Frequency Variations in Power Systems : Modeling, State Estimation, and Control
Book Details
Format
Hardback or Cased Book
Book Series
IEEE Press
ISBN-10
1119551846
ISBN-13
9781119551843
Publisher
John Wiley & Sons Inc
Imprint
Wiley-IEEE Press
Country of Manufacture
GB
Country of Publication
GB
Publication Date
Jun 25th, 2020
Print length
360 Pages
Weight
771 grams
Dimensions
24.60 x 17.00 x 2.50 cms
Product Classification:
Electrical engineering
Ksh 19,800.00
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Frequency Variations in Power Systems: Modeling, State Estimation and Control presents the Frequency Divider Formula (FDF); a unique approach that defines, calculates and estimates the frequency in electrical energy systems. This authoritative book is written by two noted researchers on the topic. They define the meaning of frequency of an electrical quantity (such as voltage and current) in non-stationary conditions (for example the frequency is not equal to the nominal one) and pose the foundation of the frequency divider formula. The book describes the consequences of using a variable frequency in power system modelling and simulations, in state estimation and frequency control applications. In addition, the authors include a discussion on the applications of the frequency divider in systems where part of the generation is not based on synchronous machines, but rather on converter-interfaced energy resources, such as wind and solar power plants. This important book: Offers a review that clearly defines and shows how the Frequency Divider Formula can be appliedDiscusses the link between frequency and energy in power systemsPresents a unified vision that accurately reveals the common thread that links modelling, control and estimationIncludes information on the many implications that “local frequency variations” have on power system dynamics and controlContains several numerical examples Written for researchers, academic staff members, students, specialised consultants and professional software developers, Frequency Variations in Power Systems questions the conventional transient stability model of power system and proposes a new formulation.
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