Area of research
Electrical and Electronic Engineering · Computer Networks and Communications
Research interest
Research focused on Asynchronous communication and Bounding overwatch, with related work in Iterative learning control, End-to-end principle, Hidden Markov model. Notable publications include 'Hidden-Markov-Model-Based Asynchronous $H_{\infty }$ Tracking Control of Fuzzy Markov Jump Systems', 'Stability and Stabilization With Additive Freedom for Delayed Takagi–Sugeno Fuzzy Systems by Intermediary-Polynomial-Based Functions', and 'Iterative Learning Control for Time-Varying Systems Subject to Variable Pass Lengths: Application to Robot Manipulators'.
A transformer-based model with feature compensation and local information enhancement for end-to-end pest detection
Gradient projection Newton algorithm for sparse collaborative learning using synthetic and real datasets of applications
Hidden-Markov-Model-Based Asynchronous $H_{\infty }$ Tracking Control of Fuzzy Markov Jump Systems
Stability and Stabilization With Additive Freedom for Delayed Takagi–Sugeno Fuzzy Systems by Intermediary-Polynomial-Based Functions
Iterative Learning Control for Time-Varying Systems Subject to Variable Pass Lengths: Application to Robot Manipulators