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A neoteric closed loop feedback controller based on correlative-elemental curvature algorithm

Nipan Kumar Das Das (Jorhat Engineering College, Jorhat, India)
Mrinal Buragohain (Jorhat Engineering College, Jorhat, India)

Circuit World

ISSN: 0305-6120

Article publication date: 3 June 2021

Issue publication date: 16 June 2022




The power framework has become a vital part in the day-to-day life and exhibits a rapid development in this current era. Due to the fact of huge power utilization, the power frameworks fall under several power transmission-related concerns. Precisely, frequency deviation has generated a huge impact during power transmission; this in turn highly reduces the power system stability as well as reliability too.


To boost the system’s efficacy, this study proposes a neoteric closed loop feedback controller in which a control algorithm named correlative-elemental-curvature algorithm is introduced with a constant threshold.


With the aim of mitigating frequency deviation, a stability analysis technique called Retrofit Lyapunov’s method is deployed in the controller. This would simultaneously reduce the load disturbances along with tie-line synchronization issues faced with the prior controllers. Optimization is carried out with the aid of duelist optimization algorithm, which tunes the controller parameters thereby mitigating the complexities while designing a loop feedback controller power framework.


The efficacy of the proposed work is assessed with the aid of metrics, such as integral absolute error, accuracy and settling time. Thus, the proposed work enhances the system reliability as well as the stability by mitigating the frequency deviation related issues and guarantees reliable power transmission.



Das, N.K.D. and Buragohain, M. (2022), "A neoteric closed loop feedback controller based on correlative-elemental curvature algorithm", Circuit World, Vol. 48 No. 3, pp. 341-353.



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