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    Adaptive cruise control system with fractional order ANFIS PD+I controller: optimization and validation

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    s40430-024-04699-z.pdf (2.052Mb)
    Date
    2024
    Author
    Gunasekaran, Prabhakar
    Sivasubramanian, Rajaram
    Periyasamy, Karuppasamy
    Muthusamy, Suresh
    Mishra, Om Prava
    Ramamoorthi, Ponarun
    Sadasivuni, Kishor Kumar
    Geetha, Mithra
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    Abstract
    Designing the control structures of fractional order PID controllers has proven to be effective in providing adaptability in set point tracing the performance of a nonlinear cruise control system. Wheel rolling resistance, wind drag force, and road gradient are incorporated into the design to better describe the system under consideration and to show how the nonlinear cruise control system behaves. This study presents a comparative investigation using simulation between control structures such as fractional order proportional-integral-derivative, fractional order integral minus proportional derivative, and fractional order proportional integral minus derivative. By preserving integral error indices as the goal function, a genetic algorithm is used to improve the controller gain parameters and fractional scaling values. To prevent integral windup conflicts and derivative boost issues, both traditional fractional order structures and adaptive neuro-fuzzy-based fractional order structures were used to create the adaptive cruise control system. The FO ANFIS PD plus I controller for the cruise control system exceeds the competition in servo and regulatory difficulties.
    DOI/handle
    http://dx.doi.org/10.1007/s40430-024-04699-z
    http://hdl.handle.net/10576/63053
    Collections
    • Center for Advanced Materials Research [‎1482‎ items ]
    • Mechanical & Industrial Engineering [‎1461‎ items ]

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