Assoc.Prof.Dr. WUDHICHAI ASSAWINCHAICHOTE
Email: wudhichai.asa@kmutt.ac.th Phone: 024709056 |
Work Affiliations
- Department of Electronics and Telecommunication Engineering - วิศวกรรม-อิเล็ก (Faculty of Engineering)
- Department of Electronics and Telecommunication Engineering - วิศวกรรม-อิเล็ก (Faculty of Engineering)
- Department of Electronics and Telecommunication Engineering - วิศวกรรม-อิเล็ก (Faculty of Engineering)
Strategic Research Themes
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Publications
- ● A lyapunov-based optimal integral finite-time tracking control approach for asymmetric nonholonomic robotic systems; Alattas K.A., Mobayen S., Assawinchaichote W., et al.; 2021; Journal article
- ● A New Active Fault Tolerant Control System: Predictive Online Fault Estimation; Bavili R.E., Mohammadzadeh A., Tavoosi J., et al.; 2021; Journal article
- ● Design of a Non-Singular Adaptive Integral-Type Finite Time Tracking Control for Nonlinear Systems with External Disturbances; Alattas K.A., Mobayen S., DIn S.U., et al.; 2021; Journal article
- ● Event-Triggered Fuzzy Control for Nonlinear Systems via Sliding Mode Approach; Su X., Wen Y., Shi P., et al.; 2021; Journal article
- ● Event-triggered sliding mode control of networked control systems with Markovian jump parameters; Su, Xiaojie; Wang, Chunlian; Chang, et al.; 2021; Journal article
- ● New PID Parameter Autotuning for Nonlinear Systems Based on a Modified Monkey-Multiagent DRL Algorithm; Zhang H., Assawinchaichote W., Shi Y.; 2021; Journal article
- ● Non-singleton type-3 fuzzy approach for flowmeter fault detection: Experimental study in a gas industry; Wang J.-H., Tavoosi J., Mohammadzadeh A., et al.; 2021; Journal article
- ● Optimal PID Controller Autotuning Design for MIMO Nonlinear Systems Based on the Adaptive SLP Algorithm; Pongfai J., Angeli C., Shi P., et al.; 2021; Journal article
- ● Stability of interval type-3 fuzzy controllers for autonomous vehicles; Tian M.-W., Yan S.-R., Mohammadzadeh A., et al.; 2021; Journal article
- ● A novel optimal PID controller autotuning design based on the SLP algorithm; Pongfai J., Su X., Zhang H., et al.; 2020; Journal article
- ● Control of time-varying delay systems with uncertain parameters via fuzzy-modeled prescribed performance control approach; Ruangsang S., Jirasereeamornkul K., Assawinchaichote W.; 2020; Journal article
- ● Event-Triggered Fuzzy Control of Repeated Scalar Nonlinear Systems and its Application to Chua's Circuit System; Wen Y., Chang H., Su X., et al.; 2020; Journal article
- ● Fuzzy-Modeled Prescribed Performance Integral Controller Design for Nonlinear Descriptor System with Uncertainties; Vorrawan C., Assawinchaichote W., Shi Y., et al.; 2020; Journal article
- ● Novel D-SLP Controller Design for Nonlinear Feedback Control; Pongfai J., Assawinchaichote W., Shi P., et al.; 2020; Journal article
- ● PID Control Based On Double Fuzzy RBF Neural Network For 7-DOF Manipulator; Zhang H., Assawinchaichote W.; 2020; Conference proceedings article
- ● PID controller autotuning design by a deterministic Q-SLP algorithm; Pongfai J., Su X., Zhang H., et al.; 2020; Journal article
- ● A novel robust H∞ fuzzy state feedback plus state-derivative feedback controller design for nonlinear time-varying delay systems; Ruangsang S., Assawinchaichote W.; 2019; Conference proceedings article
- ● A novel robust H-infinity fuzzy state feedback plus state-derivative feedback controller design for nonlinear time-varying delay systems; Ruangsang, S; Assawinchaichote, W; 2019; Journal article
- ● FURTHER STUDIES ON ROBUST H-infinity STATE FEEDBACK PLUS STATE-DERIVATIVE FEEDBACK CONTROLLER FOR UNCERTAIN FUZZY DYNAMIC SYSTEMS; Ruangsang, S; Assawinchaichote, W; 2019; Journal article
- ● Further studies on robust h∞ state feedback plus state-derivative feedback controller for uncertain fuzzy dynamic systems; Ruangsang S., Assawinchaichote W.; 2019; Journal article
Expertise
- Control Theory Application
- Decision making
- Event-Triggered Systems
- Fuzzy Modeling and Control
- H-Infinity Control
- Markovian Jump Systems
- Optimization Algorithms
- Robust Control and Filtering
- Singular Perturbation Systems