Fuzzy Logic and Genetic Algorithm based Automatic Generation [PDF]

Abstract. This paper illustrates the automatic generation control (AGC) of an interconnected two-area power system under

1 downloads 14 Views 222KB Size

Recommend Stories


Fuzzy Sets and Fuzzy Logic
Never wish them pain. That's not who you are. If they caused you pain, they must have pain inside. Wish

Automatic Time-Table Generation System using Genetic Algorithm
So many books, so little time. Frank Zappa

Automatic Time-Table Generation System using Genetic Algorithm
Ask yourself: Why am I so uncomfortable with talking to people I don’t know? Next

fuzzy logic & fuzzy systems
Do not seek to follow in the footsteps of the wise. Seek what they sought. Matsuo Basho

A Fuzzy Logic Based RBI Analysis Approach
I want to sing like the birds sing, not worrying about who hears or what they think. Rumi

Fuzzy Logic Based Stable Routing in VANET
Be like the sun for grace and mercy. Be like the night to cover others' faults. Be like running water

vision intelligence for precision farming using fuzzy logic optimized genetic algorithm and artificial
Knock, And He'll open the door. Vanish, And He'll make you shine like the sun. Fall, And He'll raise

VAGUENESS AND FORMAL FUZZY LOGIC
If you want to go quickly, go alone. If you want to go far, go together. African proverb

network intrusion detection & prevention system using fuzzy logic and genetic algorithm
It always seems impossible until it is done. Nelson Mandela

Fuzzy logic, control and optimisation
Kindness, like a boomerang, always returns. Unknown

Idea Transcript


PRAISE WORTHY PRIZE ABOUT LOGIN REGISTER CURRENT ARCHIVES ANNOUNCEMENTS OTHER JOURNALS DOWNLOAD ISSUES SUBMIT YOUR PAPER SPECIAL ISSUE

I NFO RMA TI O N

HOME

For Readers For Authors For Librarians

SEARCH

Home > Vol 9, No 1 (2014) > Ismayil FO NT S I ZE

PRAISE WORTHY PRIZE HOMEPAGE S UB S CRI P TI O N Login to verify subscription Give a gift subscription NO TI FI CA TI O NS View Subscribe

US E R

Fuzzy Logic and Genetic Algorithm based Automatic Generation Control of Two-Area Deregulated Power Systems

Username Password

J O URNA L CO NTE NT Search

C. Ismayil(1*), Kumar R. Sreerama(2), T. K. Sindhu(3)

Remember me Login

All

(1) Ismayil C. is with the Department of Electrical Engineering, National Institute of Technology, Calicut, Kerala-

Search

673601, India, (2) Sreerama Kumar R. is with Vice-Presidency for Projects, King Abdulaziz University, Jeddah, P.O.Box: 80200,

A RTI CL E TO O L S

Jeddah 21589, Saudi Arabia,

Print this article

(3) Sindhu T.K. is with the Department of Electrical Engineering, National Institute of Technology, Calicut, Kerala-

673601, India,

How to cite item

(*) Corresponding author

Finding References Email this article (Login required)

Browse By Issue By Author By Title Other Journals

DOI's assignment: the author of the article can submit here a request for assignment of a DOI number to this resource! Cost of the service: euros 10,00 (for a DOI)

Abstract Praise Worthy Papers Most cited papers

Highly commended papers Commended papers

Most Popular Papers

This paper illustrates the automatic generation control (AGC) of an interconnected two-area power system under deregulated environment. Two controllers viz., a Hybrid Fuzzy-PI (HFPI) controller and Genetic Algorithm based PI (GAPI) controller are proposed to improve the dynamic response of the power systems. The conventional two-area AGC system is modified to take into account the effects of bilateral contracts on the dynamics. In the HFPI controller, the parameters of the conventional PI controller are modified according to the principles of fuzzy logic whereas in GAPI controller, tuning parameter design criteria is reformulated as an optimization problem and the general rules of genetic algorithm (GA) are applied. The convergence and performance of the system are studied for different operating cases and a comparison among conventional integral (CI) controller, HFPI controller and GAPI controller are presented. The simulation results show that the HFPI controller proposed in this paper perform better than the conventional integral and GAPI controllers in terms of settling time and overshoot. Copyright © 2014 Praise Worthy Prize - All rights reserved.

