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[1]        A. Bhardwaj, V. K. Kamboj, V. K. Shukla, B. Singh, and P. Khurana, "Unit commitment in electrical power system-a literature review," in Power Engineering and Optimization Conference (PEDCO) Melaka, Malaysia, 2012 Ieee International, 2012, pp. 275-280.

[2]        Q. P. Zheng, J. Wang, and A. L. Liu, "Stochastic Optimization for Unit Commitment - A Review," Power Systems, IEEE Transactions on, vol. PP, pp. 1-12, 2014.

[3]        B. Saravanan, S. Das, S. Sikri, and D. P. Kothari, "A solution to the unit commitment problem—a review," Frontiers in Energy, vol. 7, pp. 223-236, 2013/06/01 2013.

[4]        P. Jong-Bae, J. Yun-Won, S. Joong-Rin, and K. Y. Lee, "An Improved Particle Swarm Optimization for Nonconvex Economic Dispatch Problems," Power Systems, IEEE Transactions on, vol. 25, pp. 156-166, 2010.

[5]        J. A. M. d. Sousa, "Despacho Económico de Grupos Térmicos de Produção de Energia Eléctrica " Instituto Superior de Engenharia de Lisboa2005.

[6]        K. Y. Lee and P. Jong-Bae, "Application of Particle Swarm Optimization to Economic Dispatch Problem: Advantages and Disadvantages," in Power Systems Conference and Exposition, 2006. PSCE '06. 2006 IEEE PES, 2006, pp. 188-192.

[7]        T. Saksornchai, L. Wei-Jen, K. Methaprayoon, J. R. Liao, and R. J. Ross, "Improve the unit commitment scheduling by using the neural-network-based short-term load forecasting," Industry Applications, IEEE Transactions on, vol. 41, pp. 169-179, 2005.

[8]        M. A. Matos, "Introdução ao problema de escalonamento e pré-despacho," Faculdade de Engenharia da Universidade do Porto2007.

[9]        T. Yang and T. O. Ting, "Methodological Priority List for Unit Commitment Problem," in Computer Science and Software Engineering, 2008 International Conference on, 2008, pp. 176-179.

[10]      S. Salam, "Unit Commitment Solution Methods," Proceedings of World Academy of Science, Engineering and Technology, vol. 26, pp. 600-605, 26 December 2007.

[11]      P. K. Singhal and R. N. Sharma, "Dynamic programming approach for solving power generating unit commitment problem," in Computer and Communication Technology (ICCCT), 2011 2nd International Conference on, 2011, pp. 298-303.

[12]      P. Joon-Hyung, K. Sun-Kyo, P. Geun-Pyo, Y. Yong-Tae, and L. Sang-Seung, "Modified dynamic programming based unit commitment technique," in Power and Energy Society General Meeting, 2010 IEEE, 2010, pp. 1-7.

[13]      J. A. Momoh and Z. Yi, "Unit commitment using adaptive dynamic programming," in Intelligent Systems Application to Power Systems, 2005. Proceedings of the 13th International Conference on, 2005, p. 4 pp.

[14]      W. Ongsakul and N. Petcharaks, "Transmission and ramp constrained unit commitment using enhanced adaptive Lagrangian relaxation," in Power Tech, 2005 IEEE Russia, 2005, pp. 1-8.

[15]      M. Bavafa, N. Navidi, and H. Monsef, "A new approach for profit-based unit commitment using Lagrangian relaxation combined with ant colony search algorithm," in Universities Power Engineering Conference, 2008. UPEC 2008. 43rd International, 2008, pp. 1-6.

[16]      D. N. Simopoulos, S. D. Kavatza, and C. D. Vournas, "Unit Commitment by an Enhanced Simulated Annealing Algorithm," in Power Systems Conference and Exposition, 2006. PSCE '06. 2006 IEEE PES, 2006, pp. 193-201.

[17]      L. Jenkins, "Hybrid algorithms for power system unit commitment," in Circuits and Systems, 2007. MWSCAS 2007. 50th Midwest Symposium on, 2007, pp. 678-681.

