Simulation and Analysis of Modern Power Systems

McGraw-Hill Education (Verlag)
  • erscheint ca. am 4. Dezember 2020
  • Buch
  • |
  • Softcover
  • |
  • 112 Seiten
978-1-260-46450-4 (ISBN)
Publisher's Note: Products purchased from Third Party sellers are not guaranteed by the publisher for quality, authenticity, or access to any online entitlements included with the product.Master the modeling, analysis, and simulation of today's power systemsThis comprehensive textbook discusses all the major modelling and simulation tools and techniques that a power engineer needs, and explains how those tools can be applied to modern power systems. The applications include loadflow studies, contingency analysis, transient and voltage stability studies, state estimation and phasor estimation studies, co-simulation studies.Written by a recognized expert in the field, Simulation and Analysis of Modern Power Systems contains real-world examples worked out in MATLAB, PSCA, and Power World EMTP and RTDS. You will get a thorough overview of power system fundamentals and learn, step by step, how to efficiently emulate and analyze the myriad components of modern power systems. The book introduces the most state-of-the-art power simulation tool available today, the Real Time Digital Simulator (RTDS) and its Hardware-In-Loop (HIL) capabilities.
- Explains how each technique is used in many essential applications - Introduces the Real Time Digital Simulator (RTDS) and its Hardware-In-Loop (HIL) capabilities - Written by a power systems expert and experienced educator
  • Englisch
  • OH
  • |
  • USA
  • Für höhere Schule und Studium
978-1-260-46450-4 (9781260464504)
Dr. Ranjana Sodhi is an assistant professor in the department of electrical engineering at IIT Ropar. Her research spans the areas of power system monitoring and stability, state estimation, power quality, synchrophasor measurement technology & its applications at transmission and distribution-level grids, microgrid monitoring and stability studies, residential energy management systems, and cyber security aspects of smart grids.

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