Keywords

Two-Switch CRM Resonant DC-DC Converter with SoftSwitching Operation H. Do et al. 4338 views since: 2014-0831

Automatic Generation Control, Deregulation, Hybrid Fuzzy controller, Genetic Algorithm, Optimization, Power System Control

Overview on Maximum Power Point Tracking (MPPT) Techniques for Photovoltaic Power Systems M. Hossain et al. 3614 views since: 2013-0831

PDF

Optimal Placement and Sizing of Distributed Generation for Minimize Losses in Unbalance Radial Distribution Systems Using Quantum Genetic Algorithm N. Aryani et al. 2348 views since: 2014-0228 Review of PermanentMagnet Brushless DC Motor Basic Drives Based on Analysis and Simulation Study S. Mozaffari Niapour et al. 2187 views since: 2014-1031 Design of Optimized Sliding Mode Control to Improve the Dynamic Behavior of PMSG Wind Turbine with NPC Back-to-Back Converter A. Golshani et al. 1984 views since: 2013-0831

Full Text:

References Richard D .Christie and Anjan Bose, “Load Frequency Control Issues In Power System Operations After Deregulation,” IEEE Transactions on Power Systems, vol. 11, no. 3, pp. 1191-1200, Aug. 1996, Praghnesh Bhatt, Ranjit Roy and S.P. Ghoshal, “Optimized multi area AGC simulation in restructured power systems,” Electrical Power and Energy Systems, vol. 32, pp. 311-322, 2011 Bjorn H. Bakken and Ove S. Grand “Automatic Generation Control in a Deregulated Power System,” IEEE Transactions on Power Systems, vol. 13, no.4, pp. 1401-1406, Nov. 1998 Rajesh Joseph Abraham, D. Das and Amit Patra, “Load following in a bilateral market with local controllers,” Electrical Power and Energy Systems, vol. 33, pp. 1648-1657, 2011 O. P. Malik, A. Kumar, and G. S. Hope, “A load frequency control algorithm based on a generalized approach,” IEEE Transactions on Power Systems., vol. 3, no. 2, pp. 375-382, May 1988 M.L. Kothari and J. Nanda , "Application of optimal control strategy to automatic generation control of a hydrothermal system," IEE Proceedings D - Control Theory and Applications, , vol.135, no.4, July 1988, pp.268-274 Cavin R.K., Budge M.C. and Rasmussen P., “An Optimal Linear Systems Approach to Load Frequency Control,” IEEE Transactions on Power Apparatus and Systems, vol. PAS-90, no.6, pp. 2472-2482,Nov. 1971 F. Liu, Y.H. Song, J. Ma, S. Mei and Q. Lu, “Optimal load-frequency control in restructured power systems,” IEE Proc.-Gener. Transm. Distri,. vol. 150, no. 1, pp. 87-95, Jan. 2003 Mariano S. J. P. and Ferreira L. A. F. M., “Optimal Control: Load Frequency Control of a Large Power System,” in 13th Int. Power Electronics and Motion Control Conference, Poznan, EPE-PEMC 2008, Poland, 1-3 Sept. 2008, pp. 2076-2081 Mehdi Rahmani and Nasser Sadati, “Two-level optimal load–frequency control for multi-area power systems,” Electrical Power and Energy Systems, vol.53, pp. 540-547, 2013 Wan-Chun Chan, and Yuan-Yin Hsu, “Automatic generation control of interconnected power systems using variablestructure controllers,” IEE Proc, vol. 128, Pt. C, no. 5, pp. 269-279 A. Kumar, O. P. Malik, and G. S. Hope, “Variable structure-system control applied to AGC of an interconnected power system,” IEE Proceedings C-Generation, Transmission and Distribution, , vol. 132, no.1, pp. 23-29, Jan. 1985 D. Das, M.L. Kothari, D.P. Kothari and J. Nanda, “Variable structure control strategy to automatic generation control of interconnected reheat thermal system,”, IEE Proceedings-D, vol. 138, no. 6, pp,579-585, Nov. 1991 Z.M. Al-Hamouz and H.N. Al-Duwaish, “A new load frequency variable structure controller using genetic algorithms,” Electric Power Systems Research, vol. 55 , pp.1-6, 2000 Jayant Kumar, Kah-Hoe Ng and Gerald Sheble , "AGC simulator for price-based operation, Part 1: A model," IEEE Trans. Power Syst., vol. 12, no.2, pp. 527–532, May 1997 Jayant Kumar, Kah-Hoe Ng and Gerald