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Adaptive neural network controller for the molten steel level control of strip casting processes Hung-Yi Chen/Shiuh-Jer Huang
The Journal of Mechanical Science and Technology, vol. 24, no. 3, pp.755-760, 2010
Abstract : The twin-roll strip casting process is a steel-strip production method which combines continuous casting and hot rolling processes. The
production line from molten liquid steel to the final steel-strip is shortened and the production cost is reduced significantly as compared
to conventional continuous casting. The quality of strip casting process depends on many process parameters, such as molten steel level
in the pool, solidification position, and roll gap. Their relationships are complex and the strip casting process has the properties of nonlinear
uncertainty and time-varying characteristics. It is difficult to establish an accurate process model for designing a model-based controller
to monitor the strip quality. In this paper, a model-free adaptive neural network controller is developed to overcome this problem. The
proposed control strategy is based on a neural network structure combined with a sliding-mode control scheme. An adaptive rule is employed
to on-line adjust the weights of radial basis functions by using the reaching condition of a specified sliding surface. This surface
has the on-line learning ability to respond to the system¡¯s nonlinear and time-varying behaviors. Since this model-free controller has a
simple control structure and small number of control parameters, it is easy to implement. Simulation results, based on a semiexperimental
system dynamic model and parameters, are executed to show the control performance of the proposed intelligent controller.
In addition, the control performance is compared with that of a traditional PID controller.
Keyword :
Molten steel level control; Strip casting processes; Adaptive neural network controller; Radial basis functions; On-line learning
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