275
Coupling with Batteries and Fuel Cells
3. Dougal, R. A., S. Liu, and R. White. 2002. Power and life extension of battery–
ultracapacitor hybrids. IEEE Transactions on Power Electronics, 25, 120–131.
4. Gao, L., R. A. Dougal, et al. 2005. Power enhancement of an actively controlled battery–ultracapacitor hybrid. IEEE Transactions on Power Electronics, 20,
236–243.
5. Turpin, C. and S. Astier. 2007. Direct connection between a fuel cell and ultracapacitors. IEEE Transactions on Power Electronics, 33, 474–479.
6. Uzunoglu, M. and M. S. Alam. 2006. Dynamic modeling, design, and simulation
of a combined PEM fuel cell and ultracapacitor system. IEEE Transactions on
Energy Conversion, 21, 767–775.
7. Tatarchuk, B. J. 2003. Modeling double-layer ladder circuits. IEEE Transactions
on Power Electronics, 39, 430–438.
8. Kötz, R. 2000. Principles and applications of electrochemical capacitors,
Electrochimica Acta, 45, 2483–2498.
9. Kim, S. H., W. Choi, K. B. Lee et al. 2011. Advanced dynamic simulation of
supercapacitors considering parameter variation and self-discharge. IEEE
Transactions on Power Electronics, 26, 3377–3385.
10. Karden, E., S. Buller, and R. W. De Doncker. 2002. A frequency domain approach
to dynamical modeling of electrochemical power sources. Electrochimica Acta,
47, 2347–2356.
11. Buller, S., E. Karden et al. 2002. Modeling the dynamic behavior of supercapacitors using impedance spectroscopy. IEEE Transactions on Power Electronics, 38,
1622–1626.
12. Uzunoglu, M. and M. S. Alam. 2008. Modeling and analysis of an FC/UC
hybrid vehicular power system using a novel-wavelet-based load sharing
algorithm. IEEE Transactions on Energy Conversions, 23, 263–272.
13. Rafik, F., H. Gualous, R. Gallay et al. 2007. Frequency, thermal and voltage
supercapacitor characterization and modeling. Journal of Power Sources, 165,
928–934.
14. Fontes, G., C. Turpin, S. Astier et al. 2007. Interactions between fuel cells and
power converters: Influence of current harmonics on a fuel cell stack. IEEE
Transactions on Power Electronics, 22, 670–678.
15. Uzunoglu, M. and M. S. Alam. 2007. Dynamic modeling, design and simulation of a PEM fuel cell–ultracapacitor hybrid system for vehicular applications.
Energy Conversion and Management, 48, 1544–1553.
16. Bauman, J. and M. Kazerani. 2009. Analytical optimization method for
improved fuel cell–battery–ultracapacitor power train. IEEE Transactions on
Power Electronics, 58, 3186–3197.
17. Bauman, J. and M. Kazerani. 2008. Improved power train topology for fuel
cell–battery–ultracapacitor vehicles. IEEE Transactions on Power Electronics, 1,
1483–1488.
18. Zhai, N. S., Y. Y. Yao, D. L. Zhang et al. 2006. Design and optimization for a
supercapacitor. IEEE Transactions on Power Electronics, 00, 6–9.
19. Chen, H., T. N. Cong, W. Yang et al. 2009. Progress in electrical energy storage
system: a critical review. Progress in Natural Science, 19, 291–312.
Coupling with Batteries and Fuel Cells
3. Dougal, R. A., S. Liu, and R. White. 2002. Power and life extension of battery–
ultracapacitor hybrids. IEEE Transactions on Power Electronics, 25, 120–131.
4. Gao, L., R. A. Dougal, et al. 2005. Power enhancement of an actively controlled battery–ultracapacitor hybrid. IEEE Transactions on Power Electronics, 20,
236–243.
5. Turpin, C. and S. Astier. 2007. Direct connection between a fuel cell and ultracapacitors. IEEE Transactions on Power Electronics, 33, 474–479.
6. Uzunoglu, M. and M. S. Alam. 2006. Dynamic modeling, design, and simulation
of a combined PEM fuel cell and ultracapacitor system. IEEE Transactions on
Energy Conversion, 21, 767–775.
7. Tatarchuk, B. J. 2003. Modeling double-layer ladder circuits. IEEE Transactions
on Power Electronics, 39, 430–438.
8. Kötz, R. 2000. Principles and applications of electrochemical capacitors,
Electrochimica Acta, 45, 2483–2498.
9. Kim, S. H., W. Choi, K. B. Lee et al. 2011. Advanced dynamic simulation of
supercapacitors considering parameter variation and self-discharge. IEEE
Transactions on Power Electronics, 26, 3377–3385.
10. Karden, E., S. Buller, and R. W. De Doncker. 2002. A frequency domain approach
to dynamical modeling of electrochemical power sources. Electrochimica Acta,
47, 2347–2356.
11. Buller, S., E. Karden et al. 2002. Modeling the dynamic behavior of supercapacitors using impedance spectroscopy. IEEE Transactions on Power Electronics, 38,
1622–1626.
12. Uzunoglu, M. and M. S. Alam. 2008. Modeling and analysis of an FC/UC
hybrid vehicular power system using a novel-wavelet-based load sharing
algorithm. IEEE Transactions on Energy Conversions, 23, 263–272.
13. Rafik, F., H. Gualous, R. Gallay et al. 2007. Frequency, thermal and voltage
supercapacitor characterization and modeling. Journal of Power Sources, 165,
928–934.
14. Fontes, G., C. Turpin, S. Astier et al. 2007. Interactions between fuel cells and
power converters: Influence of current harmonics on a fuel cell stack. IEEE
Transactions on Power Electronics, 22, 670–678.
15. Uzunoglu, M. and M. S. Alam. 2007. Dynamic modeling, design and simulation of a PEM fuel cell–ultracapacitor hybrid system for vehicular applications.
Energy Conversion and Management, 48, 1544–1553.
16. Bauman, J. and M. Kazerani. 2009. Analytical optimization method for
improved fuel cell–battery–ultracapacitor power train. IEEE Transactions on
Power Electronics, 58, 3186–3197.
17. Bauman, J. and M. Kazerani. 2008. Improved power train topology for fuel
cell–battery–ultracapacitor vehicles. IEEE Transactions on Power Electronics, 1,
1483–1488.
18. Zhai, N. S., Y. Y. Yao, D. L. Zhang et al. 2006. Design and optimization for a
supercapacitor. IEEE Transactions on Power Electronics, 00, 6–9.
19. Chen, H., T. N. Cong, W. Yang et al. 2009. Progress in electrical energy storage
system: a critical review. Progress in Natural Science, 19, 291–312.
