517
Views
40
CrossRef citations to date
0
Altmetric
Original Articles

Frequency Regulation in Hybrid Power System Using Iterative Proportional-Integral-Derivative H Controller

, &
Pages 132-148 | Received 25 Jan 2013, Accepted 16 Sep 2013, Published online: 06 Jan 2014

References

  • Astrom , K. J. , Hagglund , T. , Hang , C. C. and Ho , W. K . 1993 . Automatic tuning and adaptation for PID controllers-a survey . Control Eng. Practice , 1 ( 4 ) : 699 – 714 .
  • Cominos , P. and Munro , N. 2002 . PID controllers: Recent tuning methods and design to specification . IEE Proc. Control Theory Appl. , 149 ( 1 ) : 46 – 53 .
  • Kristiansson , B. and Lennartson , B. 2002 . Robust and optimal tuning of PI and PID controllers . IEE Proc. Control Theory Appl. , 149 ( 1 ) : 17 – 25 .
  • Grassi , E. , Tsakalis , K. , Dash , S. , Gaikwad , S. V. , Macarthur , W. and Stein , G. 2001 . Integrated system identification and PID controller tuning by frequency loop-shaping . IEEE Trans. Control Syst. Technol. , 9 ( 2 ) : 285 – 294 .
  • Lin , C. , Wang , Q. G. and Lee , T. H. 2004 . An improvement on multivariable PID controller design via iterative LMI approach . Automatica , 40 ( 3 ) : 519 – 525 .
  • Zheng , F. , Wang , Q. G. and Lee , T. H. 2002 . On the design of multivariable PID controllers via LMI approach . Automatica , 38 ( 3 ) : 517 – 526 .
  • Ho , M. T. 2003 . Synthesis of H ∞ PID controllers: A parametric approach . Automatica , 39 : 1069 – 1075 .
  • Rerkpreedapong , D. , Hasanovic , A. and Feliachi , A. 2003 . Robust load frequency control using genetic algorithms and linear matrix inequalities . IEEE Trans. Power Syst. , 18 ( 2 ) : 855 – 861 .
  • Takahashi , R. H. C. , Peres , P. L. D. and Ferreira , P. A. V. 1997 . Multiobjective H 2/H ∞ guaranteed cost PID design . IEEE Control Systems Technol. , 17 ( 5 ) : 37 – 47 .
  • Chen , B. S. , Cheng , Y. M. and Lee , C. H. 1998 . A genetic approach to mixed H 2/H ∞ optimal PID control . IEEE Control Systems Technol. , 15 ( 5 ) : 51 – 60 .
  • Wang , Y. , Zhou , R. and Wen , C. 1993 . Robust load-frequency controller design for power systems . IEE Proc. Generat., Transm. Distribut. Part C , 140 ( 1 ) : 11 – 16 .
  • Wang , Y. , Zhou , R. and Gao , L. China, 19–21 October 1993 . H ∞ controller design for power system load frequency control . Proceedings of IEEE Conference on Computer, Communication, Control and Power Engineering (TENCON’93 , : 68 – 71 . Beijing
  • Wang , Z. Q. and Sznaier , M. Robust control design for load frequency control using μ-synthesis . Proceedings of Southcon/94, Conference Record , pp. 186 – 190 . 29 – 31 . Orlando , FL
  • Azzam , M. 1999 . Robust automatic generation control . Energy Convers. Manag. , 40 : 1413 – 1421 .
  • Patra , S. , Sen , S. and Ray , G. 2008 . Design of static H ∞ loop shaping controller in four-block framework using LMI approach . Automatica , 44 : 2214 – 2220 .
  • Majumder , R. , Chaudhuri , B. , El-Zobaidi , H. , Pal , B. C. and Jaimoukha , I. M. 2005 . LMI approach to normalized H ∞ loop-shaping design of power system damping controllers . IEE Proc. Generat. Transm. Distrib. , 152 : 952 – 960 .
  • Cuk Supriyadi , A. N. , Ngamroo , I. , Kunakorn , A. , Dechanupaprittha , S. , Watanabe , M. , Mitani , Y. , Hashiguchi , T. and Goda , T. Inverse additive perturbation-based optimization of robust PSS in an interconnected power system with wind farms . Proceedings of SICE Annual Conference 2008, International Conference on Instrumentation, Control and Information Technology , pp. 237 – 240 . Tokyo , , Japan
  • Zheng , F. , Wang , Q. G. and Lee , T. H. On the design of multivariable PID controllers via LMI approach . Proceedings of 33rd Annual Conference of the IEEE Industrial Electronics Society (IECON'07) , pp. 776 – 781 .
