Control performance is a key to steam generator level control system. To improve the system’s performance, the parameters of the control system should be optimized. Traditional parameters tuning methods are experience-based, cumbersome and time-consuming. A novel optimization method based on the Simultaneous Perturbation Stochastic Approximation (SPSA) is proposed to maximize the system’s control performance. Rather than traditional controller parameter tuning method, this method optimizes the control system by directly using measurements of control performance. An iteration termination control strategy is developed and integrated for the parameters optimization. The effectiveness of this method has been demonstrated through simulation experiments.
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2013 21st International Conference on Nuclear Engineering
July 29–August 2, 2013
Chengdu, China
Conference Sponsors:
- Nuclear Engineering Division
ISBN:
978-0-7918-5582-9
PROCEEDINGS PAPER
A Novel Method for Controller Parameters Optimization of Steam Generator Level Control Available to Purchase
Xiangsong Kong,
Xiangsong Kong
Shanghai Nuclear Engineering Research & Design Institute, Shanghai, China
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Xu Wang,
Xu Wang
Shanghai Nuclear Engineering Research & Design Institute, Shanghai, China
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Zhicai Ma
Zhicai Ma
Shanghai Nuclear Engineering Research & Design Institute, Shanghai, China
Search for other works by this author on:
Xiangsong Kong
Shanghai Nuclear Engineering Research & Design Institute, Shanghai, China
Xu Wang
Shanghai Nuclear Engineering Research & Design Institute, Shanghai, China
Zhicai Ma
Shanghai Nuclear Engineering Research & Design Institute, Shanghai, China
Paper No:
ICONE21-16294, V005T13A023; 8 pages
Published Online:
February 7, 2014
Citation
Kong, X, Wang, X, & Ma, Z. "A Novel Method for Controller Parameters Optimization of Steam Generator Level Control." Proceedings of the 2013 21st International Conference on Nuclear Engineering. Volume 5: Fuel Cycle, Radioactive Waste Management and Decommissioning; Reactor Physics and Transport Theory; Nuclear Education, Public Acceptance and Related Issues; Instrumentation and Controls; Fusion Engineering. Chengdu, China. July 29–August 2, 2013. V005T13A023. ASME. https://doi.org/10.1115/ICONE21-16294
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