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List of works by Jing Na

Adaptive Finite-Time Fuzzy Control of Nonlinear Active Suspension Systems With Input Delay

scientific article published on 20 February 2019

Adaptive Observer-Based Parameter Estimation With Application to Road Gradient and Vehicle Mass Estimation

Adaptive control for nonlinear pure-feedback systems with high-order sliding mode observer

scientific article

Adaptive control of nonlinear uncertain active suspension systems with prescribed performance

scientific article published on 14 July 2014

Adaptive control of robotic servo system with friction compensation

Adaptive discrete neural observer design for nonlinear systems with unknown time-delay

scholarly article by Jing Na et al published 28 February 2011 in International Journal of Robust and Nonlinear Control

Adaptive memoryless observer design for nonlinear time-delay systems

Adaptive neural dynamic surface control for servo systems with unknown dead-zone

An adaptive observer-based parameter estimation algorithm with application to road gradient and vehicle's mass estimation

Concept for hybrid optimization for schedule design in nonlinear networked control

Finite-Time Convergence Adaptive Neural Network Control for Nonlinear Servo Systems

scientific article published on 07 February 2019

Finite-time adaptive distributed control for double integrator leader-agent synchronisation

Neural Network Control of Nonlinear Time-Delay System with Unknown Dead-Zone and Its Application to a Robotic Servo System

Neural-Network-Based Adaptive Funnel Control for Servo Mechanisms With Unknown Dead-Zone

scientific article published on 30 October 2018

Nonlinear observer design for discrete MIMO systems with unknown time delay

Robust adaptive finite-time parameter estimation and control for robotic systems

scholarly article by Jing Na et al published 30 September 2014 in International Journal of Robust and Nonlinear Control

Robust adaptive finite-time parameter estimation and control of nonlinear systems

Robustness-verification in networked control systems via sum-of-square approach