Design of a Self-Tuning PID Controller for a Temperature Control System Using Fuzzy Logic
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Publisher
Springer Nature Singapore
Link
https://link.springer.com/content/pdf/10.1007/978-981-16-2183-3_62
Reference12 articles.
1. Gani MM, Islam MS, Ullah MA (2019) Optimal PID tuning for controlling the temperature of electric furnace by genetic algorithm. SN Appl Sci 1:880
2. Anwar AZ, Jabeen B (2019) Prototyping non-holonomic hovercraft for path planning and obstacle avoidance. Sir Syed Univers Res J Eng Technol 9(1)
3. Baogang H, Hao Y (2001) Review of fuzzy PID control techniques and some important issues. Automatic Sinica 27(4)
4. Rehman NU, Kumar K (2018) Implementation of an autonomous path planning and obstacle avoidance UGV using SLAM. In: 2018 International conference on engineering and emerging technologies (ICEET), IEEE, pp 1–5
5. Salsbury TI (1998) A temperature controller for VAV air-handing units based on simplified physical models. HVAC and R Res
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