New Variant-Parameter ZNN Solutions for Resolving Time-Variant Plural Lyapunov Equation Under Preassigned Time
Author:
Affiliation:
1. Key Laboratory of Advanced Control and Optimization of Jiangxi Province, East China Jiaotong University, Nanchang, China
Funder
National Natural Science Foundation of China
Technological Innovation Guidance Program of Jiangxi Province
Publisher
Institute of Electrical and Electronics Engineers (IEEE)
Subject
Electrical and Electronic Engineering,Computer Science Applications,Information Systems,Control and Systems Engineering
Link
http://xplorestaging.ieee.org/ielx7/9424/10116046/09779511.pdf?arnumber=9779511
Reference24 articles.
1. A Circadian Rhythms Learning Network for Resisting Cognitive Periodic Noises of Time-Varying Dynamic System and Applications to Robots
2. New Discretized Zeroing Neural Network Models for Solving Future System of Bounded Inequalities and Nonlinear Equations Aided With General Explicit Linear Four-Step Rule
3. A Complex Varying-Parameter Convergent-Differential Neural-Network for Solving Online Time-Varying Complex Sylvester Equation
4. Recurrent Neural Network for Kinematic Control of Redundant Manipulators With Periodic Input Disturbance and Physical Constraints
5. A new class of finite-time nonlinear consensus protocols for multi-agent systems
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1. Comprehensive Study on a Fuzzy Parameter Strategy of Zeroing Neural Network for Time-Variant Complex Sylvester Equation;IEEE Transactions on Fuzzy Systems;2024-08
2. Norm‐based zeroing neural dynamics for time‐variant non‐linear equations;CAAI Transactions on Intelligence Technology;2024-07-03
3. Hyperbolic Tangent-Type Variant-Parameter and Robust ZNN Solutions for Resolving Time-Variant Sylvester Equation in Preassigned-Time;Neural Processing Letters;2024-05-13
4. Adaptive Neural Preassigned-Time Control for Macro–Micro Composite Positioning Stage With Displacement Constraints;IEEE Transactions on Industrial Informatics;2024-02
5. Model-free kinematic control of redundant manipulators with simultaneous joint-physical-limit and joint-angular-drift handling;ISA Transactions;2023-08
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