Design and Control of Active Power Filters towards the Decarbonisation of Smart Grid Networks

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Design and Control of Active Power Filters towards the Decarbonisation of Smart Grid Networks

  • 言語:ENG
  • ISBN:9780323999038
  • eISBN:9780323999557

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Description

Design and Control of Active Power Filters towards the Decarbonisation of Smart Grid Networks helps readers optimize grid stability and power quality using active power filters in transitioning decarbonized power systems moving from high voltage to low voltage distributed smart networks. The work opens with an extensive foundation in grid stability and power quality optimization, but then goes on to discuss advanced design, control, integration and placement considerations for APFs for smart grids with high penetration of VRE and EV. Integration topologies and the placement of APFs in these VRE integrated networks are also discussed.Finally, applied solutions on design, control and integration of APFs in microgrid networks are presented before parallel operation and distributed design and control issues are reviewed. Numerous case studies support the work, and an expansive discussion of future trends for APFs in smart grids rounds out the content.- Explores advanced design and dynamic control strategies of active power filters (APFs) in different smart grid networks in the presence of highly penetrated variable renewable energies (VRE) and Electric Vehicles (EV)- Reviews the design and control of Multi-functional/Multi-level/Multi-modular/Parallel operation of APFs for grid stability and power quality improvement in LV/MV/HV networks- Assesses different integration and placement methods of APFs in grid connected or off-grid microgrid networks- Discusses real life demonstration examples of APFs, network analysis and loss minimization, techno-economic analysis, business case scenarios- Presented detailed simulation models and implementations in MATLAB

Table of Contents

Section I: Grid stability and power quality in smart grid network with high penetration of VRE1. Grid stability and power quality in VRE integrated networks2. Application of latest device/equipment in stabilising the smart grid with ancillary servicesSection II: Design, Control and Integration of APFs with high penetration of VRE3. Basics of APFs – Design, topology and control4. Integration/placement of APFs in distributed generation network5. Advanced design and dynamic control strategies of APFs in different smart grid networks6. Parallel operation and control of APFs in presence of VRE7. Design and control of multi-level/multi-modular APFsSection III: Integration of APFs in Microgrid networks8. Integration, placement and control of APFs in microgrid networks9. Multi-functional APFs for grid stability and power quality improvement10. Real life demonstration examplesSection IV: Future Trends of APFs11. Placement of APFs and participation in ancillary market12. Advancement in energy management and control

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