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AuthorNizami, Tousif Khan
AuthorChakravarty, Arghya
AuthorMahanta, Chitralekha
AuthorIqbal, Atif
AuthorHosseinpour, Alireza
Available date2023-05-21T08:32:43Z
Publication Date2022
Publication NameIET Power Electronics
ResourceScopus
URIhttp://dx.doi.org/10.1049/pel2.12330
URIhttp://hdl.handle.net/10576/43081
AbstractA novel neuro-adaptive control scheme is proposed in the context of angular velocity tracking in DC-DC buck converter driven permanent magnet DC motor system. The controller builds upon the idea of backstepping and consists of a fast single hidden layer Hermite neural network (HNN) module equipped with on-board (adaptive) learning to counteract the unknown non-linear time-varying load torque and to ensure nominal tracking performance. The HNN has a simple structure and exhibits promising speed and accuracy in estimating dynamic variations in the unknown load torque apart from being computationally efficient. The proposed method guarantees a rapid recovery of nominal angular velocity tracking under parametric and non-parametric uncertainties. In order to verify the performance of the proposed neuro-adaptive speed controller, extensive experimentation has been conducted in the laboratory under various real-time scenarios. Results are obtained for start-up, time-varying angular velocity tracking and under the influence of highly non-linear unknown load torque. The performance metrics such as peak undershoot/overshoot and settling time are computed to quantify the transient response behaviour. The results clearly substantiate theoretical propositions and demonstrate an enhanced dynamic speed tracking under a wide operating regime, thus confirming the suitability of proposed method for fast industrial applications. 2022 The Authors. IET Power Electronics published by John Wiley & Sons Ltd on behalf of The Institution of Engineering and Technology.
Languageen
PublisherJohn Wiley and Sons Inc
SubjectAdaptive control systems
Angular velocity
Backstepping
DC motors
DC-DC converters
Multilayer neural networks
Permanent magnets
Torque measurement
Transient analysis
Adaptive control schemes
Dynamic performance
Hermite
Load torques
Neural-networks
Neuro-adaptive control
Non linear
Nonlinear adaptive control
PMDC motor
Velocity tracking
Controllers
TitleEnhanced dynamic performance in DC-DC converter-PMDC motor combination through an intelligent non-linear adaptive control scheme
TypeArticle
Pagination1607-1616
Issue Number15
Volume Number15
dc.accessType Abstract Only


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