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Jadual 2.3 Ciri bateri dan kapasitor ultra Ciri-ciri Kapasitor Ultra Bateri

2.5 KOMPONEN SISTEM PENJANA TERAGIH BERASASKAN SEL FUEL

Terdapat beberapa komponen dalam sistem PT berasaskan sel fuel, iaitu, unit pemproses bahan api, unit tindanan sel fuel, dan unit penyesuai kuasa (UPK). Setiap komponen mempunyai kriterianya tersendiri yang perlu diambilkira dalam pemodelan sel fuel.

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RUJUKAN

Amphlett, J. C., Mann, R. F., Peppley, B. A., Roberge, P. R., Rodrigues, A. & Salvador, J. P. 1996. A model predicting transient responses of proton exchange membrane fuel cells. Journal of Power Sources 61(1–2):183–188. Asnawi, M. B., Mau, T. A. & Malik, M. 2011. End user load profile analysis for

distribution system planning. 21st International Conference on Electricity Distribution, hlm. 1-4.

Atif, I., Adoum, L., Imtiaz, A., & Mohibullah. 2006. MATLAB/SIMULINK model of space vector pwm for threephase voltage source inverter. Proc UPEC, hlm. 1096-1100.

Azmy, A. M. & Erlich, I. 2004. Intelligent operation management of fuel cells and micro-turbine using genetic algorithm and neural network. International

Conference on New and Renewable Energy Technologies for Sustainable Development, hlm. 1-15.

Benghanem, M. & Mellit, A. 2010. Radial Basis Function Network-based prediction of global solar radiation data: Application for sizing of a standalone photovoltaic system at Al-Madinah, Saudi Arabia. Energy 35(9): 3751-3762. Bibin, H., Peng, L., Dan, W., Fei, D. & Chengshan, W. 2009. Modeling and analysis

of PEMFC in distributed generation system in sustainable power generation and supply. SUPERGEN '09. International Conference, hlm. 1-5.

Blaabjerg, F., Chen, Z. & Kjaer, S. B. Power electronics as efficient interface in dispersed power generation systems. IEEE Transaction on Power Electronics 19(5): 1184–1194.

Bollen, M. H. J. 2003. What is power quality? Electric Power Systems Research 66(1): 5-14.

Borbely, A. M. & Kreidel, J. F. 2001. Distributed generation: The power paradigm

for the new millennium: CRC Press.

Bosman, A. J. A., Cobben, J. F. G., Myrzik, J. M. A. & Kling, W. L. 2006. Harmonic Modelling of Solar Inverters and Their Interaction with the Distribution Grid.

Proceedings of the 41st International Universities Power Engineering Conference (UPEC '06), hlm.991-995.

Brabandere, D. K., Bruno, B., Van den Keybus, J., Woyte, A., Driesen, J. & Belmans, R. 2007. A voltage and frequency droop control method for parallel inverters.

164

Brady, P., Dai, C., & Baghzouz, Y. 2003. Need to revise switched capacitor controls on feeders with distributed generation. IEEE PES Transmission and

Distribution Conference and Exposition, hlm. 590-594.

Bum, K. Y., Jin, A. S., Jooho, M., Joosun, K. & Weon L. H. 2006. Direct-write fabrication of integrated planar solid oxide fuel cells. Journal of

Electroceramics 17(2-4): 683-687.

Carlson, E., Zogg, R., Sriramulu, S., Roth, K. & Brodrick, J. 2007. Emerging technologies: using phosphoric-acid fuel cells. ASHRAE Journal 1(1): 50-51. Cecati, C., Mokryani, G., Piccolo, A. & Siano, P. 2010. An overview on the smart

grid concept. 36th Annual Conference on IEEE Industrial Electronics Society, hlm. 3322-3327.

Chaisantikulwat, A., Diaz-Goano, C. & Meadows, E. S. 2008. Dynamic Modelling and Control of Planar Anode-Supported Solid Oxide Fuel Cell, Computers and

Chemical Enginerring 32 (10): 2365-2381.

Chandorkar, M. C., Divan, D. M. & Adapa, R. 1993. Control of parallel connected inverters in standalone AC supply systems. IEEE Transaction on Industry

Appications 29(1): 136–143.

Chinda, P., Chanchaona, S., Brault, P. & Wishsanuruk, W. 2011. A Planar Anode-Supported Solid Oxide Fuel Cell Model with Internal Reforming of Natural Gas. European Physical Journal Applied Physics 54 (2): 1-16.

