Reprint

Integration of High Voltage AC/DC Grids into Modern Power Systems

Edited by
July 2020
140 pages
  • ISBN978-3-03936-525-8 (Hardback)
  • ISBN978-3-03936-526-5 (PDF)

This book is a reprint of the Special Issue Integration of High Voltage AC/DC Grids into Modern Power Systems that was published in

Biology & Life Sciences
Chemistry & Materials Science
Computer Science & Mathematics
Engineering
Environmental & Earth Sciences
Physical Sciences
Summary

Electric power transmission relies on AC and DC grids. The extensive integration of conventional and nonconventional energy sources and power converters into power grids has resulted in a demand for high voltage (HV), extra-high voltage (EHV), and ultra-high voltage (UHV) AC/DC transmission grids in modern power systems. To ensure the security, adequacy, and reliable operation of power systems, the practical aspects of interconnecting HV, EHV, and UHV AC/DC grids into the electric power systems, along with their economic and environmental impacts, should be considered. The stability analysis for the planning and operation of HV, EHV, and UHV AC/DC grids in power systems is regarded as another key issue in modern power systems. Moreover, interactions between power converters and other power electronics devices (e.g., FACTS devices) installed on the network are other aspects of power systems that must be addressed. This Special Issue aims to investigate the integration of HV, EHV, and UHV AC/DC grids into modern power systems by analyzing their control, operation, protection, dynamics, planning, reliability, and security, along with considering power quality improvement, market operations, power conversion, cybersecurity, supervisory and monitoring, diagnostics, and prognostics systems.

Format
  • Hardback
License
© 2020 by the authors; CC BY-NC-ND license
Keywords
dielectric strength; field grading; field utilization factor (FUF); gas-insulated transmission line; metropolitan; stranded conductor; improved mixed AC/DC power flow; multi-terminal high voltage direct current (MT-HVDC) systems; operational constraints; voltage-sourced converter (VSC)-high voltage direct current (HVDC) station; ε-Constraint method; multi-objective optimization; reactive power planning (RPP); uncertainty; wind farms; La0.6Sr0.4CoO3; semiconductive layer; PTC effect; space charge; HVDC transmission; Cuckoo Search Algorithm (CSA); Fixed-Head Short-Term Model; Hydrothermal System; Optimal Scheduling of Wind-Hydro-Thermal System (OSWHTS); High Voltage AC/DC Grids; Power Systems Control; Power Systems Operation; Power Systems Optimization; Power Systems Planning; Power Systems Protection