Smarter Energy : From Smart Metering to the Smart Grid

Title: Smarter Energy : From Smart Metering to the Smart Grid
Author: Dr. Hongjian Sun, Laurence Carpanini, Miguel Angel Sanchez Fornie, Prof. H. Vincent Poor, Prof. Nikos Hatziargyriou
ISBN: 1785611046 / 9781785611049
Format: Hard Cover
Pages: 520
Publisher: IEE
Year: 2016
Availability: Out of Stock

Tab Article

This book presents cutting-edge perspectives and research results in smart energy spanning multiple disciplines across four main topics: smart metering, smart grid modeling, control and optimisation, and smart grid communications and networking.

Topics covered include;

  • privacy-preserving data aggregation in smart metering systems
  • smart price-based scheduling of flexible residential appliances
  • smart tariffs for demand response from smart metering platforms
  • decentralised models for real-time renewable integration in future grid
  • distributed and decentralised control in future power systems
  • multi-objective optimisation for smart grid system design
  • frequency regulation of smart grid via dynamic demand control and battery energy storage systems
  • distributed frequency control and demand-side management
  • game theory approaches for demand side management in the smart grid
  • energy storage systems and grid integration
  • overview of research in the ADVANTAGE project
  • big data analysis of power grid from random matrix theory
  • a model-driven evaluation of demand response communication protocols for smart grid
  • energy-efficient smart grid communications
  • cyber security of smart grid state estimation: attacks and defense mechanisms

Tab Article

Biographies of The Editors
Preface

Chapter 1 : Smart Energy : Smart Grid Research and Projects Overview

Part I : Smart Metering
Chapter 2 :
Privacy-Preserving Data Aggregation in Smart Metering Systems
Chapter 3 : Smart Price-Based Scheduling of Flexible Residential Appliances
Chapter 4 : Smart Tariffs for Demand Response From Smart Metering Platform

Part II : Smart Grid Modeling, Control and Optimization
Chapter 5 :
Decentralized Models for Real-Time Renewable Integration in Future Grid
Chapter 6 : Distributed and Decentralized Control in Future Power Systems
Chapter 7 : Multiobjective Optimization for Smart Grid System Design
Chapter 8 : Frequency Regulation of Smart Grid Via Dynamic Demand Control and Battery Energy Storage System
Chapter 9 : Distributed Frequency Control and Demand-Side Management
Chapter 10 : Game Theory Approaches for Demand Side Management in The Smart Grid

Part III : Smart Grid Communications and Networking
Chapter 11 :
Cyber Security of Smart Grid State Estimation : Attacks and Defense Mechanisms
Chapter 12 : Overview of Research in Theadvantage Project
Chapter 13 : Big Data Analysis of Power Grid From Random Matrix Theory
Chapter 14 : A Model-Driven Evaluation of Demand Response Communication Protocols for Smart Grid
Chapter 15 : Energy-Efficient Smart Grid Communications

Appendix A : Proof of Theorem 15.1
Appendix B : Proof of Proposition 15.5
Appendix C : Proof of Proposition 15.3
Bibliography
Index