Model predictive and fuzzy logic controllers for reactor power control at Reaktor TRIGA PUSPATI

The Reaktor TRIGA PUSPATI (RTP) rely extensively on a core power control system for control reactivity to fulfilment the fundamental safety function for a nuclear reactor. It is technically challenging to operate within tight multiple parameter constraints and keep the core power output stable. At p...

全面介绍

Saved in:
书目详细资料
Main Authors: Minhat, Mohd. Sabri, Mohd. Subha, Nurul Adilla, Hassan, Fazilah, Husain, Abdul Rashid, Ahmad, Anita
格式: Conference or Workshop Item
语言:English
出版: 2022
主题:
在线阅读:http://eprints.utm.my/108687/1/NurulAdillaMohd2022_ModelPredictiveandFuzzyLogicControllers.pdf
http://eprints.utm.my/108687/
http://dx.doi.org/10.1088/1757-899X/1231/1/012001
标签: 添加标签
没有标签, 成为第一个标记此记录!
实物特征
总结:The Reaktor TRIGA PUSPATI (RTP) rely extensively on a core power control system for control reactivity to fulfilment the fundamental safety function for a nuclear reactor. It is technically challenging to operate within tight multiple parameter constraints and keep the core power output stable. At present, the power tracking performance of the system could be considered unsatisfactory which produces a relatively long settling time and high control effort. Hence, a study of a model predictive control (MPC) strategy by integrating the current Power Change Rate Constraint (PCRC) using fuzzy logic which is part of the core power control design is conducted. In this paper, the MPC design based on mathematical models of the reactor core included point kinetics model, thermal-hydraulic model, reactivity model and dynamic rod position model help to enhance core power control. The power tracking performance of the proposed control method and previous Feedback Control Algorithm-Fuzzy PCRC is compared via computer simulation with different power range operations. Overall, the results show the MPC-Fuzzy PCRC strategy provides a greater level of operational safety and optimum operation of the TRIGA reactor.