Thomas B. Cho
Korea Advanced Institute of Science and Technology · Engineering
About the Lab
Professor Thomas B. Cho's research lab specializes in advanced control systems for nuclear power plant components, with a primary focus on the robust and intelligent control of nuclear steam generators. The lab develops innovative fuzzy logic-based control strategies, including fuzzy logic controllers, filters, and gain scheduling techniques, that ensure stability and performance under uncertain and varying operating conditions. By integrating modern control theories such as H∞ control and LQR with fuzzy logic, the lab aims to enhance safety, reliability, and efficiency in nuclear energy systems.
Research Overview
Research Output Trend
Figures are computed from collected data and may differ slightly.
Selected Papers
4A fuzzy logic controller (FLC) and a fuzzy logic filter (FLF), which have a special type of fuzzifier, inference engine, and defuzzifier, are applied to the water level control of a nuclear steam generator (S/G). It is shown that arbitrary two-input, single-output linear controllers can be adequately expressed by this FLC. A procedure to construct stability-guaranteed FLC rules is proposed. It contains the following steps: 1) the stable sector of linear feedback gains is obtained from the subopt
A robust fuzzy logic gain scheduler (robust FLGS) is designed, based on the synthesis of fuzzy logic inference and the H/sub /spl infin// technique. The robust FLGS has a set of robust control gains in a gain pool. The fuzzy inference engine chooses one of the most desirable control gains considering the steam generator (S/G) operating condition. The robust gains in the gain pool are obtained by the time-domain H/sub /spl infin//-control technique such that both of the weighted H/sub /spl infin/
Research Areas
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