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Power Electronics and Power Systems

Design and Analysis of Distributed Energy Management Systems

Integration of EMS, EV, and ICT

Editors: Suzuki, T., Inagaki, S., Susuki, Y., Tran, A.T. (Eds.)

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  • Describes design and analysis of energy management systems  
  • Illustrates the synthesis of distributed energy management systems based on aggregation of local agents 
  • Discusses dependability issues of the distributed EMS with emphasis on the verification scheme based on remote-operational HILS (Hardware-In-the-Loop) simulation and cyber security
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eBook 117,69 €
price for Spain (gross)
  • Due: January 21, 2020
  • ISBN 978-3-030-33672-1
  • Digitally watermarked, DRM-free
  • Included format: EPUB, PDF
  • ebooks can be used on all reading devices
Hardcover 145,59 €
price for Spain (gross)
  • Due: January 22, 2020
  • ISBN 978-3-030-33671-4
  • Free shipping for individuals worldwide
  • The final prices may differ from the prices shown due to specifics of VAT rules
About this book

This book provides key ideas for the design and analysis of complex energy management systems (EMS) for distributed power networks. Future distributed power networks will have strong coupling with (electrified) mobility and information-communication technology (ICT) and this book addresses recent challenges for electric vehicles in the EMS, and how to synthesize the distributed power network using ICT. This book not only describes theoretical developments but also shows many applications using test beds and provides an overview of cutting edge technologies by leading researchers in their corresponding fields. 

  • Describes design and analysis of energy management systems;
  • Illustrates the synthesis of distributed energy management systems based on aggregation of local agents;
  • Discusses dependability issues of the distributed EMS with emphasis on the verification scheme based on remote-operational hardware-in-the-loop (HIL) simulation and cybersecurity.

About the authors

Tatsuya Suzuki is a Professor at Nagoya University’s Graduate School of Engineering. 

 

Shinkichi Inagaki is an Associate Professor at Nagoya University’s Graduate School of Engineering. 

 

Yoshihiko Susuki is an Associate Professor at Osaka Prefecture University’s Graduate School of Engineering.

 

Anh Tuan Tran is a Post Doctoral researcher at Nagoya University’s Graduate School of Engineering. ng. 


Table of contents (9 chapters)

Table of contents (9 chapters)
  • Activity-Based Modeling for Integration of Energy Systems for House and Electric Vehicle

    Pages 3-25

    Yamaguchi, Yohei (et al.)

  • Probabilistic Model and Prediction of Vehicle Daily Use

    Pages 27-45

    Inagaki, Shinkichi (et al.)

  • Design of a Home Energy Management System Integrated with an Electric Vehicle (V2H+ HPWH EMS)

    Pages 47-66

    Tran, Anh Tuan (et al.)

  • Range Extension Autonomous Driving for Electric Vehicles Based on Optimization of Velocity Profile Considering Traffic Signal Information

    Pages 67-84

    Fujimoto, Hiroshi (et al.)

  • Real-Time Pricing and Decentralized Optimization Strategy for Power Flow Balancing in EV/PHV Storage Management

    Pages 87-106

    Hirata, Kenji

Buy this book

eBook 117,69 €
price for Spain (gross)
  • Due: January 21, 2020
  • ISBN 978-3-030-33672-1
  • Digitally watermarked, DRM-free
  • Included format: EPUB, PDF
  • ebooks can be used on all reading devices
Hardcover 145,59 €
price for Spain (gross)
  • Due: January 22, 2020
  • ISBN 978-3-030-33671-4
  • Free shipping for individuals worldwide
  • The final prices may differ from the prices shown due to specifics of VAT rules
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Bibliographic Information

Bibliographic Information
Book Title
Design and Analysis of Distributed Energy Management Systems
Book Subtitle
Integration of EMS, EV, and ICT
Editors
  • Tatsuya Suzuki
  • Shinkichi Inagaki
  • Yoshihiko Susuki
  • Anh Tuan Tran
Series Title
Power Electronics and Power Systems
Copyright
2020
Publisher
Springer International Publishing
Copyright Holder
Springer Nature Switzerland AG
eBook ISBN
978-3-030-33672-1
DOI
10.1007/978-3-030-33672-1
Hardcover ISBN
978-3-030-33671-4
Series ISSN
2196-3185
Edition Number
1
Number of Pages
X, 205
Number of Illustrations
37 b/w illustrations, 53 illustrations in colour
Topics