The energy internet : an open energy platform to transform legacy power systems into open innovation and global economic engines /
The Energy Internet: An Open Energy Platform to Transform Legacy Power Systems into Open Innovation and Global Economic Engines is an innovative concept that changes the way people generate, distribute and consume electrical energy. With the potential to transform the infrastructure of the electric...
Clasificación: | Libro Electrónico |
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Otros Autores: | , |
Formato: | Electrónico eBook |
Idioma: | Inglés |
Publicado: |
Duxford, United Kingdom :
Woodhead Publishing is an imprint of Elsevier,
[2019]
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Colección: | Woodhead Publishing in energy.
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Temas: | |
Acceso en línea: | Texto completo |
Tabla de Contenidos:
- Front Cover; The Energy Internet; Related titles; The Energy Internet; Copyright; Contents; List of contributors; Preface; One
- Enabling Technologies and Technical Solutions; 1
- Centralized, decentralized, and distributed control for Energy Internet; 1.1 Introduction; 1.1.1 Smart grid versus Energy Internet; 1.1.2 The role of microgrids in the structure of the Energy Internet; 1.1.3 Data acquisition in the legacy power system and Energy Internet network; 1.2 Energy management approaches in energy networks; 1.2.1 Centralized control; 1.2.2 Decentralized control; 1.2.3 Distributed control
- 1.3 Characteristics of communication networks of Energy Internet network1.4 Conclusion and future research; References; 2
- Solid state transformers, the Energy Router and the Energy Internet; 2.1 The Energy Internet; 2.2 The Energy Router; 2.3 Medium voltage power electronics based distribution system; 2.4 Status of solid state transformer developments; 2.5 Smart grid functionalities of the solid state transformer; 2.5.1 Reactive power support; 2.5.2 Voltage sag mitigation; 2.5.3 Harmonic mitigation; 2.5.4 Current limiting and short circuit protection; 2.5.5 DC connectivity and DC microgrid
- 2.5.6 Solid state transformer as an Energy Router2.6 Conclusions; References; 3
- Energy Internet blockchain technology; 3.1 Overview; 3.2 The application of blockchain technology in energy scenarios; 3.2.1 The impact of blockchain technology on the Energy Internet; 3.2.1.1 The inherent consistency of the Energy Internet and blockchain technology; 3.2.2 Application of blockchain technology in energy scenarios; 3.2.2.1 Pain points of the energy industry; Power generation; Power transmission and distribution; Power consumption; 3.2.3 Application scenarios; 3.2.3.1 Power generation
- Auxiliary servicesPower generation management; Distributed power source operation and maintenance management; 3.2.3.2 Transmission and distribution; Automatic dispatch; Unified multienergy metering; Security of information and the physical system; 3.2.3.3 Load; Design of virtual power plant; Application in the carbon market; 3.3 Application case analysis of blockchain technology in the energy industry; 3.3.1 America: TransActive Grid; 3.3.2 Australia: Power Ledger; 3.3.3 China: Energy Blockchain Lab; 3.4 Challenges in the application of blockchain technology in the energy industry
- 3.4.1 Technical challenges3.4.1.1 Low throughput; 3.4.1.2 Underdeveloped IOT technology; 3.4.1.3 Validation breaches and privacy leakage risks; 3.4.2 Policy challenges; 3.4.2.1 Regulatory and normative policies; 3.4.2.2 Industrial monopoly limits the application of the energy blockchain; 3.4.2.3 Obstacle from the game of stakeholders; 3.4.2.4 Collection of electricity surcharge; 3.4.2.5 Initial coin offering financing problem; 3.5 Conclusion; References; Further reading; 4
- Resilient community microgrids: governance and operational challenges; 4.1 Introduction