WCMAC-based control system design for nonlinear systems using
Por um escritor misterioso
Descrição
This paper presents a wavelet cerebellar model articulation controller (WCMAC) based adaptive control design for nonlinear systems using a particle swarm optimization (PSO). The WCMAC is the main tracking controller and a robust compensation controll
![WCMAC-based control system design for nonlinear systems using](https://www.researchgate.net/profile/Jiraphon-Srisertpol-2/publication/327682629/figure/fig1/AS:676363317047298@1538268989825/A-schematic-A-and-a-free-body-diagram-B-of-an-MLB-system_Q320.jpg)
Block diagram of the proposed ATFCMACB control system
![WCMAC-based control system design for nonlinear systems using](https://onlinelibrary.wiley.com/cms/asset/09c6bf95-35c6-404c-8636-5a9adaab902d/asjc2926-fig-0012-m.jpg)
Wavelet CMAC for MIMO uncertain nonlinear systems using a modified social ski‐driver algorithm - Lin - 2023 - Asian Journal of Control - Wiley Online Library
![WCMAC-based control system design for nonlinear systems using](https://media.springernature.com/lw685/springer-static/image/art%3A10.1007%2Fs40815-019-00735-6/MediaObjects/40815_2019_735_Fig3_HTML.png)
Self-Evolving Interval Type-2 Wavelet Cerebellar Model Articulation Control Design for Uncertain Nonlinear Systems Using PSO
![WCMAC-based control system design for nonlinear systems using](https://www.researchgate.net/publication/339157349/figure/fig1/AS:857199291150336@1581383645453/Block-diagram-of-self-evolving-recurrent-interval-type-2-Petri-cerebellar-model_Q320.jpg)
PDF) Chaotic Synchronization Using a Self-Evolving Recurrent Interval Type-2 Petri Cerebellar Model Articulation Controller
![WCMAC-based control system design for nonlinear systems using](https://ars.els-cdn.com/content/image/1-s2.0-S096007791831021X-gr5.jpg)
A modified function-link fuzzy cerebellar model articulation controller using a PI-type learning algorithm for nonlinear system synchronization and control - ScienceDirect
![WCMAC-based control system design for nonlinear systems using](https://media.springernature.com/m685/springer-static/image/art%3A10.1007%2Fs40815-019-00735-6/MediaObjects/40815_2019_735_Fig5_HTML.png)
Self-Evolving Interval Type-2 Wavelet Cerebellar Model Articulation Control Design for Uncertain Nonlinear Systems Using PSO
![WCMAC-based control system design for nonlinear systems using](https://www.researchgate.net/publication/325977038/figure/fig3/AS:960256523907074@1605954404201/Simulation-results-of-TSKCMACB-control-system-a-Sinusoidal-command-and-b-trapezoid_Q320.jpg)
Block diagram of the proposed ATFCMACB control system
![WCMAC-based control system design for nonlinear systems using](https://www.researchgate.net/publication/325977038/figure/fig1/AS:960256519708679@1605954403739/Block-diagram-of-the-proposed-ATFCMACB-control-system_Q320.jpg)
Adaptive TOPSIS fuzzy CMAC back-stepping control system design for nonlinear systems
![WCMAC-based control system design for nonlinear systems using](https://media.springernature.com/lw685/springer-static/image/art%3A10.1007%2Fs40815-019-00735-6/MediaObjects/40815_2019_735_Fig9_HTML.png)
Self-Evolving Interval Type-2 Wavelet Cerebellar Model Articulation Control Design for Uncertain Nonlinear Systems Using PSO
![WCMAC-based control system design for nonlinear systems using](https://www.degruyter.com/document/doi/10.1515/nleng-2016-0077/asset/graphic/j_nleng-2016-0077_fig_005.png)
Nonlinear control systems - A brief overview of historical and recent advances
![WCMAC-based control system design for nonlinear systems using](http://flyingv.ucsd.edu/krstic/book1_files/image001.png)
Nonlinear and Adaptive Control Design
![WCMAC-based control system design for nonlinear systems using](https://ars.els-cdn.com/content/image/1-s2.0-S096007791831021X-gr1.jpg)
A modified function-link fuzzy cerebellar model articulation controller using a PI-type learning algorithm for nonlinear system synchronization and control - ScienceDirect
![WCMAC-based control system design for nonlinear systems using](https://ars.els-cdn.com/content/image/1-s2.0-S096007791831021X-gr6.jpg)
A modified function-link fuzzy cerebellar model articulation controller using a PI-type learning algorithm for nonlinear system synchronization and control - ScienceDirect
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