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Warianty tytułu
A review of optimization methods for evaluation of placement of distributed generation into distribution networks
Języki publikacji
Abstrakty
W ostatnich latach możemy zaobserwować gwałtowny rozwój generacji rozproszonej, uwarunkowany m.in. zmianami legislacyjnymi, liberalizacją rynku oraz koniecznością szybkiego zaspokojenia rosnącego zapotrzebowania na energię elektryczną. Obecność wielu, różnorodnych źródeł energii w sieciach elektroenergetycznych jest dla operatorów sieci przesyłowych i rozdzielczych dużym wyzwaniem. W planowaniu i podejmowaniu decyzji o rozwoju sieci pomocne są metody optymalizacji, których przegląd jest celem tego artykułu. W pracy przedstawione zostaną najczęściej wykorzystywane algorytmy oraz ocena ich skuteczności. Opisane zostaną trendy w podejściach do optymalizacji przyłączania rozproszonych źródeł, a w tym najczęściej brane pod uwagę funkcje celu oraz ograniczenia.
In last decades the rapid development of distributed generation can be observed. It is caused, among others, by legal circumstances, liberalization of the energy market and increasing demand of electrical energy. The presence of many various distributed generators in the power system is a big challenge for the transmission and distribution system operators. Optimization methods, which state-of-the-art is the subject and aim of this paper, can be very helpful in planning and decision making about the reinforcement of the networks. In the paper the most common optimization methods, objective functions and constraints will be described. The current trends in optimization of distributed generation will be presented.
Wydawca
Czasopismo
Rocznik
Tom
Strony
306--313
Opis fizyczny
Bibliogr. 50 poz., rys., tab.
Twórcy
autor
- Politechnika Wrocławska, Instytut Organizacji i Zarządzania, ul. Smoluchowskiego 25, 50-372 Wrocław
Bibliografia
- [1] Ajay-D-Vimal Raj P. , Senthilkumar S., Raja J., Ravichandran S., et al., Optimization of Distributed Generation Capacity for Line Loss Reduction and Voltage Profile Improvement Using PSO, vol. 10, no. 2, 2008, Elektrika, http://fke.utm.my/elektrika, 41-48
- [2] Alarcon-Rodriguez A., Ault G., Galloway S., Multi-objective planning of distributed energy resources: a review of the stateof- the-art, Renewable and Sustainable Energy Review 14 (2010), 1353-1366
- [3] Andrlik Z., Spetlik J., Tlusty J., The control of Power energy system with distributed energy sources, conference proceedings of 6th International Conference Control of Power Systems ’04, Strbske Pleso, Slovak Republick, 16 – 18 June 2004
- [4] Ashok S., Banerjee R., Optimal operation of industrial cogeneration for load management, IEEE Transactions on Power Systems, vol. 18, no. 2 May 2003, 931 - 936
- [5] Bae In-Su, Kim Jin-O, Kim Jae-Chul, Singh C., Optimal Operating Strategy for Distributed Generation Considering Hourly Reliability Worth, IEEE Transactions on Power Systems, vol. 19, no. 1 February 2004, 287-292
- [6] Barin A., Pozzatti L.F., Canha L.N., Machado R.Q., et al., Analysis of multi-objective methods applied to distributed generation systems allocation, First international conference on power engineering, energy and electrical drives - Powereng; 2007, 243–248
- [7] Cano E.B., Utilizing fuzzy optimization for distributed generation allocation, TENCON 2007 - 2007 IEEE Region 10 Conference, November 2007, 1-4
- [8] Celli G., Pilo F., MV Network Planning under uncertainties on Distributed Generation penetration, Conference proceedings Power Meeting Conference, 15-19 July 2001, Vancouver, Canada
- [9] Celli G., Ghiani E., Mocci S., Pilo F., A multi-objective formulation for the optimal sizing and sitting of embedded generation in distribution networks, Power tech conference proceedings, 2003 IEEE, vol. 1; 2003
- [10] Celli G., Ghiani E., Mocci S., Pilo F., A multi-objective evolutionary algorithm for the sizing and siting of distributed generation, IEEE Transaction on Power Systems, vo. 20, no 2, May 2005, 750-757
