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  • 1
    Online-Ressource
    Online-Ressource
    Cham :Springer International Publishing AG,
    UID:
    almahu_9949602166002882
    Umfang: 1 online resource (181 pages)
    Ausgabe: 1st ed.
    ISBN: 9783030104276
    Anmerkung: Intro -- Preface -- Why This Book? -- The Goal of This Book -- What's in This Book? -- Acknowledgments -- Contents -- Nomenclature -- List of Figures -- List of Tables -- Executive Summary -- 1 eIoT as a Solution to Energy-Management Change Drivers -- 1.1 Energy-Management Change Drivers -- 1.1.1 Growing Demand for Electricity -- 1.1.2 The Emergence of Renewable Energy Resources -- 1.1.3 The Emergence of Electrified Transportation -- 1.1.4 Deregulation of Electric Power Markets -- 1.1.5 Innovations in Smart Grid Technology -- 1.2 The Need for a Technical Solution -- 1.3 eIoT as an Energy-Management Solution -- 1.4 Scope and Perspective -- 1.5 Book Outline -- 2 eIoT Activates the Grid Periphery -- 2.1 Change Drivers Will Transform Energy Management at the Grid Periphery -- 2.2 The Challenge of Activating the Grid Periphery -- 2.3 Deploying eIoT as a Scalable Energy Management Solution -- 3 The Development of IoT Within Energy Infrastructure -- 3.1 Network-Enabled Physical Devices: Sensors and Actuators -- 3.1.1 Network-Enabled Physical Devices: Overview -- 3.1.2 Sensing and Actuation of Primary Variables in the Transmission System -- 3.1.2.1 Network-Enabled Sensors: SCADA and PMUs -- 3.1.2.2 Network-Enabled Actuators: AGC, AVR, and FACTS -- 3.1.3 Sensing and Actuation of Supply Side SecondaryVariables -- 3.1.3.1 Networked-Enabled Sensors: Wind, Solar, and Natural Gas Resources -- 3.1.3.2 Networked-Enabled Actuators: Wind and Solar Resources -- 3.1.4 Sensing and Actuation of Primary Variables in the Distribution System -- 3.1.4.1 Network-Enabled Sensors: The Emergence of the Smart Meter -- 3.1.4.2 Network-Enabled Actuators: Distribution Automation -- 3.1.5 Sensing and Actuation of Demand-Side SecondaryVariables -- 3.1.5.1 Energy Monitors with Embedded Data Analytics -- 3.1.5.2 Network-Enabled Smart Switches, Outlets, and Lights. , 3.1.5.3 Network-Enabled Heating and Cooling Appliances -- 3.1.5.4 The Electrification Potential of eIoT -- 3.1.5.5 Net-Zero Homes: Electrification of Residential Energy Consumption -- 3.1.5.6 Net-Zero Industry: Electrification of Industrial Energy Consumption -- 3.1.5.7 Connected, Automated, and Electrified Multi-Modal Transportation -- 3.1.6 Network-Enabled Physical Devices: Conclusion -- 3.2 Communication Networks -- 3.2.1 Overview -- 3.2.2 Grid Operator and Utility Networks -- 3.2.2.1 Wired Communications: Power-Line Carriers and Fiber Optics -- 3.2.2.2 SCADA Networks and Wide-Area Monitoring Systems -- 3.2.2.3 LPWAN Commercial Wireless IoT Technologies -- 3.2.2.4 Wireless Smart Utility Network -- 3.2.2.5 eIoT Perspectives on Grid Operator and Utility Networks -- 3.2.3 Commercial Telecommunication Networks -- 3.2.3.1 Cellular Data Networks: 2.5G-GPRS, 3G-GSM, 4G, and LTE -- 3.2.3.2 WiMAX Networks -- 3.2.3.3 eIoT Perspectives on Commercial Telecommunication Networks -- 3.2.4 Local Area Networks -- 3.2.4.1 Wired Ethernet -- 3.2.4.2 WiFi Networks -- 3.2.4.3 Z-Wave Networks -- 3.2.4.4 ZigBee Networks -- 3.2.4.5 Bluetooth Networks -- 3.2.4.6 Industrial Networks -- 3.2.4.7 Perspectives on Local Area Networks -- 3.2.5 IoT Messaging Protocols -- 3.2.5.1 Data Distribution Service (DDS) -- 3.2.5.2 Message Queue Telemetry Transport (MQTT) -- 3.2.5.3 Constrained Application Protocol (CoAP) -- 3.2.5.4 eXtensible Messaging and Presence Protocol (XMPP) -- 3.2.5.5 Advanced Message Queuing Protocol (AMQP) -- 3.3 Distributed Control and Decision Making -- 3.4 Architectures and Standards -- 3.5 Socio-Technical Implications of eIoT -- 3.5.1 eIoT Privacy -- 3.5.2 eIoT Cybersecurity -- 4 Transactive Energy Applications of eIoT -- 4.1 Transactive Energy -- 4.2 Potential eIoT Energy-Management Use Cases -- 4.2.1 An eIoT Transactive Energy Aggregation Use Case. , 4.2.2 An eIoT Economic Demand Response in Wholesale Electricity Markets Use Case -- 4.3 Applications for Utilities and Distribution System Operators -- 4.4 Customer Applications -- 4.4.1 Industrial Applications -- 4.4.2 Commercial Applications -- 4.4.3 Residential Applications -- 5 eIoT Transforms the Future Electric Grid -- 5.1 Conclusions -- 5.1.1 eIoT Will Become Ubiquitous -- 5.1.2 eIoT Will Enable New Automated Energy-Management Platforms -- 5.1.3 eIoT Will Enable Distributed Techno-Economic Decision Making -- 5.2 Challenges and Opportunities -- 5.2.1 The Convergence of Cyber, Physical, and Economic Performance -- 5.2.2 Re-envisioning the Strategic Business Model for the Utility of the Future -- References -- Index.