[18]      C. C. A. Rajan, "Genetic algorithm based simulated annealing method for solving unit commitment problem in utility system," in Transmission and Distribution Conference and Exposition, 2010 IEEE PES, 2010, pp. 1-6.

[19]      V. Miranda, "Computação Evolucionária: Uma Introdução," Faculdade de Engenharia da Universidade do Porto2005.

[20]      T. Logenthiran and D. Srinivasan, "Particle Swarm Optimization for unit commitment problem," in Probabilistic Methods Applied to Power Systems (PMAPS), 2010 IEEE 11th International Conference on, 2010, pp. 642-647.

[21]      Y. Le Thanh Xuan, D. Sharma, D. Srinivasan, and P. N. Manji, "A modified hybrid particle swarm optimization approach for unit commitment," in Evolutionary Computation (CEC), 2011 IEEE Congress on, 2011, pp. 1738-1745.

[22]      B. E. Turkay and Y. Zeybekoglu, "An enhanced particle swarm optimization approach for the unit commitment problem," in Electrical and Electronics Engineering (ELECO), 2011 7th International Conference on, 2011, pp. I-198-I-202.

[23]      A. H. Mantawy, Y. L. Abdel-Magid, and S. Z. Selim, "Unit commitment by tabu search," Generation, Transmission and Distribution, IEE Proceedings-, vol. 145, pp. 56-64, 1998.

[24]      A. A. Khatibzadeh, G. A. Khanbeigi, M. M. Bamdadian, H. Naderi, and M. K. Sheikh-el-Eslami, "An improved Tabu search algorithm and PSO for unit commitment problem solving," in Electrical Engineering (ICEE), 2011 19th Iranian Conference on, 2011, pp. 1-6.

[25]      T. Mitani, Y. Mishima, T. Satoh, and K. Nara, "Optimal Generation Scheduling under Competitive Environment," in Systems, Man and Cybernetics, 2006. SMC '06. IEEE International Conference on, 2006, pp. 1843-1848.

[26]      C. C. A. Rajan, "An evolutionary programming based tabu search method for unit commitment problem with cooling-banking constraints," in Power India Conference, 2006 IEEE, 2006, p. 8 pp.

[27]      R. B. Magadum, G. Suchitra, and S. H. Jangamshetti, "Fuzzy Logic solution for Unit Commitment," International Journal of Scientific & Enginneering Research, vol. 3, pp. 1-5, April 2012.

[28]      D. P. Kadam, S. S. Wagh, and P. M. Patil, "Thermal Unit Commitment Problem by Using Genetic Algorithm, Fuzzy Logic and Priority List Method," in Conference on Computational Intelligence and Multimedia Applications, 2007. International Conference on, 2007, pp. 468-472.

[29]      D. P. Kadam, P. M. Sonwane, V. P. Dhote, and B. E. Kushare, "Fuzzy logic algorithm for Unit Commitment Problem," in Control, Automation, Communication and Energy Conservation, 2009. INCACEC 2009. 2009 International Conference on, 2009, pp. 1-4.

[30]      A. Abu-Jasser, "Solving the Unit Commitment Problem Using Fuzzy Logic," International Journal of Computer and Electrical Engineering, vol. 3, pp. 824-829, December 2011.

[31]      E. J. Contreras-Hernandez and J. R. Cedeno-Maldonado, "A Sequential Evolutionary Programming Approach to Profit-Based Unit Commitment," in Transmission & Distribution Conference and Exposition: Latin America, 2006. TDC '06. IEEE/PES, 2006, pp. 1-8.

[32]      N. C. Nayak and C. C. A. Rajan, "Hydro-thermal scheduling by a hybrid Evolutionary Programming - Tabu Search method with cooling - Banking constraints," in Computing, Electronics and Electrical Technologies (ICCEET), 2012 International Conference on, 2012, pp. 98-103.

[33]      P. P. Bedekar, S. R. Bhide, and V. S. Kale, "Optimum Unit Commitment for Thermal Power Plants - A Genetic Algorithm Approach," in India Conference (INDICON), 2009 Annual IEEE, 2009, pp. 1-4.

