102
Views
1
CrossRef citations to date
0
Altmetric
Articles

Design of Temperature Controller for Irradiation Experiment in Nuclear Reactor

ORCID Icon, ORCID Icon & ORCID Icon

References

  • A. Aitkaliyeva, L. He, H. Wen, B. Miller, X. M. Bai, and T. Allen, “‘Irradiation effects in generation IV nuclear reactor materials,’ structural materials for generation IV nuclear reactors,” Woodhead Publishing, Chapter 7, 253–83, 2017. doi: 10.1016/B978-0-08-100906-2.00007-0
  • M. S. Cho, K. N. Choo, and S. W. Yang, “Material irradiation technology using capsules at HANARO,” Nucl. Technol, Vol. 193, no. 2, pp. 330–9, 2016.
  • Y. M. L. E. E. Y, S. Lee, J. H. Kim, S. J. Lee, Y. H. Kang, K. N. Choo, and M. S. Cho, “A study on the irradiated strength and stress evaluation of nuclear graphite material,” Nucl. Eng. Des, Vol. 269, pp. 193–9, 2014.
  • S. Venkatesu, R. Saxena, P. K. Chaurasia, M. Muthuganesh, S. Murugan, and S. Venugopal, “Development of out-of-pile version of instrumented irradiation capsule for determination of online creep deformation,” T. Indian I. Metals, Vol. 69, no. 2, pp. 283–7, 2016.
  • S. Murugan, V. Karthik, K. A. Gopal, N. G. Muralidharan, S. Venugopal, K. V. Kasiviswanathan, P. V. Kumar, and B. Raj, “Irradiation testing of structural materials in fast breeder test reactor. Research reactor application for materials under high neutron fluence,” in IAEA-TECDOC-1659, Vienna, 2011, pp. 113–24.
  • S. Saurav, M. Muthuganesh, P. K. Chaurasia, and S. Murugan, “Analysis, design, and development of a compact LVDT for in-reactor experiments,” IETE J. Educ., Vol. 60, no. 2, pp. 95–101, 2019.
  • W. W. Godsin, “Temperature control of fueled irradiation capsules by variable conductance,” Nucl. Sci. Eng, Vol. 8, no. 4, pp. 340–5, 1960.
  • J. E. Deverall, and H. E. Watson, “Temperature control of irradiation experiments with gas-controlled heat pipes,” in CONF-730910-8, no. LA-UR-73-815, Los Alamos Scientific Lab, USA, 1973.
  • S. Srivastava, and V. S. Pandit, “A PI/PID controller for time delay systems with desired closed loop time response and guaranteed gain and phase margins,” J. Process Control, Vol. 37, pp. 70–77, 2016.
  • L. Wang, Q. Li, C. Tong, Y. Yin, Z. Gao, Q. Zheng, and W. Zhang, “On control design and tuning for first order plus time delay plants with significant uncertainties,” in American Control Conference, IEEE, 2015, pp. 5276–81.
  • Y. K. Singh, J. Kumar, K. K. Pandey, R. Kumar, and A. Bhargav, “Temperature control system and its control using PID controller,” CMRAES, Conference Proceedings, IJERT, Vol. 4, no. 2, pp. 1–3, 2016.
  • J. C. Mugisha, B. Munyazikwiye, and H. R. Karimi, “Design of temperature control system using conventional PID and intelligent Fuzzy logic controller,” in International Conference on Fuzzy Theory and its Applications, IEEE, 2015, pp. 50–55.
  • A. B. Hmed, M. Amairi, M. Aoun, and S. E. Hamdi, “Comparative study of some fractional PI controllers for first order time delay systems,” in International Conference on Science and Techniques of Automatic Control and Computer Engineering, IEEE, 2017, pp. 278–83.
  • J. Busek, T. Vyhlidal, and P. Zitek, “IAE based tuning of controller anti-windup schemes for first order plus dead-time system,” in International Conference on Process Control, IEEE, 2017.
  • W. Hu, X. Gaoxi, and X. Li, “An analytical method for PID controller tuning with specified gain and phase margins for integral plus time delay processes,” ISA Trans., Vol. 50, no. 2, pp. 268–76, 2011.
