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Published in: Energy Systems 3/2020

05-02-2019 | Original Paper

Whale optimization algorithm applied to load frequency control of a mixed power system considering nonlinearities and PLL dynamics

Authors: Dipayan Guha, Provas Kumar Roy, Subrata Banerjee

Published in: Energy Systems | Issue 3/2020

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Abstract

In this work, an attempt has been made to implement a nature-inspired stochastic evolutionary algorithm, namely whale optimization algorithm (WOA) for exploring optimum and practical solutions of load frequency control (LFC) problem in power system. The proposed WOA mimics the ‘bubble-net feeding’ strategy of ‘humpback whales’ in the oceans. The optimization technique is individually applied to a two-area thermal power plant and two-area hydro-thermal-gas power plant with AC–DC tie-line for fine-tuning of the controller parameters. The study further houses the consequences of frequency measurement and the dynamics of a phase-locked loop (PLL) with power system nonlinearities. To establish the efficacy of WOA, the obtained results are compared with results of success history based adaptive differential evolution (SHADE), krill herd algorithm (KHA), and some other well-known control algorithms. Finally, statistical analysis is performed to affirm robustness of the proposed WOA in LFC area.

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Appendix
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Literature
1.
go back to reference Chon, N.: Some aspects of tie-line bias control on interconnected powers. Am. Inst. Electr. Eng. Trans. 75, 1415–1436 (1957) Chon, N.: Some aspects of tie-line bias control on interconnected powers. Am. Inst. Electr. Eng. Trans. 75, 1415–1436 (1957)
2.
go back to reference Elgerd, O.I., Fosha, C.E.: Optimum megawatt-frequency control of multi-area electric energy systems. IEEE Trans. Power Appar. Syst. 89(4), 556–563 (1970)CrossRef Elgerd, O.I., Fosha, C.E.: Optimum megawatt-frequency control of multi-area electric energy systems. IEEE Trans. Power Appar. Syst. 89(4), 556–563 (1970)CrossRef
3.
go back to reference Sahu, R.K., Panda, S., Sekhar, G.T.C.: A novel hybrid PSO-PS optimized fuzzy PI controller for AGC in multi area interconnected power systems. Int. J. Electr. Power Energy Syst. 64, 880–893 (2015)CrossRef Sahu, R.K., Panda, S., Sekhar, G.T.C.: A novel hybrid PSO-PS optimized fuzzy PI controller for AGC in multi area interconnected power systems. Int. J. Electr. Power Energy Syst. 64, 880–893 (2015)CrossRef
4.
go back to reference Prakash, S., Sinha, S.K.: Neuro-fuzzy computational technique to control load frequency in hydro-thermal interconnected power system. J. Inst. Eng. India Ser. B 96(3), 273–282 (2015)CrossRef Prakash, S., Sinha, S.K.: Neuro-fuzzy computational technique to control load frequency in hydro-thermal interconnected power system. J. Inst. Eng. India Ser. B 96(3), 273–282 (2015)CrossRef
5.
go back to reference Prakash, S., Sinha, S.K.: Simulation based neuro-fuzzy hybrid intelligent PI control approach in four-area load frequency control of interconnected power system. Appl. Soft Comput. 23, 152–164 (2014)CrossRef Prakash, S., Sinha, S.K.: Simulation based neuro-fuzzy hybrid intelligent PI control approach in four-area load frequency control of interconnected power system. Appl. Soft Comput. 23, 152–164 (2014)CrossRef
6.
go back to reference Sabahi, K., Ghaemi, S., Pezeshki, S.: Application of type-2 fuzzy logic system for load frequency control using feedback error learning approaches. Appl. Soft Comput. 21, 1–11 (2014)CrossRef Sabahi, K., Ghaemi, S., Pezeshki, S.: Application of type-2 fuzzy logic system for load frequency control using feedback error learning approaches. Appl. Soft Comput. 21, 1–11 (2014)CrossRef
7.
go back to reference Mohanty, B.: TLBO optimized sliding mode controller for multi-area multi-source nonlinear interconnected AGC system. Int. J. Electr. Power Energy Syst. 73, 872–881 (2015)CrossRef Mohanty, B.: TLBO optimized sliding mode controller for multi-area multi-source nonlinear interconnected AGC system. Int. J. Electr. Power Energy Syst. 73, 872–881 (2015)CrossRef
8.
go back to reference Guha, D., Roy, P.K., Banerjee, S.: Load frequency control of interconnected power system using grey wolf optimization. Swarm Evol. Comput. 27, 97–115 (2016)CrossRef Guha, D., Roy, P.K., Banerjee, S.: Load frequency control of interconnected power system using grey wolf optimization. Swarm Evol. Comput. 27, 97–115 (2016)CrossRef
9.
