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Reseach Article

VHDL Realization of Hybrid Control Strategy for a Nonlinear System

by John Kalloor, S. Meyyappan
International Journal of Computer Applications
Foundation of Computer Science (FCS), NY, USA
Volume 113 - Number 12
Year of Publication: 2015
Authors: John Kalloor, S. Meyyappan
10.5120/19878-1882

John Kalloor, S. Meyyappan . VHDL Realization of Hybrid Control Strategy for a Nonlinear System. International Journal of Computer Applications. 113, 12 ( March 2015), 17-21. DOI=10.5120/19878-1882

@article{ 10.5120/19878-1882,
author = { John Kalloor, S. Meyyappan },
title = { VHDL Realization of Hybrid Control Strategy for a Nonlinear System },
journal = { International Journal of Computer Applications },
issue_date = { March 2015 },
volume = { 113 },
number = { 12 },
month = { March },
year = { 2015 },
issn = { 0975-8887 },
pages = { 17-21 },
numpages = {9},
url = { https://ijcaonline.org/archives/volume113/number12/19878-1882/ },
doi = { 10.5120/19878-1882 },
publisher = {Foundation of Computer Science (FCS), NY, USA},
address = {New York, USA}
}
%0 Journal Article
%1 2024-02-06T22:50:45.512077+05:30
%A John Kalloor
%A S. Meyyappan
%T VHDL Realization of Hybrid Control Strategy for a Nonlinear System
%J International Journal of Computer Applications
%@ 0975-8887
%V 113
%N 12
%P 17-21
%D 2015
%I Foundation of Computer Science (FCS), NY, USA
Abstract

The Process Industries are automated to keeping in tune with the changing requirements. It creates the need of a well defined philosophy to cater to the extent of sophistication. The Scheme projects a mechanism to adapt to the evolving scenario and orient a strategy to accomplish the desired objective. A conical tank system is chosen and a methodology designed to eclipse the specified liquid level in it through appropriate hydraulic arrangements. It augurs the need of a well defined control algorithm to charter a corrective action and seeks the role of a state of the art processor to implement the procedure. The self tuning Fuzzy-PI control algorithm is coded using VHDL and is evaluated through Modlsim based simulation to verify its practical viability.

References
  1. Nasri Sulaiman, Zeyad Assi Obaid, M. H. Marhaban and M. N. Hamidon", FPGA-Based Fuzzy Logic: Design and Applications – a Review "IACSIT International Journal of Engineering and Technology Vol. 1, No. 5, December, 2009 ISSN: 1793-8236.
  2. Md. Shabiul Islam, Nowshad Amin, Mukter Zaman, M. S. Bhuyan,"Fuzzy based PID controller using VHDL for Transportation application", Proceedings of International journal of Mathematical models and methods in applied sciences pp. 143-147.
  3. Wen Chen, Hui-mei Yuan, Yan Wang, "Design and Implementation of Digital Fuzzy-PID Controller Based on FPGA", Proceedings of ICIEA 2009 pp. 393-397.
  4. George Stephanopoulos, "Chemical Process Control: An Introduction to Theory and Practice", PHI Learning Private Limited, 2010.
  5. B. Wayne Bequette, "Process Control, Modeling Design and Simulation", Prentice Hall India, 2003.
  6. Douglas L. Perry, "VHDL Programming by Examples", Fourth Edition, Tata McGraw Hill 2003.
  7. Valentina Salapura, Volker Hamann, "Implementing Fuzzy Control Systems Using VHDL and Statecharts", Design Automation Conference, 1996 pp. 53-58.
  8. Zeyad Assi Obaid, Nasri Sulaiman, M. N. Hamidon and Mohammed Obaid Ali, "Design Representation of the Multipurpose Fuzzy Logic Controller Using Hardware Description Language", Proceedings of the International Conference on Man-Machine Systems, Malaysia 2009.
  9. Vineet Kumar, B. C. Nakra and A. P. Mittal, "A Review on Classical and Fuzzy PID Controllers", International Journal of Intelligent Control and Systems Vol. 16, No. 3, September/December 2011 pp. 170-181.
  10. M. Sultan. M. Siddiqui, A. H. Sajid and D. G. Chougule, "FPGA Based Efficient Implementation of PID Control Algorithm", International Conference on Control, Automation, Communication and Energy Conservation, 2009 pp. 1-5.
  11. Joao Lima, Ricardo Menotti, Joao M. P. Cardoso, and Eduardo Marques, "A Methodology to Design FPGA-based PID Controllers", Systems, Man and Cybernetics, 2006. SMC'06. IEEE International Conference on (Volume: 3).
  12. Yankai Xu, Kai Shuang, Shan Jiang and Xiaoliang Wu, " FPGA Implementation of a Best- Precision Fixed – Point Digital PID Controller" 2009 International Conference on Measuring Technology and Mechatronics Automation Record:0 -7695 – 3583 – 8/09.
  13. L. Venkatesan, A. D. Janarthanan, S. Gowrishankar, P. R. Aarthi and G. Saravna Kumar, "Implementation of FPGA Based DA-PID Controller for Temperature System", International Conference on Control Communication & Computer Technology, 2012, ISBN: 978-93-82208-27-3.
  14. Prof. Vikas Gupta, Dr. Kavita Khare, Dr. R. P. Singh, "Efficient FPGA Design and Implementation of Digital PID Controllers in Simulink", International Journal of Recent Trends in Engineering, Vol. 2, No. 6, November 2009.
Index Terms

Computer Science
Information Sciences

Keywords

Conical tank Self tuning Fuzzy-PI VHDL Z-N.