  • S. Skogestad, “Simple analytic rules for model reduction and PID controller tuning,” J. Process Control, Vol. 13, no. 4, pp. 291–309, 2003.
  • D. Sain, S. K. Swain, T. Kumar, and S. K. Mishra, “Robust 2-DOF FOPID controller design for Maglev system using Jaya algorithm,” IETE J. Res., Vol. 66, no. 3, pp. 414–26, 2020.
  • H. Seki, M. Ogawa, and M. Ohshima, “PID temperature control of an unstable gas-phase polyolefin reactor,” J. Chem. Eng. Jpn., Vol. 34, no. 11, pp. 1415–22, 2001.
  • Y. B. Khare, and Y. Singh, “PID control of heat exchanger system,” Int. J. Comput. Appl, Vol. 8, no. 6, pp. 0975–8887, 2010.
  • N. H. A. Hamid, M. M. Kalam, and F. H. Yahaya, “Application of PID controller in controlling refrigerator temperature,” in International Colloquium on Signal Processing & Its Applications, IEEE, 2009, pp. 378–84.
  • W. W. Shein, Y. Tan, and A. O. Lim, “PID controller for temperature control with multiple actuators in cyber-physical home system,” in International Conference on Network-Based Information Systems, IEEE, 2012, pp. 423–8.
  • J. G. Ziegler, and N. B. Nichols, “Optimum settings for automatic controllers,” Trans. ASME, Vol. 64, no. 11, pp. 759–65, 1942.
  • G. H. Cohen, and G. A. Coon, “Theoretical consideration of retarded control,” Trans. ASME, Vol. 75, pp. 827–34, 1953.
  • K. J. Astrom, and T. Hagglund, “Automatic tuning of simple regulators with specifications on phase and amplitude margins,” Automatica. (Oxf), Vol. 20, no. 5, pp. 645–51, 1984.
  • W. K. Ho, C. C. Hang, and L. S. Cao, “Tuning of PID controllers based on gain and phase margin specifications,” Automatica. (Oxf), Vol. 31, no. 3, pp. 497–502, 1995.
  • W. K. Ho, O. P. Gan, B. E. Tay, and E. L. Ang, “Performance and gain and phase margins of well-known PID tuning formulas,” IEEE Trans. Control Syst. Technol, Vol. 4, no. 4, pp. 473–7, 1996.
  • M. Zhuang, and D. P. Atherton, “Automatic tuning of optimum PID controllers,” IEE Proceedings of Control Theory and Applications, Vol. 140, no. 3, pp. 216–24, 1993.
  • W. Tan, J. Liu, T. Chen, and H. J. Marquez, “Comparison of some well-known PID tuning formulas,” Comput. Chem. Eng, Vol. 30, no. 9, pp. 1416–23, 2006.
  • I. Suh, and Z. Bien, “A root-locus technique for linear systems with delay,” IEEE T. Automat. Contr, Vol. 27, no. 1, pp. 205–8, 1982.
  • K. S. Yeung, and W. T. Wong, “Root-locus plot of systems with time delay,” Electron. Lett., Vol. 18, no. 18, pp. 480–1, 1982.
  • P. Persson, and K. J. Astrom, “Dominant pole design – A unified view of PID controller tuning,” IFAC Proceedings, Vol. 25, no. 14, pp. 377–82, 1992.
  • K. J. Astrom, and T. Hagglund, “PID controllers: Theory, design and tuning, Vol. 2,” in Instrument Society of America, Research Triangle Park, NC, 1995.
  • Q. G. Wang, Z. Zhang, K. J. Astrom, and Y. Zhang, “Guaranteed dominant pole placement with PID controllers,” IFAC Proceedings, Vol. 41, no. 2, pp. 5842–5, 2008.
  • S. Saha, S. Das, S. Das, and A. Gupta, “A conformal mapping based fractional order approach for sub-optimal tuning of PID controllers with guaranteed dominant pole placement,” Commun. Nonlinear Sci., Vol. 17, pp. 3628–42, 2012.
  • Y. Wei, Y. Hu, Y. Dai, and Y. Wang, “A generalized Padé approximation of time delay operator,” Int. J. Control. Autom, Vol. 14, pp. 181–7, 2016.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.