go back to reference Shiva, C.K., Shankar, G., Mukherjee, V.: Automatic generation control of power system using a novel quasi-oppositional harmony search algorithm. Int. J. Electr. Power Energy Syst. 73, 787–804 (2015)CrossRef Shiva, C.K., Shankar, G., Mukherjee, V.: Automatic generation control of power system using a novel quasi-oppositional harmony search algorithm. Int. J. Electr. Power Energy Syst. 73, 787–804 (2015)CrossRef
10.
go back to reference Guha, D., Roy, P.K., Banerjee, S.: Study of differential search algorithm based automatic generation control of an interconnected thermal-thermal system with governor dead band. Appl. Soft Comput. 52, 160–175 (2017)CrossRef Guha, D., Roy, P.K., Banerjee, S.: Study of differential search algorithm based automatic generation control of an interconnected thermal-thermal system with governor dead band. Appl. Soft Comput. 52, 160–175 (2017)CrossRef
11.
go back to reference Guha, D., Roy, P.K., Banerjee, S.: Quasi-oppositional symbiotic organism search algorithm applied to load frequency control. Swarm Evol. Comput. 33, 46–67 (2017)CrossRef Guha, D., Roy, P.K., Banerjee, S.: Quasi-oppositional symbiotic organism search algorithm applied to load frequency control. Swarm Evol. Comput. 33, 46–67 (2017)CrossRef
12.
go back to reference Pradhan, P.C., Sahu, R.K., Panda, S.: Firefly algorithm optimized fuzzy PID controller for AGC of multi-area multi-source power systems with UPFC and SMES. Eng. Sci. Tech. Int. J 19, 338–354 (2016) Pradhan, P.C., Sahu, R.K., Panda, S.: Firefly algorithm optimized fuzzy PID controller for AGC of multi-area multi-source power systems with UPFC and SMES. Eng. Sci. Tech. Int. J 19, 338–354 (2016)
13.
go back to reference Abd-Elazim, S.M., Ali, E.S.: Load frequency controller design via BAT algorithm for nonlinear interconnected power system. Int. J. Electr. Power Energy Syst. 77, 166–177 (2016)CrossRef Abd-Elazim, S.M., Ali, E.S.: Load frequency controller design via BAT algorithm for nonlinear interconnected power system. Int. J. Electr. Power Energy Syst. 77, 166–177 (2016)CrossRef
14.
go back to reference Routh, U.K., Sahu, R.K., Panda, S.: Design and analysis of differential evolution algorithm based automatic generation control for interconnected power system. Ain Shams Eng. J. 4, 409–421 (2013)CrossRef Routh, U.K., Sahu, R.K., Panda, S.: Design and analysis of differential evolution algorithm based automatic generation control for interconnected power system. Ain Shams Eng. J. 4, 409–421 (2013)CrossRef
15.
go back to reference Tanabe, R., Fukunaga, A.: Success-history based parameter adaptation for differential evolution. In: Proc. of 2013 IEEE Congress on Evolut Comput June 20–23; Cancun, Mexico, 71–78 (2013) Tanabe, R., Fukunaga, A.: Success-history based parameter adaptation for differential evolution. In: Proc. of 2013 IEEE Congress on Evolut Comput June 20–23; Cancun, Mexico, 71–78 (2013)
16.
go back to reference Guha D, Roy PK, Banerjee S. Application of krill herd algorithm for optimum design of load frequency controller for multi-area power system network with generation rate constraint. In: Proc of the 4th Int Conf on frontiers in intelligent computing: theory and applications (FICTA); 404:245–257 (2015) Guha D, Roy PK, Banerjee S. Application of krill herd algorithm for optimum design of load frequency controller for multi-area power system network with generation rate constraint. In: Proc of the 4th Int Conf on frontiers in intelligent computing: theory and applications (FICTA); 404:245–257 (2015)
17.
go back to reference Guha, D., Roy, P.K., Banerjee, S.: Krill herd algorithm for automatic generation control with flexible AC transmission system controller including superconducting magnetic energy storage units. J. Eng. IET 2016(5), 147–161 (2016) Guha, D., Roy, P.K., Banerjee, S.: Krill herd algorithm for automatic generation control with flexible AC transmission system controller including superconducting magnetic energy storage units. J. Eng. IET 2016(5), 147–161 (2016)
18.
go back to reference Shabani, H., Vahidi, B., Ebrahimpour, M.: A robust PID controller based on imperialist competitive algorithm for load-frequency control of power systems. ISA Trans. 52(1), 88–95 (2012)CrossRef Shabani, H., Vahidi, B., Ebrahimpour, M.: A robust PID controller based on imperialist competitive algorithm for load-frequency control of power systems. ISA Trans. 52(1), 88–95 (2012)CrossRef
19.
go back to reference Ibraheem, Nizamuddin, Bhatti, T.S.: AGC of two area power system interconnected by AC/DC links with diverse sources in each area. Int. J. Electr. Power Energy Syst. 55, 297–304 (2014)CrossRef Ibraheem, Nizamuddin, Bhatti, T.S.: AGC of two area power system interconnected by AC/DC links with diverse sources in each area. Int. J. Electr. Power Energy Syst. 55, 297–304 (2014)CrossRef
20.
