A NONPARAMETRIC SYSTEM IDENTIFICATION BASED ON TRANSIENT ANALYSIS WITH PLANT PROCESS OF HEAT EXCHANGER AS STUDY CASE

Authors

  • Tatang Mulyana Telkom University

DOI:

https://doi.org/10.22441/ijimeam.v1i1.18885

Keywords:

nonparametric identification systems, transient analysis, process plant heat exchanger, temperature constant, time constant, calculated error

Abstract

In this article, a nonparametric identification system based on transient analysis has been reviewed, by taking the case in some of the data plant process of heat exchanger. Results of the study found that the first-order transfer function without time-delay the proposed model to the data with a temperature constant value is 35.20 ºC and the time constant is 7200 seconds. This model has been fit to meet the existing data proving that the results of the calculation error do not exceed 2%

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References

Soderstrom, T. & Stoica, P. System Identification. New York: Prentice Hall; 2001.

Knudsen, M. Experimental Modelling of Dynamics Systems. Department of Control Engineering, Aalborg University, 2004.

Ljung, L. Approaches to Identification of Nonlinear System. Sweden, Division of Automatic Control, Linkoping University, 2011.

Nithya, S. et al. Model Based Controller Design for Shell and Tube Heat Exchanger. Sensors & Transducers Journal 2007; 84(10): p. 1677-1686.

Sharma, C. Gupta, S. & Kumar, V. Modeling and Simulation of Heat Exchanger used in Soda Recovery. Proceeding of the World Congress on Engineering (WCE) 2011; 2.

Sivakumar, P. Prabhakaran, D. & Kannadasan, T. Comaparative Analysis of Advanced Controllers in a Heat Exchanger. American Journal of Engineering Research (AJER) 2013; 02(01): p. 01-06.

Halvorsen, H. P. Control Theory with MathScript Examples. Telemark University College, Norway, 2012.

Mulyana, T. Parametric and Nonparametric Identification of Shell and Tube Heat Exchanger Mathematical Model. Thesis UTHM, 2014.

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Published

2015-12-01

How to Cite

1.
Mulyana T. A NONPARAMETRIC SYSTEM IDENTIFICATION BASED ON TRANSIENT ANALYSIS WITH PLANT PROCESS OF HEAT EXCHANGER AS STUDY CASE. Int. J. Innov. Mech. Eng. Adv. Mater [Internet]. 2015 Dec. 1 [cited 2026 May 29];1(1):19-26. Available from: https://training-ojs3-publikasi.mercubuana.ac.id/index.php/ijimeam/article/view/18885

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