    Weitere Ausg.: Print version: Muhanji, Steffi O. EIoT Cham : Springer International Publishing AG,c2019 ISBN 9783030104269
    Sprache: Englisch
    Fachgebiete: Technik
    RVK:
    Schlagwort(e): Electronic books.
    URL: Volltext  (kostenfrei)
    URL: Volltext  (kostenfrei)
    Bibliothek Standort Signatur Band/Heft/Jahr Verfügbarkeit
    BibTip Andere fanden auch interessant ...
  • 2
    Online-Ressource
    Online-Ressource
    Cham : Springer Nature | Cham :Springer International Publishing :
    UID:
    almahu_9949595404302882
    Umfang: 1 online resource (XXVIII, 160 p. 39 illus., 26 illus. in color.)
    Ausgabe: 1st ed. 2019.
    ISBN: 3-030-10427-3
    Inhalt: This open access book explores the collision between the sustainable energy transition and the Internet of Things (IoT). In that regard, this book’s arrival is timely. Not only is the Internet of Things for energy applications, herein called the energy Internet of Things (eIoT), rapidly developing but also the transition towards sustainable energy to abate global climate is very much at the forefront of public discourse. It is within the context of these two dynamic thrusts, digitization and global climate change, that the energy industry sees itself undergoing significant change in how it is operated and managed. This book recognizes that they impose five fundamental energy management change drivers: 1.) the growing demand for electricity, 2.) the emergence of renewable energy resources, 3.) the emergence of electrified transportation, 4.) the deregulation of electric power markets, 5.) and innovations in smart grid technology. Together, they challenge many of the assumptions upon which the electric grid was first built. The goal of this book is to provide a single integrated picture of how eIoT can come to transform our energy infrastructure. This book links the energy management change drivers mentioned above to the need for a technical energy management solution. It, then, describes how eIoT meets many of the criteria required for such a technical solution. In that regard, the book stresses the ability of eIoT to add sensing, decision-making, and actuation capabilities to millions or perhaps even billions of interacting “smart" devices. With such a large scale transformation composed of so many independent actions, the book also organizes the discussion into a single multi-layer energy management control loop structure. Consequently, much attention is given to not just network-enabled physical devices but also communication networks, distributed control & decision making, and finally technical architectures and standards. Having gone into the detail of these many simultaneously developing technologies, the book returns to how these technologies when integrated form new applications for transactive energy. In that regard, it highlights several eIoT-enabled energy management use cases that fundamentally change the relationship between end users, utilities, and grid operators. Consequently, the book discusses some of the emerging applications for utilities, industry, commerce, and residences. The book concludes that these eIoT applications will transform today’s grid into one that is much more responsive, dynamic, adaptive and flexible. It also concludes that this transformation will bring about new challenges and opportunities for the cyber-physical-economic performance of the grid and the business models of its increasingly growing number of participants and stakeholders.