Coppez, G., Chowdhury, S. & Chowdhury, S.P. 2010. Review of battery storage optimisation in distributed generation. Power Electronics, Drives and Energy

Systems & 2010 Power India, 2010 Joint International Conference, hlm. 1-6.

Davat, B., et al. 2009. Fuel cell-based hybrid systems, Advanced Electromechanical

Motion Systems & Electric Drives Joint Symposium, ELECTROMOTION 2009, hlm. 1-11.

Demuth, H., Beale, M. & Hagan, M. 2006. Neural network toolbox v5 for use with

Matlab. USA: The Math works Inc.

Divya, K. C. & Østergaard, J. 2009. Battery energy storage technology for power systems - an overview. Electric Power Systems Research 79(4): 511-520. El-Sharkh, M.Y., Rahman, A., Alam, M. S., Byrne, P. C., Sakla, A. A. & Thomas, T.

2004. A dynamic model for a stand-alone PEM fuel cell power plant for residential applications, J. Power Sources 138 (1-2): 199-204.

Energy Information Administration (EIA), International Energy Outlook 2013, http://www.eia.doe.gov/iea [20 Februari 2014].

165

Enslin, J. H. R., Hulshorst, W. T. J., Atmadji, A. M. S., Heskes, P. J. M., Kotsopoulos, A., Cobben, J. F. G. & Van der Sluijs, P. 2003. Harmonic interaction between large numbers of photovoltaic inverters and the distribution network. IEEE

Bologna Power Tech Conference Proceedings, hlm.1-6.

European Technology Platform Smart Grids. 2008. Strategic Deplomen Document for European´s Electricity Networks of the Future. Draft for 3rd General Assembly Belgium.

Fadali, H. 2008. Fuel Cell Distributed Generation: Power Conditioning, Control and Energy Management, Master thesis, University of Waterloo.

Femia, N., Petrone, G., Spagnuolo, G., & Vitelli, M. 2005. Optimization of perturb and observe maximum power point tracking method IEEE Transaction on

Power Electronics 20(4): 963-973.

Femia, N., Petrone, G., Spagnuolo, G. & Vitelli, M. 2012. Power Electronics and

Control Techniques for Maximum Energy Harvesting in Photovoltaic Systems.

CRC Press

Fronius international. 2011. Retrieved from database of solar energy. 2013. [Online] http://www.fronius.com/cps/rde/xchg/SID-BB96B05BB96FC168/

fronius_international/hs.xsl/1001_ENG_HTML.htm [20 May 2013]

Gavin, H. P. 2013. The levenberg-marquardt method for nonlinear least squares curve-fitting problems. Technical Report Department of Civil and

Environmental Engineering Duke University.

Gemmen, R. S. 2001. Analysis for the effect of inverter ripple current on fuel cell operating conditions. Journal of Fluids Engineering 125(3): 576-585.

Georgakis, D., Papathanassiou, S. & Manias, S. 2005. Modeling and control of a small scale grid-connected PEM fuel cell system. Power Electronics Specialists

Conference, hlm. 1614-1620.

Georgis, D. 2013. Design and Control of Integrated Systems for Hydrogen Production and Power Generation. PhD Thesis. University of Minnesota.

Gharedaghi, F., Deysi, M., Jamali, H. & Kalili, A. 2011. Investigation of power quality in presence of fuel cell based distributed generation. Australian Journal

of Basic and Applied Sciences 5(10): 1106-1111.

Ghareeb, W. T., Bendary, F. M., Saied, E. M. & Hegazy, Y. G. 2010. Investigating the performance of a fuel cell based distributed generation system. Energy

Conference and Exhibition, hlm. 1-5.

Ghasemi, N., Abedi, M., Rastegar, H. & Gharepetian, G. 2008. Hybrid distributed generation units PEM fuel cell and microturbine in industrial technology, IEEE

166

Golbabai, A., Mammadov, M. & Seifollahi, S. 2009. Solving a system of nonlinear integral equations by an RBF network. Computers & Mathematics with

Applications 57(10): 1651-1658.

Guerrero, J. M., Blaabjerg, F., Zhelev, T., Hemmes, K., Monmasson, E., Jemei, S., Comech, M. P., Granadino, R. & Frau, J. I. 2010. Distributed generation: toward a new energy paradigm. Industrial Electronics Magazine IEEE, 4(1): 52-64.

