HIERARCHICAL VOLTAGE CONTROL AND REDUCTION OF SENSITIVITY MATRICES FOR LARGE-SCALE POWER SYSTEMS.

Shinichi Iwamoto

    Research output: Contribution to journalArticle

    2 Citations (Scopus)

    Abstract

    The hierarchical control discussed in this paper combines both the centralized and the decentralized control scheme. The proposed hierarchical control scheme is composed of two control levels. At the lower level, the decentralized scheme is employed whereas subsystems are coordinated at the upper level to optimize the overall system. This paper proposes a hierarchical voltage control scheme, using voltage sensitivity matrices, which solves these difficulties.

    Original languageEnglish
    Pages (from-to)25-32
    Number of pages8
    JournalElectrical Engineering in Japan (English translation of Denki Gakkai Ronbunshi)
    Volume97
    Issue number3
    Publication statusPublished - 1977 May

    Fingerprint

    Voltage control
    Decentralized control
    Level control
    Electric potential

    ASJC Scopus subject areas

    • Electrical and Electronic Engineering

    Cite this

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    title = "HIERARCHICAL VOLTAGE CONTROL AND REDUCTION OF SENSITIVITY MATRICES FOR LARGE-SCALE POWER SYSTEMS.",
    abstract = "The hierarchical control discussed in this paper combines both the centralized and the decentralized control scheme. The proposed hierarchical control scheme is composed of two control levels. At the lower level, the decentralized scheme is employed whereas subsystems are coordinated at the upper level to optimize the overall system. This paper proposes a hierarchical voltage control scheme, using voltage sensitivity matrices, which solves these difficulties.",
    author = "Shinichi Iwamoto",
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    AB - The hierarchical control discussed in this paper combines both the centralized and the decentralized control scheme. The proposed hierarchical control scheme is composed of two control levels. At the lower level, the decentralized scheme is employed whereas subsystems are coordinated at the upper level to optimize the overall system. This paper proposes a hierarchical voltage control scheme, using voltage sensitivity matrices, which solves these difficulties.

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