go back to reference Rakhshani, E., Rodriguez, P.: Inertia emulation in AC/DC interconnected power systems using derivative technique considering frequency measurement effects. IEEE Trans on Power Syst, 1–12 (2016) Rakhshani, E., Rodriguez, P.: Inertia emulation in AC/DC interconnected power systems using derivative technique considering frequency measurement effects. IEEE Trans on Power Syst, 1–12 (2016)
21.
go back to reference Rakhshani, E., Remon, D., Rodriguez, P.: Effects of PLL and frequency measurements on LFC problem in multi-area HVDC interconnected systems. Int. J. Electr. Power Energy Syst. 81, 140–152 (2016)CrossRef Rakhshani, E., Remon, D., Rodriguez, P.: Effects of PLL and frequency measurements on LFC problem in multi-area HVDC interconnected systems. Int. J. Electr. Power Energy Syst. 81, 140–152 (2016)CrossRef
22.
go back to reference Mirjalili, S., Lewis, A.: The whale optimization algorithm. Adv. Eng. Softw. 95, 51–67 (2016)CrossRef Mirjalili, S., Lewis, A.: The whale optimization algorithm. Adv. Eng. Softw. 95, 51–67 (2016)CrossRef
23.
go back to reference Bhatt, R., Parmar, G., Gupta, R.: Whale optimized PID controllers for LFC of two area interconnected thermal power plants. ICTACT J. Microelectr. 3(4), 467–472 (2018) Bhatt, R., Parmar, G., Gupta, R.: Whale optimized PID controllers for LFC of two area interconnected thermal power plants. ICTACT J. Microelectr. 3(4), 467–472 (2018)
24.
go back to reference Sivalingam, R., Chinnamuthu, S., Dash, S.S.: A modified whale optimization algorithm-based adaptive fuzzy logic PID controller for load frequency control of autonomous power generation systems. Automatika J. Control, Meas., Electr., Comput. Commun. 58(4), 410–421 (2018) Sivalingam, R., Chinnamuthu, S., Dash, S.S.: A modified whale optimization algorithm-based adaptive fuzzy logic PID controller for load frequency control of autonomous power generation systems. Automatika J. Control, Meas., Electr., Comput. Commun. 58(4), 410–421 (2018)
25.
go back to reference Hasanien, H.M.: Whale optimisation algorithm for automatic generation control of interconnected modern power systems including renewable energy sources. IET Gener. Trans. Distrib. 12(3), 607–614 (2018)CrossRef Hasanien, H.M.: Whale optimisation algorithm for automatic generation control of interconnected modern power systems including renewable energy sources. IET Gener. Trans. Distrib. 12(3), 607–614 (2018)CrossRef
26.
go back to reference Guha, D., Roy, P.K., Banerjee, S.: Oppositional biogeography-based optimisation applied to SMES and TCSC-based load frequency control with generation rate constraints and time delay. Int. J. Power Energy Convers. 7(4), 391–423 (2016)CrossRef Guha, D., Roy, P.K., Banerjee, S.: Oppositional biogeography-based optimisation applied to SMES and TCSC-based load frequency control with generation rate constraints and time delay. Int. J. Power Energy Convers. 7(4), 391–423 (2016)CrossRef
27.
go back to reference Zhang, Z.D.Y., Chen, Z., Li, P., Ni, Y., Shi, L.: Integrated emergency frequency control method for interconnected AC/DC power systems using centre of inertia signals. IET Gener. Trans. Distrib. 6(6), 584–592 (2012)CrossRef Zhang, Z.D.Y., Chen, Z., Li, P., Ni, Y., Shi, L.: Integrated emergency frequency control method for interconnected AC/DC power systems using centre of inertia signals. IET Gener. Trans. Distrib. 6(6), 584–592 (2012)CrossRef
28.
go back to reference Nomura, S., Tsutsui, H., Tsuji-Iio, S., Shimada, R.: Flexible power interconnection with SMES. IEEE Trans. Appl. Supercond. 16(2), 616–619 (2006)CrossRef Nomura, S., Tsutsui, H., Tsuji-Iio, S., Shimada, R.: Flexible power interconnection with SMES. IEEE Trans. Appl. Supercond. 16(2), 616–619 (2006)CrossRef
29.
go back to reference Tripathy, S.C., Hope, G.S., Malik, O.P.: Optimisation of load-frequency control parameters for power systems with reheat steam turbines and governor dead band nonlinearity. IEEE Proc. 129(1), 10–16 (1982) Tripathy, S.C., Hope, G.S., Malik, O.P.: Optimisation of load-frequency control parameters for power systems with reheat steam turbines and governor dead band nonlinearity. IEEE Proc. 129(1), 10–16 (1982)
30.
go back to reference Gopal, M.: Control systems: principles and design, vol. 2. Tata McGraw Hill Pub, New Delhi (2003) Gopal, M.: Control systems: principles and design, vol. 2. Tata McGraw Hill Pub, New Delhi (2003)
Metadata
Title
Whale optimization algorithm applied to load frequency control of a mixed power system considering nonlinearities and PLL dynamics
Authors
Dipayan Guha
Provas Kumar Roy
Subrata Banerjee
Publication date
05-02-2019
Publisher
Springer Berlin Heidelberg
Published in
Energy Systems / Issue 3/2020
Print ISSN: 1868-3967
Electronic ISSN: 1868-3975
DOI
https://doi.org/10.1007/s12667-019-00326-2

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