  • Abdel Ghany , A. M. Design of static output feedback PID controller via ILMI method for a power system stabilizer . Proceedings of 12th Middle East Power Systems Conference (MEPCON’2008) , pp. 593 – 599 . Egypt
  • Bevrani , H. and Hiyama , T. PI/PID based multiobjective control design: An ILMI approach . Proceedings of the IEEE Networking, Sensing and Control , pp. 750 – 755 .
  • Bhowmik , S. , Tomsovic , K. and Bose , A. February 2004 . Communication models for third party load frequency control . IEEE Trans. Power Syst. , 19 ( 1 ) : 543 – 548 .
  • Bevrani , H. and Hiyama , T. March 2009 . On load-frequency regulation with time delays: Design and real-time implementation . IEEE Trans. Energy Convers. , 24 ( 1 ) : 292 – 300 .
  • Dey , R. , Ghosh , S. , Ray , G. and Rakshit , A. 2012 . H ∞ load frequency control of interconnected power systems with communication delays . Int. J. Elect. Power Energy Syst. , 42 : 627 – 684 .
  • Bevrani , H. and Hiyama , T. 2008 . Robust decentralized PI based LFC design for time delay power systems . Energy Convers. Manag. , 49 : 193 – 204 .
  • Ray , P. K. , Mohanty , S. R. and Kishor , N. 2011 . Proportional-integral controller based small-signal analysis of hybrid distributed generation systems . Energy Convers. Manag. , 52 : 1943 – 1954 .
  • Singh , V. P. , Mohanty , S. R. , Kishor , N. and Ray , P. K. 2013 . H-infinity robust load frequency control in hybrid distributed generation system . Int. J. Elect. Power Energy Syst. , 46 : 294 – 305 .
  • Das , D. C. , Roy , A. K. and Sinha , N. 2012 . GA based frequency controller for solar thermal-diesel-wind hybrid energy generation/energy storage system . Int. J. Elect. Power Energy Syst. , 43 : 262 – 279 .
  • Khodabakhshian , A. , Pour , M. E. and Hooshmand , R. September 2012 . Design of a robust load frequency control using sequential quadratic programming technique . 40 ( 1 ) : 1 – 8 . Elect. Power Energy Syst., Vol.
  • Senjyu , T. , Nakaji , T. , Uezato , K. and Funabashi , T. June 2005 . A hybrid power system using alternative energy facilities in isolated island . IEEE Trans. Energy Convers. , 20 ( 2 ) : 406 – 414 .
  • Tan , W. and Xu , Z. 2009 . Robust analysis and design of load frequency controller for power systems . Elect. Power Syst. Res. , 79 : 846 – 853 .
  • Alrifai , M. T. , Hassan , M. F. and Zribi , M. 2011 . Decentralized load frequency controller for a multi-area interconnected power system . Elect. Power Energy Syst. , 33 : 198 – 209 .
  • Tsay , T.-S. 2011 . Load-frequency control of interconnected power system with governor backlash nonlinearities . Elect. Power Energy Syst. , 33 : 1542 – 1549 .
  • Daneshfar , F. and Bevrani , H. 2012 . Multiobjective design of load frequency control using genetic algorithms . Elect. Power Energy Syst. , 42 : 257 – 263 .
  • Dong , L. , Zhang , Y. and Gao , Z. 2012 . A robust decentralized load frequency controller for interconnected power systems . ISA Trans. , 51 : 410 – 419 .
  • Tan , W. and Zhou , H. 2012 . Robust analysis of decentralized load frequency control for multi-area power systems . Elect. Power Energy Syst. , 43 : 996 – 1005 .
  • Ibraheem , Kumar , P. , Hasan , N. and Nizamuddin . 2012 . Sub-optimal automatic generation control of interconnected power system using output vector feedback control strategy . Elect. Power Compon. Syst. , 40 : 977 – 994 .
  • Hasan , N. , Ibraheem and Kumar , P. 2013 . Optimal automatic generation control of interconnected power system considering new structures of matrix Q . Elect. Power Compon. Syst. , 41 : 136 – 156 .
  • Bensenouci , A. 2008 . Robust iterative PID controller based on linear matrix inequality for a sample power system . World Acad. Sci. Eng. Technol. , 21 : 611 – 619 .

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.