Hajizadeh, A. & Golkar, M. A. 2009. Fuzzy neural control of a hybrid fuel cell/battery distributed power generation system. IET Renewable Power Generation, 3(4): 402–414.

Hajizadeh, A. & Golkar, M. A. 2010. Control of hybrid fuel cell/energy storage distributed generation system against voltage sag. International Journal of

Electric Power and Energy Systems 32(5): 488-497.

Hall, D. J. & Colclaser, R. G., Transient modeling and simulation of a tubular solid oxide fuel cell. IEEE Transactions on Energy Conversion 14(3): 749-753. Hatta, H., & Kobayashi, H. 2007. A study of centralized voltage control method for

distribution system with distributed generation. CIRED 19th International

Conference on Electricity Distribution, hlm. 1-4.

Heydt, G. T., Jewell, W. T. 1998. Pitfalls of electric power quality indices. IEEE

Transactions on Power Delivery 13(2): 570 – 578.

Horizon Fuel Cell Technologies. 2013. H-500XP Fuel Cell Stack User Manual.

IEC Std. 61727. 2004. Photovoltaic (PV) Systems - Characteristics of the Utility Interface, International Electrotechnical Commision.

IEEE Std. 1547. 2004. IEEE Recommended practice for interconnecting distributed resources with electric power systems, Institution of Electrical and Electronics

Engineers.

IEEE Std. 421.5-1992, 1992, IEEE Recommended Practice for Excitation System Models for Power System Stability Studies. Institution of Electrical and

Electronics Engineers.

Isa, I. S., Saad, Z., Omar, S., Osman, M. K., Ahmad, K. A. & Sakim, H. A. M. 2010. Suitable MLP Network Activation Functions for Breast Cancer and Thyroid Disease Detection. Second International Conference on Computational

Intelligence, Modelling and Simulation, hlm. 39-44.

Jia, J., Yang, S., Wang, Y. & Cham, Y. T. 2009. Matlab/Simulink based-study on PEM fuel cell and nonlinear control. IEEE International Conference, hlm. 1657-1662

167

Jin, K., Xinbo, R., Mengxiong, Y. & Min, X. 2008. Power management for hybrid fuel cell system. Power Electronics Specialists Conference, hlm.504-509. Jung, J. W. 2005. Modeling and control of fuel cell based distributed generation

systems, PhD thesis, The Ohio State University.

Jung, J. W. Project#2 space vector pwm inverter, February 2005. [Online] http://www2.ece.ohiostate.edu/ems/PowerConverterISpaceVectocPWM_Invert er.pdf [10 November 2013]

Jurado, F., Ortega, M. & Carpio, J. 2006. Power quality enhancement in fuel cells using genetic algorithms and ANFIS architecture. Industrial Electronics, IEEE

International Symposium, hlm. 757–762.

Kirubakaran, A., Jain, S. & Nema, R. K. 2009. A review on fuel cell technologies and power electronic interface. Renewable and Sustainable Energy Reviews, 13(9): 2430-2440.

Kristina, H. 2005. On direct hydrogen fuel cell vehicles-modelling and demonstration, PhD Thesis, KTH- Royal Institute of Technology.

Kwi-Seong, J., Won-Yong, L. & Chang-Soo, K. 2005. Energy management strategies of a fuel cell/battery hybrid system using fuzzy logics. Journal of Power

Sources 145(2): 319-326.

Lasseter, R. H., Akhil, A., Marnay, C., Stephens, J., Dagle, J., Guttromson, R., Meliopoulous, A., Yinger, R. & Eto, J. 2002. The CERTS microgrid concept, white paper for transmission reliability program, Office of Power Technologies

U.S. Department of Energy.

Lesaja, G. 2009. Introducing interior-point methods for introductory operations research courses and/or linear programming courses. The open operational

research journal 3(1): 1-12.

Li, Y. H., Rajakaruna, S. & Choi S. S. 2005. An analysis of the control and operation of a solid oxide fuel-cell power plant in an isolated system. IEEE Transactions

on Energy Conversion 20(2): 381-387.

Li, Y. H., Rajakaruna, S. & Choi S. S. 2007. Control of a solid oxide fuel cell power plant in a grid-connected system. IEEE Transactions on Energy Conversion 22(2): 405-413.

