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Power Distribution System State Estimation, Hardcover by Lourenço, Elizete Ma...
US $144.97
ApproximatelyRM 602.20
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A book in excellent condition. Cover is shiny and undamaged, and the dust jacket is included for hard covers. No missing or damaged pages, no creases or tears, and no underlining/highlighting of text or writing in the margins. May be very minimal identifying marks on the inside cover. Very minimal wear and tear.
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Item specifics
- Condition
- Book Title
- Power Distribution System State Estimation
- ISBN
- 9781839532016
- Subject Area
- Technology & Engineering
- Publication Name
- Power Distribution System State Estimation
- Publisher
- Institution of Engineering & Technology
- Item Length
- 9.2 in
- Subject
- Power Resources / Electrical
- Publication Year
- 2023
- Series
- Energy Engineering Ser.
- Type
- Textbook
- Format
- Hardcover
- Language
- English
- Item Width
- 6.1 in
- Number of Pages
- 387 Pages
About this product
Product Identifiers
Publisher
Institution of Engineering & Technology
ISBN-10
1839532017
ISBN-13
9781839532016
eBay Product ID (ePID)
3057261374
Product Key Features
Number of Pages
387 Pages
Language
English
Publication Name
Power Distribution System State Estimation
Publication Year
2023
Subject
Power Resources / Electrical
Type
Textbook
Subject Area
Technology & Engineering
Series
Energy Engineering Ser.
Format
Hardcover
Dimensions
Item Length
9.2 in
Item Width
6.1 in
Additional Product Features
Intended Audience
College Audience
Dewey Edition
23
Illustrated
Yes
Dewey Decimal
621.3191
Table Of Content
Chapter 1: Introduction Chapter 2: Real-time monitoring of distribution systems: Brazilian experience Chapter 3: Practical experiences of distribution state estimation in real life Chapter 4: Three-phase network model for steady-state analysis of distribution systems Chapter 5: Current-based power flow calculation methods for distribution systems Chapter 6: Classical methods applied to distribution system state estimation Chapter 7: Fast-decoupled power flow method for active distribution systems Chapter 8: Fast-decoupled distribution system state estimation Chapter 9: Bayesian approach for distribution system state estimation Chapter 10: Multiarea state estimation for distribution systems Chapter 11: Including synchronized and non-synchronized measurements with different sample rates in distribution system state estimation Chapter 12: State estimation for low voltage distribution grids Chapter 13: Conclusions
Synopsis
This book is a systematic reference guide to state estimation for power systems. Written by experts from industry and academia, this book covers crucial technology for controlling power systems with distributed generation. Chapters cover several modelling methods as well real-time monitoring and practical lessons., State estimation is an enabler for active control of a system, e.g. a network with distributed power generation. State estimation uses data such as real-time measurements, load and production forecasts as inputs to estimate the most likely state at a given moment. The state is the combination of parameter values such voltages, frequencies, current flow, power load and production. The goal of state estimation is to adjust models so that they are closer to observed values and deliver better forecasts. In power systems, this is key to maintaining power quality and operate generation and storage units well. This work, written by international authors from industry and universities, will cover the subject systematically; chapters will start with practical experiences, then cover several modelling and flow calculation models. Use of measurements with varying sampling rates will be covered, and one chapter will focus on low voltage distribution systems., State estimation is a key function for real-time operation and control of electrical power systems since its role is to provide a complete, coherent, and reliable network real-time model used to set up other real-time operation and control functions. In recent years it has extended its applications to monitoring active distribution networks with distributed energy resources. The inputs of a conventional state estimator are a redundant collection of real-time measurement, load and production forecasts and a mathematical model that relates these measurements to the complex nodal voltages, which are taken as the state variables of the system. The goal of state estimation is to adjust models so that they are closer to observed values and deliver better forecasts. In power systems, this is key to maintaining power quality and operating generation and storage units well. This book, written by international authors from industry and universities, systematically addresses state estimation in power distribution systems. Chapters convey techniques for distribution system state estimation, such as classical methods, three-phase network modelling, power flow calculation, fast decoupled approaches and their new application via complex per unit normalization, the Bayesian method, and multiarea state estimation. Also, synchronized and non-synchronized measurements with different sample rates, real-time monitoring, and practical experiences of distribution state estimation are covered. Researchers involved with electrical power and electrical distribution systems, professionals working in utilities, advanced students and PhD students will find this work essential reading.
LC Classification Number
TK1030
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