Sheble, "AGC simulator for price-based operation part 2: case study results," IEEE Trans. Power Syst., vol. 12, no.2, pp. 533–538, May 1997 Vaibhav Donde, M.A. Pai and Ian A. Hiskens “Simulation and Optimization in an AGC System after Deregulation,”, IEEE Transactions on Power Systems, vol. 16, no. 3, , pp. 481-489, Aug. 2001 Delfino B, Fornari F and Massucco S., "Load frequency control and inadvertent energy interchange evaluation in restructured power systems," IEE Proc. Gener.Transm. Distrib., vol 149, no. 5, pp. 607–614, Sept. 2002 Liu F, Song YH, Ma J, Mei S and Lu Q., "Optimal load–frequency control in restructured power systems," IEE Proc. Gener. Transm. Distrib., vol. 150, no. 1, pp. 87–94, Jan. 2003 Y. L. Karnavas and K. S. Dedousis, “Overall Performance evaluation of evolutionary designed conventional AGC controllers for interconnected electric power system studies in deregulated market environment,” International Journal of Engineering, Science and Technology, vol. 2, no.3, pp. 150-166, 2010 A. Demiroren and H.L. Zeynelgil, “GA application to optimization of AGC in three-area power system after deregulation”, International Journal of Electrical Power and Energy Systems, vol. 29, Issue 3, pp. 230-240, Mar. 2007 Elyas Rakhshani and Java Sadeh, “Practical viewpoints on Load frequency control problem in a deregulated power system,” Energy Conversion and Management, vol. 51,Issue 6, pp. 1148–1156, Jun. 2010 K.R.M. Vijaya Chandrakala, S. Balamurugan and K. Sankaranarayanan, “Variable structure fuzzy gain scheduling based load frequency controller for multi source multi area hydro thermal system,” Electrical Power and Energy Systems, vol. 53, pp. 375-381, 2013 Chang C.S, Weihui Fu, “Area Load –Frequency Control Using Fuzzy Gain Scheduling of PI controllers,” Electric Power Systems Research, vol. 42, Issue 2, pp 145-152, Aug. 1997 C. Ertugrul and I. Kocaarslan, “A fuzzy gain scheduling PI controller application for an interconnected electrical power system,” Electrical Power System Research., vol. 73, Issue 3, pp. 267-274, Mar. 2005 C. Ertugrul and I. Kocaarslan, “Load frequency control in two area power systems using fuzzy logic controller”, Energy Convers. Manage., vol. 46, Issue 2, pp. 233-243, Jan. 2005 Ilhan Kocarslan, Ertrugal Cam and Hassan Tirayaki, “A Fuzzy logic controller application for thermal power plant,” Energy Convers. Manage., vol. 47, no. 4, pp. 442-458, Mar. 2006, H. Shayeghi, H.A. Shayanfar and A.Jalili, “Multi-stage fuzzy PID power system automatic generation controller in deregulated environments,” Energy Convers. Manage., vol. 47, no. 18–19, pp. 2829–2845, Nov. 2006, A. Soundarrajan and S. Sumathi, "Effect of Non-linearities in Fuzzy Based Load Frequency Control," International Journal of Electronic Engineering Research, vol.1, no. 1, pp. 37-51, 2009 S. K. Sinha, R. N. Patel, Member, IEEE, and R. Prasad, Member, “Application of GA and PSO Tuned Fuzzy Controller for AGC of Three Area Thermal-Thermal-Hydro Power System,” Int. J. of Computer Theory and Engineering, vol. 2, no. 2 , pp.1793-8201, Apr. 2010 Ashraf Mohamed Hemeida, “A fuzzy logic controlled superconducting magnetic energy storage, SMES frequency stabilizer,” Electric Power Syst. Res., vol. 80, pp. 651–656, 2010 K.R. Sudha, Y. Butchi Raju, and A. Chandra Sekhar, “Fuzzy C-Means clustering for robust decentralized load frequency control of interconnected power system with Generation Rate Constraint,” Int. J. Elect. Power Energy Syst., vol. 37, pp. 58–66, 2012 K.R. Sudha and R. Vijaya Santhi, “Load Frequency Control of an Interconnected Reheat Thermal system using Type-2 fuzzy system including SMES units,” Electrical Power and Energy Systems, vol. 43, pp. 1383-1392, 2012 David E. Goldberg, “Genetic Algorithms in Search, Optimization & Machine Learning,” Pearson