Coordination of power-system stabilizers and battery energy-storage system controllers to improve probabilistic small-signal stability considering integration of renewable-energy resources

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Publication Details

Author listGurung S., Naetiladdanon S., Sangswang A.

PublisherMDPI

Publication year2019

JournalEntropy (1099-4300)

Volume number9

Issue number6

ISSN1099-4300

eISSN1099-4300

URLhttps://www.scopus.com/inward/record.uri?eid=2-s2.0-85068080894&doi=10.3390%2fe21060597&partnerID=40&md5=399beb81a63746f810f4f96389c87bc9

LanguagesEnglish-Great Britain (EN-GB)


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Abstract

In the present article, fractional-order heat and wave equations are solved by using the natural transform decomposition method. The series form solutions are obtained for fractional-order heat and wave equations, using the proposed method. Some numerical examples are presented to understand the procedure of natural transform decomposition method. The natural transform decomposition method procedure has shown that less volume of calculations and a high rate of convergence can be easily applied to other nonlinear problems. Therefore, the natural transform decomposition method is considered to be one of the best analytical techniques, in order to solve fractional-order linear and nonlinear Partial deferential equations, particularly fractional-order heat and wave equation. ฉ 2019 by the authors.


Keywords

Fractional-order heat and wave equations


Last updated on 2023-29-09 at 10:30