- [11] Celli G., Mocci S., Pilo F., Soma G., A multi-objective approach for the optimal distributed generation allocation with environmental constraints, Proceedings of the 10th conference on probabilistic methods applied to power systems PMAPS; 2008
- [12] Chiradeja P., Ramakumar R., An approach to quantify the technical benefits of distributed generation, IEEE Transactions on Energy Conversion, vol. 19, no. 4, December 2004, 764-773
- [13] El-Khattam W., Bhattacharya A., Salama M.A., Optimal Investment Planning for Distributed Generation in a Competitive Electricity Market, IEEE Transactions on Power Systems, vol. 19, no. 3, August 2004, 1674-1684
- [14] El-Khattam W., Hegazy Y., Salama M., An Integrated Distributed Generation Optimization Model for Distribution System Planning, IEEE Transaction on Power Systems, vol. 20 no. 2, May 2005, 1158-1165
- [15] Gomez-Villalva E., Ramos A., Optimal Energy Management of an Industrial Consumer in Liberalized Markets, IEEE Transactions on Power Systems, vol. 18, no. 2, May 2003, 716-723
- [16] Haesen E., Espinoza M., Pluymers B., Goethals I. et al., Optimal placement and sizing of DG units using genetic optimization algorithms, Electrical Power Quality and Utilisation Journal vol. XI, no 1, 2005, 97-104
- [17] Haghifam M.R., Falaghi H., Malik O.P., Risk-based distributed generation placement, IET Renewable Power Generation 2008; 2(2), 252–260
- [18] Harrison G.P, Ochoa L.F., Dent Ch.J., Network distributed generation analysis using OPF with voltage step constraints, IEEE Transactions on Power Systems, vol. 25, no.1, February 2010, 296-304
- [19] Harrison G.P., Wallace A.R., OPF evaluation of distribution network capacity for the connection of distributed generation, IEE Proceedings Generation Transmission and Distribution 2005, 152 (January 1), 115-122
- [20] Harrison G.P., Piccolo A., Siano P., Wallace A.R., Hybrid GA and OPF evaluation of network capacity for distributed generation connections, Electric Power Systems Research 78 (2008), 392-398
- [21] Hegazy Y., Salama M., Chikhani A., Adequacy Assessment of distributed generation systems using Monte Carlo Simulation, IEEE Transactions on Power Systems, February 2003, 48-51
- [22] Hoff T., Wenger H., Farmer B., Distributed generation – an alternative to electric utility investments in system capacity, Elsevier, Energy Policy, vol. 24, no. 2 , 1996, 137-147
- [23] Illerhaus S., Verstege J., Optimal operation of industrial CHPbased power systems in liberalized energy markets, Conference proceedings of IEEE Power Tech’99 Conference, Budapest, Hungary, Aug.29 – Sept. 2, 1999
- [24] Jabr R.A., Pal B.C., Ordinal optimization approach for locating and sizing of distributed generation, IET Gener. Transm. Distrib., 2009, vol. 3, Iss. 8, 713-723
- [25] Jia N., Yokoyama R., Zhou Y., Kozu A., An Effective DP Solution for optimal Generation Expansion Planning under New Environment, POWERCON, International Conference on Power System Technology, IEEE 2000, 37-42
- [26] Keane A., O’Malley M., Optimal allocation of embedded generation on distribution networks. IEEE Transaction on Power Systems 2005, 20 (August 3), 1640-1646
- [27] Keane A., O’Malley M., Optimal Distributed Generation Plant Mix with Novel Loss Adjustment Factors, IEEE 2006
- [28] Khodr H.M., Gomez J.F., Barnique L., A Linear Programming Methodology for the Optimization of Electric Power-Generation Schemes, IEEE Transactions on Power Systems, vol. 17, no. 3, August 2002, 864-869
- [29] Kowalska-Pyzalska A., Wilczyński A., Źródła rozproszone w systemie elektroenergetycznym (monografia), Wydawnictwo Kaprint, Lublin 2007
- [30] Kowalska-Pyzalska A., Optymalizacja decyzji o przyłączeniu rozproszonych źródeł energii elektrycznej do sieci elektroenergetycznej z wykorzystaniem optymalizacji liniowej, Przegląd Elektrotechniczny, 85 (2009), nr 8, 2009, 70-75
- [31] Kowalska-Pyzalska A., Optymalizacja decyzji o przyłączeniu rozproszonych źródeł energii elektrycznej do sieci elektroenergetycznej z wykorzystaniem optymalizacji po współrzędnych, Przegląd Elektrotechniczny, 86 (2010), nr 6, 2010, 206-211