Education(Singapore) Pvt. Ltd., Indian Branch, Delhi, India, 6th Indian Reprint, 2003 K. F. Man, K. S. Tang, and S. Kwong, “Genetic Algorithms: Concepts and Applications,” IEEE Transactions On Industrial Electronics, vol. 43, no. 5, pp. 519-534, Oct. 1996, Jazebi, S., Jazebi, S., Rashidinejad, M., Application of a novel real genetic algorithm to accelerate the distribution network reconfiguration, (2009) International Review of Electrical Engineering (IREE), 4 (1), pp. 114-121. Mohamed, F. A., Koivo, H. N., Multiobjective Genetic Algorithms for Online Management Problem of Microgrid, (2008) International Review of Electrical Engineering (IREE), 3 (1), pp. 46-54. Rao, C. Srinivasa, Nagaraju, S. Siva, Raju, P. Sangameswara, A modified genetic approach to hydrothermal system with thyristor controlled phase shifter under open market system, (2007) International Review of Electrical Engineering (IREE), 2 (4), pp. 507-514. Ismayil, C., Sreerama Kumar, R., Sindhu, T.K., Comparative analysis of genetic algorithm and fuzzy logic based automatic generation control of multi area power systems, (2013) International Review on Modelling and Simulations (IREMOS), 6 (1), pp. 136-144. Pataya Dangprasert and Vichit Avatchanakorn, “Genetic Algorithms Based on an Intelligent Controller,” Expert Systems With Applications, vol. 10, no. 314, pp. 465-470, 1996 Y.L. Abdel-Magid and M.M. Dawoud, “Optimal AGC tuning with genetic algorithms,” Electric Power Systems Research, vol. 38, pp.231-238, 1997 Fatemeh Daneshfar and Hassan Bevrani, “Multiobjective design of load frequency control using genetic algorithms,” Electrical Power and Energy Systems, vol. 42, pp. 257–263, 2012 Haluk Gozde and M. Cengiz Taplamacioglu, “Automatic generation control application with craziness based particle swarm optimization in a thermal power system,” Electric Power Systems Research, vol. 33, pp. 8–16, 2011 E.S. Ali and S.M. Abd-Elazim, “Bacteria foraging optimization algorithm based load frequency controller for interconnected power system”, Electric Power Systems Research, vol. 33, pp. 633–638, 2011 E.S. Ali , S.M. Abd-Elazim, “BFOA based design of PID controller for two area Load Frequency Control with nonlinearities”, Electric Power Systems Research, vol. 51, pp. 224–231, 2013 S.P. Ghoshal, “Application of GA/GA-SA based fuzzy automatic generation control of a multi-area thermal generating system,” Electric Power Systems Research, vol. 70, pp. 115–127, 2004 Chia-Feng Juang and Chun-Feng Lu, “Power System Load Frequency Control By Genetic Fuzzy Gain Scheduling Controller,” Journal of the Chinese Institute of Engineers, vol. 28, no. 6, pp. 1013-1018, 2005 S. K. Sinha, R. N. Patel, and R. Prasad, “Application of GA and PSO Tuned Fuzzy Controller for AGC of Three Area Thermal-Thermal-Hydro Power System”, International Journal of Computer Theory and Engineering, vol. 2, no. 2, pp.1793-8201, Apr. 2010 Farid Golnaraghi and Benjamin C. Kuo, "Automatic Control Systems,” Wiley E-Text, 9th Edition, Sept. 2009 Jan Roupec “Advanced Genetic Algorithms for Engineering Design Problems”, Engineering Mechanics, vol. 17, no. 5/6, pp. 407-417, 2010 Ranjit Roy, Praghnesh Bhatt, and S.P. Ghoshal, “Evolutionary computation based three-area autaomtic generation control,” Expert systems with Applications, vol. 37, pp. 5913-5924,2010 Praghnesh Bhatt, Ranjit Roy and S.P. Ghoshal, “Optimized multi area AGC simulation in restructured power systems,” Electrical Power and Energy Systems, vol. 32, pp. 311-322, 2011

Refbacks There are currently no refbacks.

Please send any question about this web site to [email protected] Copyright © 2005-2018 Praise Worthy Prize

Smile Life

When life gives you a hundred reasons to cry, show life that you have a thousand reasons to smile

Get in touch

© Copyright 2015 - 2024 PDFFOX.COM - All rights reserved.