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Power System Protection and Relaying

Computer-Aided Design Using SCADA Technology
CRC Press
Erschienen am 29. September 2023
404 Seiten
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978-1-000-95400-5 (ISBN)
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1. 1. The book is pioneering work in this field, a new view concerning the old things that seem to be known for all power systems protection: algorithms related to relay and setting parameters and operation estimation, faults detection, classification, resolution, and reliability.
2. The work contains an algebraic approach to relays setting by exploiting an algebraic system for power protection.
3. The monograph contains a solution to large-scale power protection problems, namely the increasing development of methods and algorithms of the processing in the power system's relaying methods that increase (a) Operation efficiency under different uncertainty conditions; (b) system stability rate.; (2) further development of mathematical fundamentals of power system networks.
4. For the first time, the traditional method considers power system protection and relaying fundamentals. Developed algorithms cover many possible applications and known classic optimal algorithms related to the algorithms.
5. All obtained results are new, original, unknown to most power engineers and verified by the SCADA technology.
Sprache
Englisch
Verlagsort
London
Großbritannien
Verlagsgruppe
Taylor & Francis Ltd
Zielgruppe
Für höhere Schule und Studium
Illustrationen
61 Tables, black and white; 282 Line drawings, black and white; 39 Halftones, black and white; 321 Illustrations, black and white
ISBN-13
978-1-000-95400-5 (9781000954005)
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Schweitzer Klassifikation
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Samir I. Abood received his BS and MS from the University of Technology, Baghdad, Iraq, in 1996 and 2001, respectively. He earned his PhD in the Electrical and Computer Engineering from Prairie View A&M University. From 1997 to 2001, he worked as an engineer at the University of Technology. From 2001 to 2003, he was a professor at the University of Baghdad and Al-Nahrain University. From 2003 to 2016, he was a Middle Technical University/Baghdad-Iraq professor. He is an electrical and computer engineering professor at Prairie View A&M University in Prairie View. He is the author of 30 papers and 12 books. His main research interests are sustainable power and energy systems, microgrids, power electronics and motor drives, digital PID controllers, digital methods for electrical measurements, digital signal processing, and control systems.

John Fuller is an electrical and computer engineering professor at Prairie View A&M University in Prairie View, Texas. He received a BSEE degree from Prairie View A&M University and a master's degree and a PhD degree from the University of Missouri, Columbia. He has researched some funded projects over a 48-year teaching career in higher education. Some of the major projects of his research efforts are hybrid energy systems, stepper motor control, the design and building of a solar-powered car, nuclear survivability and characterization on non-volatile memory devices, nuclear detector/sensor evaluation, and some other electrical and computer-related projects. Dr. Fuller is presently the coordinator of Title III funding to the Department of Electrical and Computer Engineering in developing a solar-powered home. He is also the Center for Big Data Management associate director in the Department of Electrical and Computer Engineering. In addition to teaching and research duties with college-level students, he is also active in the PVAMU summer programs for middle and high school students. Dr. Fuller has also held administrative positions as Head of the Department of Electrical Engineering and as interim dean of the College of Engineering at Prairie View A&M University. In 2018, he was recognized as the Texas A&M System Regents Professor.
1. Introduction to Power Protection Systems. 2. Protective Relays. 3. Protection Systems with SCADA Technology 4. Faults Analysis. 5. Fuses and Circuit Breakers. 6. Overcurrent Relay. 7. Transmission Line Protection. 8. Transformer Protection. 9. Generator, Motor, and Busbar Protection. 10. High-Impedance Faults. 11. Grounding of Power System.

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