    Anmerkung: Chapter1: eIoT as a Solution to Energy Management Change Drivers -- Chapter2: eIoT Activates the Grid Periphery -- Chapter3: The Development of IoT within Energy Infrastructure -- Chapter4: Transactive Energy Applications of eIoT -- Chapter5: eIoT Transforms the Future Electric Grid. , English
    Weitere Ausg.: ISBN 3-030-10426-5
    Sprache: Englisch
    Bibliothek Standort Signatur Band/Heft/Jahr Verfügbarkeit
    BibTip Andere fanden auch interessant ...
  • 3
    UID:
    almahu_9948148270702882
    Umfang: XXVIII, 160 p. 39 illus., 26 illus. in color. , online resource.
    Ausgabe: 1st ed. 2019.
    ISBN: 9783030104276
    Inhalt: This open access book explores the collision between the sustainable energy transition and the Internet of Things (IoT). In that regard, this book’s arrival is timely. Not only is the Internet of Things for energy applications, herein called the energy Internet of Things (eIoT), rapidly developing but also the transition towards sustainable energy to abate global climate is very much at the forefront of public discourse. It is within the context of these two dynamic thrusts, digitization and global climate change, that the energy industry sees itself undergoing significant change in how it is operated and managed. This book recognizes that they impose five fundamental energy management change drivers: 1.) the growing demand for electricity, 2.) the emergence of renewable energy resources, 3.) the emergence of electrified transportation, 4.) the deregulation of electric power markets, 5.) and innovations in smart grid technology. Together, they challenge many of the assumptions upon which the electric grid was first built. The goal of this book is to provide a single integrated picture of how eIoT can come to transform our energy infrastructure. This book links the energy management change drivers mentioned above to the need for a technical energy management solution. It, then, describes how eIoT meets many of the criteria required for such a technical solution. In that regard, the book stresses the ability of eIoT to add sensing, decision-making, and actuation capabilities to millions or perhaps even billions of interacting “smart" devices. With such a large scale transformation composed of so many independent actions, the book also organizes the discussion into a single multi-layer energy management control loop structure. Consequently, much attention is given to not just network-enabled physical devices but also communication networks, distributed control & decision making, and finally technical architectures and standards. Having gone into the detail of these many simultaneously developing technologies, the book returns to how these technologies when integrated form new applications for transactive energy. In that regard, it highlights several eIoT-enabled energy management use cases that fundamentally change the relationship between end users, utilities, and grid operators. Consequently, the book discusses some of the emerging applications for utilities, industry, commerce, and residences. The book concludes that these eIoT applications will transform today’s grid into one that is much more responsive, dynamic, adaptive and flexible. It also concludes that this transformation will bring about new challenges and opportunities for the cyber-physical-economic performance of the grid and the business models of its increasingly growing number of participants and stakeholders.
    Anmerkung: Chapter1: eIoT as a Solution to Energy Management Change Drivers -- Chapter2: eIoT Activates the Grid Periphery -- Chapter3: The Development of IoT within Energy Infrastructure -- Chapter4: Transactive Energy Applications of eIoT -- Chapter5: eIoT Transforms the Future Electric Grid.
    In: Springer eBooks
    Weitere Ausg.: Printed edition: ISBN 9783030104269
    Weitere Ausg.: Printed edition: ISBN 9783030104283
    Sprache: Englisch
    Bibliothek Standort Signatur Band/Heft/Jahr Verfügbarkeit
    BibTip Andere fanden auch interessant ...
  • 4
    Online-Ressource
    Online-Ressource
    Cham : Springer Nature | Cham :Springer International Publishing :
    UID:
    edocfu_9959051480502883
    Umfang: 1 online resource (XXVIII, 160 p. 39 illus., 26 illus. in color.)
    Ausgabe: 1st ed. 2019.