Liu, Y. H., Wu, Z. Q. & Brandon, N. P. 2011. Application of SOFCs to electric power system. Power and Energy Engineering Conference (APPEEC 2011), hlm. 1-4.

Louie, K. W., Wilson, P., Rivas, R. A., Wang, A. & Buchanan, P. 2006. Discussion on power system harmonic analysis in the frequency domain. IEEE/PES

168

Transmission & Distribution Conference and Exposition: Latin America (TDC '06), hlm.1-6.

Luning, X., Li, H. & Zuomin, D. 2010. Modeling and simulation of anode-supported planar intermediate temperature solid oxide fuel cell for integrated gasification fuel cell application. International Conference on Power System Technology

(POWERCON), hlm.1-7.

Mahmoud, A. M. A., Mashaly, H. M., Kandil, S. A., El-Khashab, H. & Nashed, M. N. F. 2000. Fuzzy logic implementation for photovoltaic maximum power tracking. Proceeding of the 26th Annual Conference of the IEEE International

Workshop on Robot and Human Interactive Communication, hlm. 735-740.

Manry, M. T., Guan, X., Apollo, S. J., Allen, L. S., Lyle, W. D. & Gong, W. 1992. Output weight optimization for the multi-layer perceptron. The Twenty-Sixth

Asilomar Conference on Signals, Systems and Computers, hlm.502-506.

Marcela-Rojas, M., Sumper, A., Gomis-Bellmunt, O., & Sudrià-Andreu, A. 2011. Reactive power dispatch in wind farms using particle swarm optimization technique and feasible solutions search. Applied Energy 88(12): 4678-4686.

Marquardt, D. W. 1963. An Algorithm for the Least-Squares Estimation of Nonlinear Parameters, SIAM Journal of Applied Mathematics 11(2): 431–441.

Masters, C. L. 2002. Voltage rise: the big issue when connecting embedded generation to long 11 kV overhead line. Power Engineering Journal 16(1): 5-12.

Mendis, N., Muttaqi, K. M., Sayeef, S. & Perera, S. 2010. Application of a hybrid energy storage in a remote area power supply system. IEEE International

Energy Conference and Exhibition, hlm. 576-581.

Nehrir, M. H. & Wang, C. 2009. Modeling and control of fuel cells-distributed

generation applications: John Wiley & Sons.

Nehrir, M. H., Wang, C. & Gao, H. 2006. Control of PEM fuel cell distributed generation systems. IEEE Transactions on Energy Conversion 21(2): 586- 595.

Nehrir, M. H., Wang, C. & Shaw, S. R. 2006. Fuel cells: promising devices for distributed generation. IEEE Power and Energy Magazine, 4(1): 47-53

Nikooyeh, K., Ayodeji, A. J. & Josephine, M. H., 3D modeling of anode-supported planar SOFC with internal reforming of methane. Journal of Power Sources 171(2):601-609.

O’Hayre, R., Suk-Won, C., Whitney, C. & Prinz, F. B. 2008. Fuel Cell Fundamental: John Wiley & Sons.

169

Padullés, J., Ault, G. W. & McDonald J. R. 2000. An integrated SOFC plant dynamic model for power systems simulation. Journal of Power Sources 86(1-2): 495-500.

Panov, Y. & Jovanoiv, M. M. 2002. Stability and dynamic performance of current-sharing control for paralleled voltage regulator modules. IEEE

Transactions on Power Electronics 17(1): 172-179.

Papadopoulos, P. N., Marinopoulos, A. G. & Papagiannis, G. K. 2009. Dynamic modelling of a grid-connected PEM fuel cell in a distributed generation network. 2009 IEEE Bucharest PowerTechnology, hlm.1-8.

Paska, J., Biczel, P. & Klos, M. 2009. Hybrid power systems – an effective way of utilising primary energy sources. Journal of Renewable Energy, 34(11): 2414– 2421.

Pathapati, P. R., Xue, X. & Tang, J. 2005. A new dynamic model for predicting transient phenomena in a PEM fuel cell system. Science Direct journal

Renewable energy 30(1): 1-22

Paulillo, G., Impinnisi, P. R., Cantao, M. P. & Garcia, F. R. (2004)Power quality in distributed generation system based on fuel cell technology - a case study.

Harmonics and Quality of Power, 2004. 11th International Conference,

hlm. 608,612.

