Advanced Power Applications for System Reliability Monitoring
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Advanced Power Applications for System Reliability Monitoring

 eBook
Sofort lieferbar | Lieferzeit: Sofort lieferbar I
ISBN-13:
9783030445447
Veröffentl:
2020
Einband:
eBook
Seiten:
482
Autor:
Hongming Zhang
Serie:
Power Systems
eBook Typ:
PDF
eBook Format:
Reflowable eBook
Kopierschutz:
Digital Watermark [Social-DRM]
Sprache:
Englisch
Beschreibung:

This book examines real-time models and advanced online applications that enhance reliability and resilience of the grid in real-time and near real-time environments. It is written by Peak Reliability engineers who worked on the creation of the West Wide System Model (WSM) and the implementation of advanced real-time operation situational awareness tools for reliability coordination function. The book looks at how a single Reliability Coordinator for the Western Interconnection did its work under normal and emergency conditions, providing a unique perspective on best practices and lessons learned from Peak's modeling and coordination efforts to create, maintain, and improve state-of-art new technology and algorithms to improve real-time operation situational awareness and Bulk Electric System (BES) grid resilience. Coverage includes practical experience of implementing real-time Energy Management System (EMS) Network Application, real-time voltage stability analysis, online transient stability analysis, synchrophasor technology, Dispatcher Training Simulator and EMS Cybersecurity & Inter-Control Center Communications Protocol (ICCP) implementation experience in a Reliability Coordinator Control Room setting. Explains how to operate a "e;green"e; grid and prevent new blackouts against uncertain operation conditions;Written by Peak Reliability engineers who worked on the creation of the West Wide System Model (WWSM);All material verified in practical system operations, or validated by real system measures and system events.

This book examines real-time models and advanced online applications that enhance reliability and resilience of the grid in real-time and near real-time environments. It is written by Peak Reliability engineers who worked on the creation of the West Wide System Model (WSM) and the implementation of advanced real-time operation situational awareness tools for reliability coordination function. The book looks at how a single Reliability Coordinator for the Western Interconnection did its work under normal and emergency conditions, providing a unique perspective on best practices and lessons learned from Peak’s modeling and coordination efforts to create, maintain, and improve state-of-art new technology and algorithms to improve real-time operation situational awareness and Bulk Electric System (BES) grid resilience. Coverage includes practical experience of implementing real-time Energy Management System (EMS) Network Application, real-time voltage stability analysis, online transient stability analysis, synchrophasor technology, Dispatcher Training Simulator and EMS Cybersecurity & Inter-Control Center Communications Protocol (ICCP) implementation experience in a Reliability Coordinator Control Room setting. 


  • Explains how to operate a “green” grid and prevent new blackouts against uncertain operation conditions;
  • Written by Peak Reliability engineers who worked on the creation of the West Wide System Model (WWSM);
  • All material verified in practical system operations, or validated by real system measures and system events.
Introduction: Building the West Wide System Model (WSM).- Real-Time Contingency Analysis with Inclusive RAS Models.- Implementing Real-time Voltage Stability Analysis Tool for Assessment of Interconnection Reliability Operating Limits (IROLS).- Implementing Online Transient Stability Analysis Tool for System Frequency Response Monitoring Against Penetration of Renewable Generation.- Best Practice in DTS Operation Trainings: Blackstart Drills and Tool Training.- A Framework of Using Synchrophasor Measurements in Control Center and Implementation of Synchrophasor Applications.- Bridge the Gap Between Real-time EMS Models and Planning Models.- Conclusions.

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