Robust-Adaptive synchronization of drive and response systems using coupled chaotic adaptive synchronous observers

Muhammad Majid Hussain, Muhammad Siddique, Muhammad Rehan, Muntazir Hussain

    Research output: Chapter in Book/Report/Conference proceedingConference contributionpeer-review

    Abstract

    n this paper, robust-adaptive control methodology is developed by augmenting the a-modification as well as the use of filters with already established control scheme based on nonlinear and adaptive coupled chaotic adaptive Synchronous observers for synchronization of the nonlinear drive and response systems, by the same authors. The purpose of this amendment is to develop an adaptive control scheme capable of synchronizing two nonlinear systems even impelled by the disturbances and noises. The effect of disturbances and effect of noise reduces the efficacy of previously proposed control methodology. The a-modification facilitates the adaptation of unknown parameters with bounds in the divergence of their values and thus enhances the robustness in adaptive control scheme. Along with the disturbance rejection by a-modification, the effect of noise in output measurement is catered by the use of low pass filters. The authenticity of proposed amendments is validated by simulation of synchronization of FitzHugh-Nagumo neural drive and response system under the effect of disturbances and noise.
    Original languageEnglish
    Title of host publicationProceedings 2017 IEEE Conference on Systems, Process and Control (ICSPC)
    PublisherInstitute of Electrical and Electronics Engineers
    Pages24-29
    Number of pages6
    ISBN (Electronic)978-1-5386-0386-4 , 978-1-5386-0385-7 , 978-1-5386-0387-1
    DOIs
    Publication statusPublished - 12 Mar 2018
    Event2017 IEEE Conference on Systems, Process and Control - Hatten Hotel , Melaka, Malaysia
    Duration: 15 Dec 201717 Dec 2017

    Conference

    Conference2017 IEEE Conference on Systems, Process and Control
    Abbreviated titleICSPC 2017
    Country/TerritoryMalaysia
    CityMelaka
    Period15/12/1717/12/17

    Keywords

    • Robust-adaptive control
    • Synchronization
    • FitzHugh-Nagumo chaotic systems
    • V modification
    • Noise filtering

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