Sleva | PROTECTIVE RELAY PRINCIPLES SECOND EDITI | Buch | 978-1-4987-7146-7 | www.sack.de

Buch, Englisch, 425 Seiten, Format (B × H): 156 mm x 235 mm

Sleva

PROTECTIVE RELAY PRINCIPLES SECOND EDITI


2. Auflage 2020
ISBN: 978-1-4987-7146-7
Verlag: TAYLOR & FRANCIS

Buch, Englisch, 425 Seiten, Format (B × H): 156 mm x 235 mm

ISBN: 978-1-4987-7146-7
Verlag: TAYLOR & FRANCIS


Ideal for new engineers to use as a tutorial before they open the instruction manuals that accompany multi-function microprocessor-based relays, it guides readers through the transient loading conditions that can result in relay misoperation. Elaborating on concepts that are not generally discussed, readers will come away with an excellent grasp of important design considerations for working with overcurrent, over- and undervoltage, impedance, distance, and differential type relay functions, either individually or in combination. Also useful for students as a textbook, this book includes practical examples for many applications, and offers guidance for more unusual ones.

Sleva PROTECTIVE RELAY PRINCIPLES SECOND EDITI jetzt bestellen!

Autoren/Hrsg.


Weitere Infos & Material


Introduction. Power System Components. Power System Sub-Components. Abnormal Power System Conditions. Simplified Calculations. Protective Relay Functional Characteristics. Protective Relay Functional Combinations. Pilot Relaying Schemes. Zones and Regions of Protection. Physical Characteristics of Protective Relays. Setting Considerations. Protection and Control Schemes. Protective Relay Coordination. Distribution Line Protection, Radial Lines. Distribution Line Protection, Network Lines. Transmission Line Protection. Transformer Protection. Bus Protection. Breaker Failure Protection. Capacitor Bank Protection. Shunt and Series Reactor Protection. Grid Protection. Reclosing. Open Phase Detection. Documentation Requirements. Sample Technical Reports. Cyber Security. Review of Operations. Case Studies.


Anthony Sleva is president of Sleva Associates, an electrical consulting and training company. He is a registered Professional Engineer with a BSEE degree from Pennsylvania State University. During his career, he has designed electrical systems for nuclear generating stations; designed 500-230 KV, 230-69 KV, 138-12 KV and 69-12 KV substations; provided technical support to power dispatchers, system operators and plant operators; and developed technical training programs for technicians, drafters, designers and technical clerks. Mr. Sleva specializes in the analysis of power system events that cause the loss of customer load and/or the initiation of emergency load control procedures as well as events that may have been caused by incorrect protective relay actuations.



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