An Intelligent Cascaded Fuzzy Logic Based Controller for Controlling the Room Temperature in Hydronic Heating System
Commenced in January 2007
Frequency: Monthly
Edition: International
Paper Count: 32797
An Intelligent Cascaded Fuzzy Logic Based Controller for Controlling the Room Temperature in Hydronic Heating System

Authors: Vikram Jeganathan, A. V. Sai Balasubramanian, N. Ravi Shankar, S. Subbaraman, R. Rengaraj

Abstract:

Heating systems are a necessity for regions which brace extreme cold weather throughout the year. To maintain a comfortable temperature inside a given place, heating systems making use of- Hydronic boilers- are used. The principle of a single pipe system serves as a base for their working. It is mandatory for these heating systems to control the room temperature, thus maintaining a warm environment. In this paper, the concept of regulation of the room temperature over a wide range is established by using an Adaptive Fuzzy Controller (AFC). This fuzzy controller automatically detects the changes in the outside temperatures and correspondingly maintains the inside temperature to a palatial value. Two separate AFC's are put to use to carry out this function: one to determine the quantity of heat needed to reach the prospective temperature required and to set the desired temperature; the other to control the position of the valve, which is directly proportional to the error between the present room temperature and the user desired temperature. The fuzzy logic controls the position of the valve as per the requirement of the heat. The amount by which the valve opens or closes is controlled by 5 knob positions, which vary from minimum to maximum, thereby regulating the amount of heat flowing through the valve. For the given test system data, different de-fuzzifier methods have been implemented and the results are compared. In order to validate the effectiveness of the proposed approach, a fuzzy controller has been designed by obtaining a test data from a real time system. The simulations are performed in MATLAB and are verified with standard system data. The proposed approach can be implemented for real time applications.

Keywords: Adaptive fuzzy controller, Hydronic heating system

Digital Object Identifier (DOI): doi.org/10.5281/zenodo.1071768

Procedia APA BibTeX Chicago EndNote Harvard JSON MLA RIS XML ISO 690 PDF Downloads 1924

References:


[1] Dr. Christine Haissig, Adaptive Fuzzy Temperature Control for Hydronic Heating Systems, Proceedings of the 1999 EEE International Conference on Control Applications Kohala Coast-Island of Hawai-i, Hawai-i, USA August 22-27, 1999.
[2] K. Astrlrm and T. Hagglund, PID Controllers Theory, Design, and Tuning, Research Triangle Park, NC: Instrument Society of America, 1995.
[3] E. Cox, "Fuzzy fundamentals," IEEE Spectrum (October), pp. 58-61, 1992.
[4] C. Lee, "Fuzzy logic in control systems: Fuzzy logic controller, part I," IEEE Trans. on Systems, Man, and Cybernetics, vol. 20, no. 2, pp. 404-418,1990.
[5] C. Lee, "Fuzzy logic in control systems: Fuzzy logic controller; part 11," ZEEE Trans. on Systems, Man, and Cybernetics, vol. 20, no. 2, pp. 419-435, 1990.
[6] E. Cox, "Adaptive fuzzy systems," IEEE Spectrum (February), pp. 27-3 1, 1993.
[7] L. Wang, Adaptive Fuzzy Systems and Control: Design and Stability Analysis, Englewood Cliffs, NJ: Prentice Hall, 1994. "Adaptive fuzzy logic controller that modifies membership functions," U.S. Patent No. 5,822,740.
[8] C. Haissig, M. Woessner, and D. Pirovolou, (October 13, 1998). European, Canadian, and Japanese patents pending, 1998.
[9] C. Haissig, "Tuning fuzzy feedback controllers using the circle criterion," 1996 IEEE Conference on Control Applications, Dearborn, MI, September 1996.
[10] Nikunja K. Swain, "A Survey of Application of Fuzzy Logic in Intelligent Transportation Systems (ITS) and Rural ITS"- Southeast Con, Proceedings of IEEE, 2006, pp 85-89.
[11] Dalal, S.; Satyanarayana, S. "Application of fuzzy logic to picture quality improvement in televisions", Digest of Technical Papers. ICCE., IEEE 1993 International Conference on Volume, Issue, 8-10 Jun 1993 Page(s):346 - 347.