9 x 6 x 0.44 inches
  • Shipping Weight: 0.9 pounds
  • Page Count: 176

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