- [32] Krueasuk W., Ongsakul W., Optimal placement of distributed generation using particle swarm optimization, Proceedings of the Australasian Universities Power Engineering Conference PRZEGLĄD ELEKTROTECHNICZNY, ISSN 0033-2097, R. 89 NR 5/2013 313 (AUPEC 2006), Melbourne, Victoria, Australia, 10-13 December 2006
- [33] Maciel R.S, Padilha-Feltrin A., Distributed generation impact evaluation using multi-objective tabu search, IEEE 2009
- [34] Mori H., An improved tabu search approach to distribution network expansion planning under new environment, 2004 International Conference on Power System Technology POWERCON 2004, Singapore, 21-24 November 2004, IEEE 2004, 981-986
- [35] Naka S., Genji T., Yura T., et al., A hybrid particle swarm optimization for distribution state estimation, IEEE Transactions on Power Systems, vol. 18, no. 1 February 2003, 60 - 68
- [36] Nara, K., Hayashi Y., Ikeda K., Ashizawa T., Application of tabu search to optimal placement of distributed generators, IEEE 2001, 981-923
- [37] Oczoa L.F., Feltrin A.P., Harrison G.P., Evaluation of a multiobjective performance index for distribution systems with distributed generation, 18th International Conference on Electricity Distribution (CIRED), Turin, June 6-9, 2005
- [38] Ochoa L.F, Feltrin A.P., Harrison G.P., Evaluating Distributed Time-Varying Generation Through a Multi-objective Index, IEEE Transactions on Power Delivery, vol. 23, no. 2, April 2008, 1132-1138
- [39] Ochoa L.F., Keane A., Dent C., Harrison G.P., Applying active network management schemes to an Irish distribution network for wind power maximization, Proceedings of 20th international conference on electricity distribution CIRED 2009, 2009
- [40] Ochoa L.F., Harrison G.P., Minimizing energy losses: optimal accommodation and smart operation of renewable distributed generation, IEEE Transactions on Power Systems, vo. 26, no.1, February 2011, 198-205
- [41] Orths A., Planning of power distribution networks comparison of two multi-criteria approaches, materiały konferencyjne MEPS ’02 – Modern Electric Power Systems, Wrocław, 11-13 września 2002, 53 – 58
- [42] Punjad P., Ault G.W., Forte C., Optimization vs. Multiple Criteria Decision Making for Future Distribution System Planning, Proceedings UPEC 2005, Cork
- [43] Ramirez-Rosado J., Bernal-Agustin J.L.: Reliability and Costs Optimization for Distribution Networks Expansion Using an Evolutionary Algorithm, IEEE Transactions on Power Systems vol. 16 no. 1, February 2001, 111-117
- [44] Rosehart W., Nowicki E., Optimal placement of distributed generation, 14th PSCC, Sevilla, 24-28 June 2002
- [45] Santos J.R., Lora, A., Exposito A., Ramos J.L, Finding improved local minima of power system optimization problems by interior-point methods, IEEE Transaction on Power Systems, vo. 18, no. 1 February 2003, 238-243
- [46] Shukla T.N., Singh S.P., Naik K.B., Allocation of optimal distributed generation using GA for minimum system losses in radial distribution networks, International Journal of Engineering, Science and Technology, vol. 2, no. 3, 2010, 94-106
- [47] Singh D., Singh D., Verma K.S., GA based optimal sizing & placement of distributed generation for loss minimization, International Journal of Electrical and Computer Engineering, 2:8 2007, 556-562
- [48] Tang X, Tang G., Multi-objective planning for distributed generation in distribution network. In: Third international conference on electric utility deregulation and restructuring and power technologies, DRPT 2008; 2008
- [49] Wang C., Hashem Nehrir M., Analytical Approaches for Optimal Placement of Distributed Generation Sources in Power Systems, IEEE Transactions on Power Systems vol. 19 no.4, November 2004, 2068-2076
- [50] Zoka Y., Kashiwai S Kawahara K.: A study of allocation of dispersed electrical and thermal energy systems into distribution networks - optimal operation planning, Conference proceedings POWERCON 2000 International Conference on Power System Technology, Perth, 4-7 December 2000, 43-47
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-1d7813b4-7d3c-4142-8642-cd069eb449fd