    ISBN: 3-030-10427-3
    Inhalt: This open access book explores the collision between the sustainable energy transition and the Internet of Things (IoT). In that regard, this book’s arrival is timely. Not only is the Internet of Things for energy applications, herein called the energy Internet of Things (eIoT), rapidly developing but also the transition towards sustainable energy to abate global climate is very much at the forefront of public discourse. It is within the context of these two dynamic thrusts, digitization and global climate change, that the energy industry sees itself undergoing significant change in how it is operated and managed. This book recognizes that they impose five fundamental energy management change drivers: 1.) the growing demand for electricity, 2.) the emergence of renewable energy resources, 3.) the emergence of electrified transportation, 4.) the deregulation of electric power markets, 5.) and innovations in smart grid technology. Together, they challenge many of the assumptions upon which the electric grid was first built. The goal of this book is to provide a single integrated picture of how eIoT can come to transform our energy infrastructure. This book links the energy management change drivers mentioned above to the need for a technical energy management solution. It, then, describes how eIoT meets many of the criteria required for such a technical solution. In that regard, the book stresses the ability of eIoT to add sensing, decision-making, and actuation capabilities to millions or perhaps even billions of interacting “smart" devices. With such a large scale transformation composed of so many independent actions, the book also organizes the discussion into a single multi-layer energy management control loop structure. Consequently, much attention is given to not just network-enabled physical devices but also communication networks, distributed control & decision making, and finally technical architectures and standards. Having gone into the detail of these many simultaneously developing technologies, the book returns to how these technologies when integrated form new applications for transactive energy. In that regard, it highlights several eIoT-enabled energy management use cases that fundamentally change the relationship between end users, utilities, and grid operators. Consequently, the book discusses some of the emerging applications for utilities, industry, commerce, and residences. The book concludes that these eIoT applications will transform today’s grid into one that is much more responsive, dynamic, adaptive and flexible. It also concludes that this transformation will bring about new challenges and opportunities for the cyber-physical-economic performance of the grid and the business models of its increasingly growing number of participants and stakeholders.
    Anmerkung: Chapter1: eIoT as a Solution to Energy Management Change Drivers -- Chapter2: eIoT Activates the Grid Periphery -- Chapter3: The Development of IoT within Energy Infrastructure -- Chapter4: Transactive Energy Applications of eIoT -- Chapter5: eIoT Transforms the Future Electric Grid. , English
    Weitere Ausg.: ISBN 3-030-10426-5
    Sprache: Englisch
    Bibliothek Standort Signatur Band/Heft/Jahr Verfügbarkeit
    BibTip Andere fanden auch interessant ...
  • 5
    Online-Ressource
    Online-Ressource
    Cham : Springer Nature | Cham :Springer International Publishing :
    UID:
    edoccha_9959051480502883
    Umfang: 1 online resource (XXVIII, 160 p. 39 illus., 26 illus. in color.)
    Ausgabe: 1st ed. 2019.
    ISBN: 3-030-10427-3
    Inhalt: This open access book explores the collision between the sustainable energy transition and the Internet of Things (IoT). In that regard, this book’s arrival is timely. Not only is the Internet of Things for energy applications, herein called the energy Internet of Things (eIoT), rapidly developing but also the transition towards sustainable energy to abate global climate is very much at the forefront of public discourse. It is within the context of these two dynamic thrusts, digitization and global climate change, that the energy industry sees itself undergoing significant change in how it is operated and managed. This book recognizes that they impose five fundamental energy management change drivers: 1.) the growing demand for electricity, 2.) the emergence of renewable energy resources, 3.) the emergence of electrified transportation, 4.) the deregulation of electric power markets, 5.) and innovations in smart grid technology. Together, they challenge many of the assumptions upon which the electric grid was first built. The goal of this book is to provide a single integrated picture of how eIoT can come to transform our energy infrastructure. This book links the energy management change drivers mentioned above to the need for a technical energy management solution. It, then, describes how eIoT meets many of the criteria required for such a technical solution. In that regard, the book stresses the ability of eIoT to add sensing, decision-making, and actuation capabilities to millions or perhaps even billions of interacting “smart" devices. With such a large scale transformation composed of so many independent actions, the book also organizes the discussion into a single multi-layer energy management control loop structure. Consequently, much attention is given to not just network-enabled physical devices but also communication networks, distributed control & decision making, and finally technical architectures and standards. Having gone into the detail of these many simultaneously developing technologies, the book returns to how these technologies when integrated form new applications for transactive energy. In that regard, it highlights several eIoT-enabled energy management use cases that fundamentally change the relationship between end users, utilities, and grid operators. Consequently, the book discusses some of the emerging applications for utilities, industry, commerce, and residences. The book concludes that these eIoT applications will transform today’s grid into one that is much more responsive, dynamic, adaptive and flexible. It also concludes that this transformation will bring about new challenges and opportunities for the cyber-physical-economic performance of the grid and the business models of its increasingly growing number of participants and stakeholders.
    Anmerkung: Chapter1: eIoT as a Solution to Energy Management Change Drivers -- Chapter2: eIoT Activates the Grid Periphery -- Chapter3: The Development of IoT within Energy Infrastructure -- Chapter4: Transactive Energy Applications of eIoT -- Chapter5: eIoT Transforms the Future Electric Grid. , English
    Weitere Ausg.: ISBN 3-030-10426-5
    Sprache: Englisch
    Bibliothek Standort Signatur Band/Heft/Jahr Verfügbarkeit
    BibTip Andere fanden auch interessant ...
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