Abstract:
From system control point of view, asynchronized synchronous motor is a complex nonlinear plant with uncertainties, and is hard to be controlled by traditional control me...Show MoreMetadata
Abstract:
From system control point of view, asynchronized synchronous motor is a complex nonlinear plant with uncertainties, and is hard to be controlled by traditional control method. An excitation control method based on model reference adaptive control of asynchronized synchronous motor using neural network on-line identification is proposed in this paper. This method utilizes the mapping abilities of neural networks to construct the reference model of the plant, and self-learning is achieved by means of neuron. The simulation results show a better robustness and control accuracy of the proposed method.
Date of Conference: 30 August 2006 - 01 September 2006
Date Added to IEEE Xplore: 10 February 2009
Print ISBN:1-4244-0121-6
Keywords assist with retrieval of results and provide a means to discovering other relevant content. Learn more.
- IEEE Keywords
- Index Terms
- Neural Network ,
- Adaptive Control ,
- Model Reference Adaptive Control ,
- Simulation Results ,
- Model Plant ,
- Traditional Control Methods ,
- Artificial Neural Network ,
- Hidden Layer ,
- Power System ,
- Channel Activity ,
- Input Signal ,
- Equation Of State ,
- Model Identification ,
- Coupling Coefficient ,
- Channel Signal ,
- Excitatory Currents ,
- Single Output ,
- Rated Voltage ,
- Channel Power ,
- Stator Winding ,
- Turbine Generator ,
- Active Power Control ,
- Neural Network Control ,
- Instantaneous Process
Keywords assist with retrieval of results and provide a means to discovering other relevant content. Learn more.
- IEEE Keywords
- Index Terms
- Neural Network ,
- Adaptive Control ,
- Model Reference Adaptive Control ,
- Simulation Results ,
- Model Plant ,
- Traditional Control Methods ,
- Artificial Neural Network ,
- Hidden Layer ,
- Power System ,
- Channel Activity ,
- Input Signal ,
- Equation Of State ,
- Model Identification ,
- Coupling Coefficient ,
- Channel Signal ,
- Excitatory Currents ,
- Single Output ,
- Rated Voltage ,
- Channel Power ,
- Stator Winding ,
- Turbine Generator ,
- Active Power Control ,
- Neural Network Control ,
- Instantaneous Process