Ponjavic, M. & Djuric, R. 2005. Current sharing for synchronized DC/DC operating in discontinuous condition mode. IEEE Proceedings on Electric Power

Applications, hlm. 119-127.

Pramuanjaroenkij, A. , Kakac, S. & Zhou, X. Y. 2008. Mathematical Analysis of Planar Solid Oxide Fuel Cells. International Journal of Hydrogen Energy 33 (10): 2547-2565.

Priddy, K. L. & Keller, P. E. 2007. Artificial neural networks – An introduction. India: Prentice Hall.

Rajashekara, K. 2004. Hybrid fuel cell strategies for clean power generation. Industry

Applications Conference, hlm. 682–689.

Rani, D. S. & Appaprao, A. 2011. A Space Vector PWM Scheme for Three level Inverters Based on Two-Level Space Vector PWM. International Journal Of

Power System Operation and Energy Management 1(1): 6 – 10.

Rau, N. S. & Wan, Y. 1994. Optimum location of resources in distributed planning.

Power Systems, IEEE Transactions on 9(4): 2014-2020.

Rumelhart, D.E., Hinton, G.E., & Williams, R.J. (1986). Learning internal representations by backpropagating errors. Nature 323(1): 533–536.

170

Salogni, A. & Colonna, P. 2010. Modeling of solid oxide fuel cells for dynamic simulations of integrated systems, Applied Thermal Engineering 30(5): 464-477.

Sedghisigarchi, K. & Feliachi, A. 2004. Dynamic and transient analysis of power distribution systems with fuel Cells-part I: fuel-cell dynamic model. IEEE

Transactions on Energy Conversion 19(2): 423-428.

Sedghisigarchi, K. & Feliachi, A. 2004. Dynamic and transient analysis of power distribution systems with fuel Cells-part II: control and stability enhancement.

IEEE Transactions on Energy Conversion 19(2): 429-434.

Seyezhai, R. & Mathur, B. L. 2011. Mathematical Modeling of Proton Exchange Membrane Fuel Cell, International Journal of Computer Applications 20(5): 1-6.

Shenouda, E. A. M. A. 2006. A Quantitative Comparison of Different MLP Activation Functions in Classification, Third International Symposium on Neural

Networks, hlm. 849-857.

Shepherd, C. M. 1965. Design of Primary and Secondary Cells - Part 2. An equation describing battery discharge. Journal of Electrochemical Society 112(1): 657-664.

Sidrach-de-Cardona, M. & Carretero, J. 2005. Analysis of the current total harmonic distortion for different single-phase inverters for grid-connected PV-systems.

Solar Energy Materials and Solar Cells 87(1-4): 529-540.

Tanrioven, M. & Alam, M. S. 2006. Modeling, control, and power quality evaluation of a pem fuel cell-based power supply system for residential use. IEEE

Transactions on Industry Applications, 42(6): 1582-1589.

Tesfahunegn, S. G., Vie, P. J. S. & Undeland, T. M. 2010. A combined steady state and dynamic model of a proton exchange membrane fuel cell for use in DG system simulation. Power Electronics Conference (IPEC 2010), hlm. 2457-2464.

Thinh, X. H.,Pawel, K., Alex, C. H. & Arild V. 2009. Numerical analysis of a planar anode-supported SOFC with composite electrodes. International Journal of

Hydrogen Energy 34 (8): 3488–3499.

Thottuvelil, V. J. & Verghese, G. E. 1998. Analysis and control design of paralleled DC/DC converters with current sharing. IEEE Transactions on Power

Electronics 13(4): 635-644.

Toma, S., Senjyu, T., Miyazato, Y. & Yona, A. 2008. Decentralized voltage control in distribution system using neural network. 2nd IEEE International Conference on Power and Energy, hlm. 1557-1562.

171

U.S. Department of Energy. Summary Maps. Retrieved from database of state incentives for renewables and efficiency. 2013. [Online] http://www.dsireusa.org/summarymaps/

index.cfm?ee=0&RE=0 [10 Febuary 2013]

Umar N. K. (2009) Distributed generation and power quality. Proc. 8th EEEIC International Conference on Environment and Electrical Engineering, hlm.

232-235.

Uzunoglu, M. & Alam, M. S. 2006. Dynamic modeling, design, and simulation of a combined PEM fuel cell/ultracapacitor hybrid system for stand-alone applications. IEEE Transactions on Energy Conversion 21(3): 767-775.

