Power System Analysis: Practice Problems, Methods, and Solutions

Author:   Mehdi Rahmani-Andebili
Publisher:   Springer Nature Switzerland AG
Edition:   1st ed. 2022
ISBN:  

9783030847692


Pages:   104
Publication Date:   04 November 2022
Format:   Paperback
Availability:   Manufactured on demand   Availability explained
We will order this item for you from a manufactured on demand supplier.

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Power System Analysis: Practice Problems, Methods, and Solutions


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Overview

This study guide is designed for students taking courses in electric power system analysis. The textbook includes examples, questions, and exercises that will help electric power engineering students to review and sharpen their knowledge of the subject and enhance their performance in the classroom. Offering detailed solutions, multiple methods for solving problems, and clear explanations of concepts, this hands-on guide will improve student’s problem-solving skills and basic and advanced understanding of the topics covered in power system analysis courses.

Full Product Details

Author:   Mehdi Rahmani-Andebili
Publisher:   Springer Nature Switzerland AG
Imprint:   Springer Nature Switzerland AG
Edition:   1st ed. 2022
Weight:   0.308kg
ISBN:  

9783030847692


ISBN 10:   3030847691
Pages:   104
Publication Date:   04 November 2022
Audience:   Professional and scholarly ,  Professional & Vocational
Format:   Paperback
Publisher's Status:   Active
Availability:   Manufactured on demand   Availability explained
We will order this item for you from a manufactured on demand supplier.

Table of Contents

Problems: Principal Concepts of Power Systems.- Solutions of Problems: Principal Concepts of Power Systems.- Problems: Transmission Lines Parameters.- Solutions of Problems: Transmission Line Parameters.- Problems: Transmission Line Model and Performance.- Solutions of Problems: Transmission Line Model and Performance.- Problems: Power System Component Modelling and Network Impedance and Admittance Matrices Determination.- Solutions of Problems: Power System Component Modelling and Network Impedance and Admittance Matrices Determination.- Problems: Load Flow.- Solutions of Problems: Load Flow.- Problems: Economic Load Dispatch.- Solutions of Problems: Economic Load Dispatch.- Problems: Electric Distribution Systems.- Solutions of Problems: Electric Distribution Systems.

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Author Information

Mehdi Rahmani-Andebili is an Assistant Professor in the Department of Engineering and Physics at the University of Central Oklahoma, OK, USA. Before that, he was also an Assistant Professor in the Electrical Engineering Department at Montana Technological University, MT, USA, and the Engineering Technology Department at State University of New York, Buffalo State, NY, USA, during 2019-2022. He received his first M.Sc. and Ph.D. degrees in Electrical Engineering (Power System) from Tarbiat Modares University and Clemson University in 2011 and 2016, respectively, and his second M.Sc. degree in Physics and Astronomy from the University of Alabama in Huntsville in 2019. Moreover, he was a Postdoctoral Fellow at Sharif University of Technology during 2016-2017. As a professor, he has taught many courses and labs, including Power System Analysis, DC and AC Electric Machines, Feedback Control Systems Analysis and Design, Renewable Distributed Generation and Storage, IndustrialElectronics, Analog Electronics, Electrical Circuits and Devices, AC Electrical Circuits Analysis, DC Electrical Circuits Analysis, Essentials of Electrical Engineering Technology, and Algebra and Calculus-Based Physics. Dr. Rahmani-Andebili has more than 200 single-author and first-author publications, including journal papers, conference papers, textbooks, books, and book chapters. He is an IEEE Senior Member and the permanent reviewer of many credible journals. His research areas include Smart Grid, Power System Operation and Planning, Integration of Renewables and Energy Storages into Power System, Energy Scheduling and Demand-Side Management, Plug-in Electric Vehicles, Distributed Generation, and Advanced Optimization Techniques in Power System Studies.

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