[34]      S. Jalilzadeh and Y. Pirhayati, "An Improved Genetic Algorithm for unit commitment problem with lowest cost," in Intelligent Computing and Intelligent Systems, 2009. ICIS 2009. IEEE International Conference on, 2009, pp. 571-575.

[35]      K. Abookazemi and M. W. Mustafa, "Unit Commitment optimization using improved Genetic Algorithm," in PowerTech, 2009 IEEE Bucharest, 2009, pp. 1-6.

[36]      L. A. C. Roque, D. B. M. M. Fontes, and F. A. C. C. Fontes, "A hybrid biased random key genetic algorithm approach for the unit commitment problem," Journal of Combinatorial Optimization, vol. 28, pp. 140-166, 2014.

[37]      L. A. Roque, "Optimization Methods for the Unit Commitment Problem in Electric Power Systems," PhD Applied Mathematics, U. Porto, 2014.

[38]      J. Wang, A. Botterud, V. Miranda, C. Monteiro, and G. Sheble, "Impact of Wind Power Forecasting on Unit Commitment and Dispatch."

[39]      C. Xuefei, L. Xiangyu, and L. Zuoming, "Quantifying Spinning Reserve in Systems with Significant Wind Power Penetration," in Power and Energy Engineering Conference (APPEEC), 2012 Asia-Pacific, 2012, pp. 1-5.

[40]      C. C. Caroe and R. Schultz, "A Two-Stage Stochastic Program for Unit Commitment Under Uncertainty in a Hydro-Thermal Power System," Konrad-Zuse-Zentrum fur Informationstechnik Berlin, February 1998.

[41]      T. Shiina and J. R. Birge, "Stochastic Unit Commitment Problem," pp. 117-123, 2002.

[42]      Y. Jie, L. Yongqian, H. Shuang, G. Chenghong, and L. Furong, "A robust probabilistic wind power forecasting method considering wind scenarios," in Renewable Power Generation Conference (RPG 2014), 3rd, 2014, pp. 1-6.

[43]      M. Xi-Yuan, S. Yuan-Zhang, and F. Hua-Liang, "Scenario Generation of Wind Power Based on Statistical Uncertainty and Variability," Sustainable Energy, IEEE Transactions on, vol. 4, pp. 894-904, 2013.

[44]      M. Cui, D. Ke, Y. Sun, D. Gan, J. Zhang, and B. Hodge, "Wind Power Ramp Event Forecasting Using a Stochastic Scenario Generation Method," Sustainable Energy, IEEE Transactions on, vol. PP, pp. 1-1, 2015.

[45]      J. Sumaili, H. Keko, V. Miranda, A. Botterud, and J. Wang, "Clustering-based wind power scenario reduction technique," presented at the 17th Power Systems Computation Conference, Stockholm Sweden, 2011.

[46]      N. Growe-Kuska, H. Heitsch, and W. Romisch, "Scenario reduction and scenario tree construction for power management problems," in Power Tech Conference Proceedings, 2003 IEEE Bologna, 2003, p. 7 pp. Vol.3.

[47]      C. Monteiro, R. Bessa, V. Miranda, A. Botterud, J. Wang, and G. Conzelmann, "Wind Power Forecasting: State-of-the-Art," Argonne National Laboratory2009.

[48]      Y. Ming, F. Shu, and L. Wei-Jen, "Probabilistic short-term wind power forecast using componential Sparse Bayesian Learning," in Industrial & Commercial Power Systems Technical Conference (I&CPS), 2012 IEEE/IAS 48th, 2012, pp. 1-8.

[49]      G. Sideratos and N. D. Hatziargyriou, "Probabilistic Wind Power Forecasting Using Radial Basis Function Neural Networks," Power Systems, IEEE Transactions on, vol. 27, pp. 1788-1796, 2012.

[50]      G. Yongpei and W. Jianhui, "Uncertainty Sets for Robust Unit Commitment," Power Systems, IEEE Transactions on, vol. 29, pp. 1439-1440, 2014.

[51]      A. Lorca and X. A. Sun, "Adaptive Robust Optimization With Dynamic Uncertainty Sets for Multi-Period Economic Dispatch Under Significant Wind," Power Systems, IEEE Transactions on, vol. PP, pp. 1-12, 2014.

