DocumentCode :
1153805
Title :
Optimal control of a fed-batch bioreactor using simulation-based approximate dynamic programming
Author :
Peroni, Catalina Valencia ; Kaisare, Niket S. ; Lee, Jay H.
Author_Institution :
Univ. of Rome La Sapienza, Italy
Volume :
13
Issue :
5
fYear :
2005
Firstpage :
786
Lastpage :
790
Abstract :
In this brief, we extend the simulation-based approximate dynamic programming (ADP) method to optimal feedback control of fed-batch reactors. We consider a free-end problem, wherein the batch time is considered in finding the optimal feeding strategy in addition to the final time productivity. In ADP, the optimal solution is parameterized in the form of profit-to-go function. The original definition of profit-to-go is modified to include the decision of batch termination. Simulations from heuristic feeding policies generate the initial profit-to-go versus state data. An artificial neural network then approximates profit-to-go as a function of process state. Iterations of the Bellman equation are used to improve the profit-to-go function approximator. The profit-to-go function approximator thus obtained, is then implemented in an online controller. This method is applied to cloned invertase expression in Saccharomyces cerevisiae in a fed-batch bioreactor.
Keywords :
bioreactors; dynamic programming; feedback; function approximation; neurocontrollers; optimal control; Bellman equation; approximate dynamic programming; artificial neural network; batch termination; fed-batch bioreactor; neurodynamic programming; optimal control; profit-to-go function approximator; reinforcement learning; Bioreactors; Chemical engineering; Chemical technology; Dynamic programming; Gradient methods; Learning; Neural networks; Neurodynamics; Optimal control; Optimization methods; Dynamic programming (DP); neural networks; neurodynamic programming (NDP); reinforcement learning (RL);
fLanguage :
English
Journal_Title :
Control Systems Technology, IEEE Transactions on
Publisher :
ieee
ISSN :
1063-6536
Type :
jour
DOI :
10.1109/TCST.2005.852105
Filename :
1501862
Link To Document :
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