Self-adjusting PID control system using a neural network for a binary power plant

Author:

Han Kun-Young,Park Gee-Yong,Lee Myeong-Kyun,Yoo Dong-Han,Lee Hee-Hyol

Publisher

Springer Science and Business Media LLC

Reference32 articles.

1. New Energy and Industrial Technology Development Organization Website, Renewable energy report (2014). https://www.nedo.go.jp/library/ne_hakusyo_index.html. Accessed 19 Feb 2023

2. Ministry of Economy and Finance Website, National Strategy for a Great Transformation, Korean New Deal (2020). https://english.moef.go.kr. Accessed 14 Mar 2023

3. Han K-Y, Arita M, Ikegami Y, Lee H-H (2017) Non-squared decouple PID control of ultra-compact binary power generation plant using low temperature difference thermal energy. IEEJ Trans Electron Inf Syst 137(10):1340–1352

4. Chowdhury JI, Thornhill D, Soulatiantork P, Hu Y, Balta-Ozkan N, Varga L, Nguyen BK (2019) Control of supercritical organic Rankine cycle based waste heat recovery system using conventional and fuzzy self-tune PID controllers. Int J Control Autom Syst 17(11):2969–2981

5. Narendra KS, Parthetsarathy K (1990) Identification and control of dynamical systems using neural networks. IEEE Trans Neur Netw 1(1):4–27

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