[52]      T. Parriani, C. Guojing, C. Meyers, and D. Rajan, "An efficient approach for solving large stochastic unit commitment problems arising in a California ISO planning model," in PES General Meeting | Conference & Exposition, 2014 IEEE, 2014, pp. 1-5.

[53]      P. A. Ruiz, C. R. Philbrick, and P. W. Sauer, "Wind power day-ahead uncertainty management through stochastic unit commitment policies," in Power Systems Conference and Exposition, 2009. PSCE '09. IEEE/PES, 2009, pp. 1-9.

[54]      W. Qianfan, W. Jianhui, and G. Yongpei, "Stochastic Unit Commitment With Uncertain Demand Response," Power Systems, IEEE Transactions on, vol. 28, pp. 562-563, 2013.

[55]      V. Siriariyaporn, F. T. Sparrow, and D. J. Gotham, "A Two-Stage Stochastic Unit Commitment with Electricity Derivatives," in Power Symposium, 2006. NAPS 2006. 38th North American, 2006, pp. 431-438.

[56]      W. Lei, M. Shahidehpour, and L. Tao, "Cost of Reliability Analysis Based on Stochastic Unit Commitment," Power Systems, IEEE Transactions on, vol. 23, pp. 1364-1374, 2008.

[57]      A. Koc and S. Ghosh, "Optimal scenario tree reductions for the stochastic Unit Commitment Problem," in Simulation Conference (WSC), Proceedings of the 2012 Winter, 2012, pp. 1-12.

[58]      A. Yu and Z. Bo, "Exploring the Modeling Capacity of Two-Stage Robust Optimization: Variants of Robust Unit Commitment Model," Power Systems, IEEE Transactions on, vol. 30, pp. 109-122, 2015.

[59]      Z. Chaoyue and G. Yongpei, "Unified Stochastic and Robust Unit Commitment," Power Systems, IEEE Transactions on, vol. 28, pp. 3353-3361, 2013.

[60]      W. Qianfan, J. P. Watson, and G. Yongpei, "Two-stage robust optimization for N-k contingency-constrained unit commitment," Power Systems, IEEE Transactions on, vol. 28, pp. 2366-2375, 2013.

[61]      Z. Shu, S. Yonghua, H. Zechun, and Y. Liangzhong, "Robust optimization method based on scenario analysis for unit commitment considering wind uncertainties," in Power and Energy Society General Meeting, 2011 IEEE, 2011, pp. 1-7.

[62]      Z. Weihong and D. Nikovski, "State-space approximate dynamic programming for stochastic unit commitment," in North American Power Symposium (NAPS), 2011, 2011, pp. 1-7.

[63]      B. Saravanan, S. Sikri, K. S. Swarup, and D. P. Kothari, "Unit commitment using DP - An exhaustive working of both classical and stochastic approach," in Power, Energy and Control (ICPEC), 2013 International Conference on, 2013, pp. 382-385.

[64]      J. J. Hargreaves and B. F. Hobbs, "Commitment and Dispatch With Uncertain Wind Generation by Dynamic Programming," Sustainable Energy, IEEE Transactions on, vol. 3, pp. 724-734, 2012.

[65]      P. Pires, "Formação de sinais de preço de eletricidade em sistemas elétricos insulares de pequena dimensão," Mestrado Integrado, Departamento Engenharia Electrotécnica e de Computadores, Faculdade de Engenharia Universidade do Porto, 2014.

[66]      P. Fonte, "Advanced forecast and scheduling of power systems with highly variable sources," PhD, Departamento Engenharia Electrotécnica e de Computadores, Faculdade de Engenharia Universidade do Porto, 2015.

[67]      SiNGULAR, "Report on the state-of-the-art on scheduling tools and the mathematical formulation of the proposed scheduling models," 2012.

[68]      B. Brandão, "Algoritmo de otimização de despacho de produção elétrica considerando previsão de produção renovável," Mestrado Integrado, Departamento Engenharia Eletrotécnica e de Computadores, Faculdade de Engenharia da Universidade do Porto, 2013.

 

 

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