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Tytuł artykułu

Optimal Sizing and Placement of Distributed Generation in Distribution System Considering Losses and THDv using Gravitational Search Algorithm

Wybrane pełne teksty z tego czasopisma
Identyfikatory
Warianty tytułu
PL
Optymalizacja rozmieszczenia i mocy generatorów energii w systemie rozproszonym z wykorzystaniem algorytmu GSA – zagadnienia całkowitych strat i THD napięcia
Języki publikacji
EN
Abstrakty
EN
This paper presents a new method for determining optimal sizing and suitable placement for distributed generation (DG) in distribution system. A multi-objective function is created to minimise the total losses and average voltage total harmonic distortion (THDv) of the distribution system. The proposed method utilizes gravitational search algorithm (GSA )in the optimization process and its performance is compared with other optimization techniques such as particle swarm optimisation (PSO) and evolutionary programming (EP). The results show that the GSA performs better than PSO and EP by giving the best fitness value and convergence rate.
PL
W artykule opisano metodę optymalizacji rozmieszczenia i mocy generatorów energii w systemie rozproszonym. Opracowana została funkcja wielokryterialna, służąca do minimalizacji całkowitych strat i wskaźnik THD napięcia. Optymalizacja dokonywana jest z wykorzystaniem algorytmu GSA. Jego działanie zostało porównane z działaniem innych metod, jak PSO i EP. Przedstawiono wyniki porównania.
Rocznik
Strony
132--136
Opis fizyczny
Bibliogr. 25 poz., rys., tab.
Twórcy
  • Universiti Kebangsaan Malaysia
autor
  • Universiti Kebangsaan Malaysia
autor
  • Universiti Kebangsaan Malaysia
autor
  • Universiti Kebangsaan Malaysia
autor
  • Universiti Kebangsaan Malaysia
Bibliografia
  • [1] Barker P.P., De Mello R.W., Determining the impact of distributed generation on power system: part 1- radial distribution systems. IEEE Power Engineering Society Summer Meeting, 3(2000), No.1, 1645-1656
  • [2] Begovic M., Sustainable energy technologies and distributed generation, IEEE Power Engineering Society Summer Meeting, 1(2001), No. 1, 540-545
  • [3] Dugan R.C., McDermot T.E., Ball G.J., Distribution planning for distributed generation, Rural Electric Power Conference, 1(2000), No. 1, C4/1-C4/7
  • [4] Ryszard P., Irena W., Assessment of Power Quality at the Point of Coupling of Wind Power Plant with the Electrical Power System, Przeglad Elektrotechniczny (Electrical Review), 2(2012), No. 1, 82-85
  • [5] Amanifar O., Hamedani Golshan M.E., Optimal distributed generation placement and sizing for loss and THD reduction and voltage profile improvement in distribution system using particle swarm optimisation and sensitivity analysis, International Journal on Technical and Physical Problems of Engineering (IJTPE), 3(2011),No. 1, 47-53
  • [6] Eajal A., El-Hawary M.E., Optimal capacitor placement and sizing in unbalanced distribution system with harmonic consideration using particle swarm optimisation, IEEE Trans. Power Delivery, 25(2010), No. 1, 1734-1741
  • [7] Rau N.S., Wan Y.H., Optimal location of resources in distributed planning, IEEE. Trans. on Power Systems, 9(1994), No. 1, 2014-2020
  • [8] Gandomkar M., Vakilian M., Ehsan M., Optimal distributed generation allocation in distribution network using hereford ranch algorithm, Eighth International Conference on Electrical Machines and Systems, 2(2005), No. 1, 916-918
  • [9] Kim J.O., Nam S.W., Park S.K., Singh C., Dispersed generation planning using improved hereford ranch algorithm, Electric Power System Research, 47(1998), No. 1, 47-55
  • [10] Kim K.H., Lee Y.J., Rhee S.B., Lee S.K., You S.K., Dispersed generator placement using fuzzy-GA in distribution systems, IEEE Power Engineering Society Summer Meeting, 3(2002), No. 1, 1148-1153
  • [11] Silvestri A., Berizzi A., Buonanno S., Distributed generation planning using genetic algorithms, International Conference on Electrical Power Engineering, 1(1999), No. 1, 99-105
  • [12] Willis H.L., Analytical methods and rules of thumb for Modelling DG distribution interaction, IEEE Power Engineering Society Summer Meeting, 3(2000), No. 1, 1643-1644
  • [13] Rugthaichararoencheep N., Sirisumrannukul S., Feeder reconfiguration with dispactchable distributed generators in distribution system by tabu search, 44th International Universities Power Engineering Conference, 1(2009), No. 1, 57-62
  • [14] Celli G., Ghaiani E., Mocci S., Pilo F., A multiobjective evolutionary algorithm for the sizing and sitting of distributed generation, IEEE Trans. on Power Systems, 20(2005), No.1, 750-757
  • [15] Parizad A., Khazali A.H., Kalantar M., Sitting and sizing of distributed generation through harmony search algorithm for improve voltage profile and reduction of THD and losses, 23rd Canadian Conference on Electrical and Computer Engineering (CCECE), 1(2010), No. 1, 1-7
  • [16] Jain N., Singh S.N., Srivastava S.C., Particle swarm optimization based method for optimal siting and sizing of multiple distributed generators, 16th National Power Conference, 1(2010), 669-674
  • [17] Kamari N.A.M., Musirin I., Othman M.M., EP based optimization for estimating synchronizing and damping torque coefficients, Australian Journal of Basic and Applied Sciences, 4(2010), No. 1, 3741-3754
  • [18] Abdullah N.R.H., Musirin I., Othman M.M., Transmission loss minimization using evolutionary programming considering UPFC installation cost, International Review of Electrical Engineering (IREE), 2(2010), No. 1, 1189-1203
  • [19] Kitchin R.H., Converter harmonics in power system using statevariable analysis, IEE Proceeding-Part C, 128(1981), No. 4, 567-572
  • [20] Heydt G.T., Galli A.W., Transient power qality problem using wavelet, IEEE Trans. on PWRD, 12(1997), No. 2, 908-915
  • [21] Rashedi E., Nezamabadi-pour H., Saryazdi S., GSA: A Gravitational search algorithm, Information Science, 179(2009), No. 1, 2232-2248
  • [22] Xia D., Heydt G.T., Harmonic power study, Part 1 – Formulation and solution, IEEE Trans. on PAS, 101(1982), No.6, 1257-1265
  • [23] Xia D., Heydt G.T., Harmonic power study, Part 2 – Implementation and practical application, IEEE Trans. on IAS, 30(1982), No. 6, 1266-1270
  • [24] Chang C.Y., Teng J.H., Three-phase harmonic load flow method, IEEE International Conference on Industrial Technology (IEEE ICIT’02), 2(2002), No. 1, 839-844
  • [25] Teng J.H., Chang C.Y., Backward/forward sweep-based harmonic analysis method for distribution systems, IEEE Trans. on Power Delivery, 22(2007), No.1, 1665-1672
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-d721ad62-6b61-42f5-a0e7-ca3dadeb31fe
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