Title :
A kind of fault-tolerant decouple and control algorithms for non-linear and time-varying mimo system based on neuron adaptive PID and neural network
Author_Institution :
North China Electr. Power Univ., Beijing
Abstract :
Effective control for non-linear MIMO systems with strong couples and time-varying property can not be implemented with traditional decouple and control algorithms. Some currently used algorithms cause problems in real-time control and practical implementation. A kind of fault-tolerant decouple and control algorithm for non-linear and time-varying MIMO systems based on neuron adaptive PID and neural network is proposed. With the proposed algorithm, online control for non-linear and time-varying MIMO systems is implemented by neuron adaptive PID controller and online decouple for non-linear and time-varying MIMO systems is implemented by two-layered neural network based on gradient descent searching algorithms for diagonalization of relative gain sensitivity matrix. Decouple and control are implemented in parallel. Stability analysis for the close loop system with neuron adaptive PID controller, online optimization algorithms for proportional factors and self-learning rates are given. A compensating decoupler with two-layered neural network is constructed. Self-learning algorithm based on diagonalization of relative gain sensitivity matrix is used in decouple network and gradient descent algorithm is used in self-learning process. Real-time simulation results show the proposed algorithms are effective in improving dynamic performance of system and reducing couples between variables greatly. Meanwhile, strong fault-tolerant performance is achieved. Satisfactory control effects are achieved.
Keywords :
MIMO systems; adaptive control; fault tolerance; gradient methods; matrix algebra; neurocontrollers; nonlinear control systems; optimisation; search problems; sensitivity analysis; three-term control; time-varying systems; close loop system; fault-tolerant decouple algorithm; gradient descent searching algorithm; neuron adaptive PID control; nonlinear MIMO systems; online optimization algorithm; relative gain sensitivity matrix; self-learning algorithm; stability analysis; time-varying system; Adaptive control; Control systems; Fault tolerant systems; MIMO; Neural networks; Neurons; Nonlinear control systems; Programmable control; Three-term control; Time varying systems; Adaptive control; MIMO system; decouple; fault-tolerant; neural network; non-linear system;
Conference_Titel :
Wavelet Analysis and Pattern Recognition, 2007. ICWAPR '07. International Conference on
Conference_Location :
Beijing
Print_ISBN :
978-1-4244-1065-1
Electronic_ISBN :
978-1-4244-1066-8
DOI :
10.1109/ICWAPR.2007.4420754