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Current Trends in Science and Technology

an Open Access Publication ISSN: 0976-9730 | 0976-9498

Engineering and Technology

Automation of Boiler and Heat Exchanger Pilot Plant

Nalawade Reshma S.
Department of Electronic and Telecommunication JCOE ,Kuran Email id: reshu.s.nalawade@gmail.com , shetenisha123@gmail.com
Online First: February 18, 2018
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Abstract

Now a day’s demand for power generation is increasing. Therefore control system requirements are also increasing. In this paper boiler is operated using many control strategies so that resultant operation will be practically implemented for industrial purpose. In this experiment the electrically heated boiler and pipe in pipe type heat exchanger is used. Electrically heated boilers make use of electric current running through a heating element to create heat, to boil water into high-temperature and high-pressure steam. To test better Controllability pipe in pipe type counter current heat exchanger. During first phase the installation, calibration and testing for all transmitters and actuators are completed. By making a system available to programming logic controllers, distributed control system as well as to simulation softwares phase. Multiple control ends are achieved. Pilot plants are controlled using user friendly frontends. In this different control strategies are used such  as PLC,DCS, MATLAB as well as virtual PLC and DCS with local controllers without any compromise in safety.

Keyword : Pilot Plant, Boiler, Heat exchanger, Programming logic controller.

  Submitted
Feb 18, 2018
Published
Feb 18, 2018
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References

1. Lennart Lung, System Identification: Theory for the user, Prentice- Hall, 1987. 2. J. A. Ramos and P. Lopes dos Santos, Faculae de Engenharia, Mathematical Modeling, System Identification, and Controller Design of a Two Tank System, Proceedings of the 46th IEEE Conference on Decision and Control New Orleans, LA, USA,2007, Dec. 12-14, 3. Ulsoy, A Galip, Controller Design via System Identification, American Control Conference, pages 1782–1785,1991,IEEE. 4. Karl john Astrom and R. D. Bell, “Drum-boiler dynamics”, Automatica,volume 36,number 3,363–378,2000,Elsevier 5. S. N. Naikwad and S. V. Dudul, \Identification of a typical cstr using optimal focused time lagged recurrent neural network model with gamma memory filter," Applied Computational Intelligence and Soft Computing, vol. 3, p. 3, 2009,IGI. 6. Y. Wei-Jie and L. Yong-Xin, “Boiler drum level controlled by fuzzy self-adapting pid”, in Computational Intelligence and Industrial Applications, 2009. PACIIA 2009. Asia-Pacific Conference on, vol. 2. IEEE, 2009, pp.381-384.
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References

1. Lennart Lung, System Identification: Theory for the user, Prentice- Hall, 1987.
2. J. A. Ramos and P. Lopes dos Santos, Faculae de Engenharia, Mathematical Modeling, System Identification, and Controller Design of a Two Tank System, Proceedings of the 46th IEEE Conference on Decision and Control New Orleans, LA, USA,2007, Dec. 12-14,
3. Ulsoy, A Galip, Controller Design via System Identification, American Control Conference, pages 1782–1785,1991,IEEE.
4. Karl john Astrom and R. D. Bell, “Drum-boiler dynamics”, Automatica,volume 36,number 3,363–378,2000,Elsevier
5. S. N. Naikwad and S. V. Dudul, \Identification of a typical cstr using optimal focused time lagged recurrent neural network model with gamma memory filter," Applied Computational Intelligence and Soft Computing, vol. 3, p. 3, 2009,IGI.
6. Y. Wei-Jie and L. Yong-Xin, “Boiler drum level controlled by fuzzy self-adapting pid”, in Computational Intelligence and Industrial Applications, 2009. PACIIA 2009. Asia-Pacific Conference on, vol. 2. IEEE, 2009, pp.381-384.
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