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Design and Management of Energy-Efficient Hybrid Electrical Energy Storage Systems electronic resource by Younghyun Kim, Naehyuck Chang.

By: Kim, Younghyun [author.]Contributor(s): Chang, Naehyuck [author.] | SpringerLink (Online service)Material type: TextTextPublication details: Cham : Springer International Publishing : Imprint: Springer, 2014Description: XII, 106 p. 60 illus., 14 illus. in color. online resourceContent type: text Media type: computer Carrier type: online resourceISBN: 9783319072814Subject(s): Systems engineering | Production of electric energy or power | Energy | Energy Storage | Circuits and Systems | Power Electronics, Electrical Machines and NetworksDDC classification: 621.3126 LOC classification: TJ165Online resources: Click here to access online
Contents:
Introduction -- Background and Related Work -- Hybrid Electrical Energy Storage systems Design -- Architectures for Energy Efficiency -- Joint Optimization with Power Sources -- Implementation and Application -- Conclusions and Future Directions.
In: Springer eBooksSummary: This book covers system-level design optimization and implementation of hybrid energy storage systems. The author introduces various techniques to improve the performance of hybrid energy storage systems, in the context of design optimization and automation. Various energy storage techniques are discussed, each with its own advantages and drawbacks, offering viable, hybrid approaches to building a high performance, low cost energy storage system.  Novel design optimization techniques and energy-efficient operation schemes are introduced. The author also describes the technical details of an actual prototype implementation of a 300 W scale hybrid energy storage system. ·         Provides system-level design optimization schemes to improve efficiency in hybrid energy storage systems; ·         Discusses system architectures and optimization techniques; ·         Includes technical details for implementing a physical prototype of a hybrid energy storage system.
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Introduction -- Background and Related Work -- Hybrid Electrical Energy Storage systems Design -- Architectures for Energy Efficiency -- Joint Optimization with Power Sources -- Implementation and Application -- Conclusions and Future Directions.

This book covers system-level design optimization and implementation of hybrid energy storage systems. The author introduces various techniques to improve the performance of hybrid energy storage systems, in the context of design optimization and automation. Various energy storage techniques are discussed, each with its own advantages and drawbacks, offering viable, hybrid approaches to building a high performance, low cost energy storage system.  Novel design optimization techniques and energy-efficient operation schemes are introduced. The author also describes the technical details of an actual prototype implementation of a 300 W scale hybrid energy storage system. ·         Provides system-level design optimization schemes to improve efficiency in hybrid energy storage systems; ·         Discusses system architectures and optimization techniques; ·         Includes technical details for implementing a physical prototype of a hybrid energy storage system.

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