Viawan, F.A. 2008. Voltage Control and Voltage Stability of Power Distribution Systems in the Presence of Distributed Generation. PhD Thesis, Chalmers University of Technology.

Vielstich, W., Lamm, A. & Gasteiger, H. A. 2003. Handbook of fuel cells:

Fundamentals, Technology, Applications: John Wiley & Sons.

Wang, C. & Nehrir, M.H. 2007. A physically-based dynamic model for solid oxide fuel cells. IEEE Transactions on Energy Conversion 22(4): 887-897.

Wang, C., Nehrir, M. H. & Shaw, S. R. 2005. Dynamic models and model validation for PEM fuel cells using electrical circuits. IEEE Transactions on Energy

Conversion 20(2): 442-451.

Wanik, M. Z. C. 2011. Dynamic Simulation and Intelligent management of Distributed Generation. Ph.D thesis, Duisburg-Essen University.

Wingelaar, P. J . H., Duarte, J. L. & Hendrix, M. A. M. 2005. Dynamic Characteristics of PEM Fuel Cells. IEEE Power Electronics Specialists Conference, hlm.1635-1641.

Xiang, S. & Hhao, K. Y. 2007. Research on a Novel SVPWM Algorithm . IEEE

Conference on Industrial Electronics and Applications, hlm.1869-1870.

Xinhong, H., Zhihao, Z. & Jin, J. 2006. Fuel cell technology for distributed generation: an overview. Industrial Electronics, IEEE International

Symposium, hlm. 1613-1618.

Yalcinoz, T. & Alam, M. S. 2008. Improved dynamic performance of hybrid PEM fuel cells and ultracapacitors for portable applications. International Journal of

Hydrogen Energy 33(7): 1932-1940.

Yancheng, X. & Agbossou, K. 2009. Interface Design and Software Development for PEM Fuel Cell Modeling Based on Matlab/Simulink Environment. Software

172

Ying, J. Y., Xudong, W., Liang, M. L., ShuCai, Y. & HaiXing, Z. 2011. Application and Simulation of SVPWM in three phase inverter. International Forum on

Strategic Technology, hlm. 541-544.

Younis, M. A. A., Rahim, N. A. & Mekhilef, S. 2008. Dynamic and control of fuel cell system. Industrial electronics and applications, ICIEA 2008, pp. 2063-2067.

Yu, H. & Wilamowski, B. M. 2011. Levenberg-Marquardt Training. CRC Press; Boca Raton.

Zambri, N. A., Mohamed, A., Shareef, H. & Wanik, M. Z. C. 2013. Design of a Hybrid Fuel Cell with Battery Energy Storage for Stand-Alone Distributed Generation Applications, World Academy of Science, Engineering and

Technology, International Science 78(1): 1588 – 1594.

Zambri, N. A., Mohamed, A., Shareef, H. 2011. Performance comparison of dynamic models of proton exchange membrane and planar solid oxide fuel cells subjected to load change. IREMOS 4(6): 3402-3409.

Zhang, W. F. & Yu, Y. H. 2007. Comparison of Three SVPWM Schemes. Journal of

Electronic Science and Technology of China 5(3):283-287.

Zhang, Z., Jiang, J., Huang, X. & Wu, B. 2006. Dynamic characteristics of a micro-grid involving a PEM fuel cell power module. IEEE International Symposium

on Industrial Electronics (ISIE06), hlm. 2030-2034.

Zheglov, V., Wenzhong, G., Muljadi, E. & Wang, G. 2009. A new control strategy for stand-alone fuel cell-battery hybrid power supply system. Power & Energy

Society General Meeting, hlm. 1-6.

Zhou, T., Lu, D., Fakham, H. & François, B. 2008. Power flow control in different time scales for a wind/hydrogen/supercapacitors based active hybrid power system. Proc. 13th International Power Electronics and Motion Control

Conference, hlm. 2205-2210

Zhu, Y. & Tomsovic, K. 2001. Development of models for analyzing the load-following performance of micro-turbines and fuel cells. Electric Power

Systems Research 62(1): 1-11.

Zogg, R., Sriramulu, S., Carlson, E., Roth, K. & Brodrick, J. 2006. Emerging technologies: using solid-oxide fuel cells for distributed generation. ASHRAE

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