Environmental Engineering Reference
In-Depth Information
51.
P.D. Mitcheson, T.C. Green, E.M. Yeatman, and A.S. Holmes, “Architectures for
vibration-driven micropower generators,” Journal of Microelectromechanical Sys-
tems , vol. 13, no. 3, pp. 429-440, 2004.
52.
J.A. Paradiso and Mark Feldmeier, A Compact, Wireless, Self-Powered Pushbutton
Controller , MIT Media Laboratory, Cambridge, MA, 2002.
53.
E. Braunwald, Heart Disease: A Textbook of Cardiovascular Medicine , Saunders,
Philadelphia, 1980.
54.
M. Ramsay and W. Clark, “Piezoelectric energy harvesting for bio-MEMs appli-
cations,” Proceedings of the SPIE—The International Society for Optical Engineering ,
vol. 4332, pp. 429-439, 2001.
55.
Z. Chen, J.M. Guerrero, and F. Blaabjerg, “A review of the state of the art of power
electronics for wind turbines,” IEEE Transactions on Power Electronics , vol. 24, no.
8, pp. 1859-1875, 2009.
56.
S. Heier (author) and R. Waddington (translator), Grid Integration of Wind Energy
Conversion Systems , 2nd ed., Wiley, Chichester, England, 2006.
57.
Renewable Resource Data Center (RReDC), National Renewable Energy Labo-
ratory, http://www.nrel.gov/rredc/ , accessed on June 14, 2010.
58.
C.T. Chen, R.A. Islam, and S. Priya, “Electric energy generator,” IEEE Transactions
on Ultrasonics, Ferroelectrics and Frequency Control , vol. 53, no. 3, pp. 656-661,
2006.
59.
A.S. Holmes, G. Hong, K.R. Pullen, and K.R. Buffard, “Axial-flow microturbine
with electromagnetic generator: Design, CFD simulation, and prototype demon-
stration,” 17th IEEE International Conference on Micro Electro Mechanical Systems ,
pp. 568-571, 2004.
60.
M.A. Weimer, T.S. Paing, and R.A. Zane, “Remote area wind energy harvest-
ing for low-power autonomous sensors,” 37th IEEE Power Electronics Specialists
Conference , pp. 2911-2915, 2006.
61.
S. Priya, C.T. Chen, D. Fye, and J. Zahnd, “Piezoelectric windmill: A novel solu-
tion to remote sensing,” Japanese Journal of Applied Physics , vol. 44, no. 3, pp. L104-
L107, 2005.
62.
R. Myers, M. Vickers, K. Hyeoungwoo, and S. Priya, “Small-scale windmill,”
Applied Physics Letters , vol. 90, no. 5, p. 54106-1-3, 2007.
63.
D. Maurath, C. Peters, T. Hehn, M. Ortmanns, and Y. Manoli, “Highly efficient
integrated rectifier and voltage boosting circuits for energy harvesting applica-
tions,” Advanced Radio Science , vol. 6, pp. 219-225, 2008.
64.
Y.H. Lam, W.H. Ki, and C.Y. Tsui, “Integrated low-loss CMOS active rectifier for
wirelessly powered devices,” IEEE Transactions on Circuits and Systems II: Express
Briefs , vol. 53, no. 12, pp. 1378-1382, 2006.
65.
M.D. Seeman, S.R. Sanders, and J.M. Rabaey, “An ultra-low-power power man-
agement IC for energy-scavenged wireless sensor nodes,” IEEE Power Electronics
Specialists Conference (PESC 2008) , pp. 925-931, 2008.
66.
E. Koutroulis and K. Kalaitzakis, “Design of a maximum power tracking sys-
tem for wind-energy-conversion applications,” IEEE Transactions on Industrial
Electronics , vol. 53, no. 2, pp. 486-494, 2006.
67.
Z. Chen, and E. Spooner, “Grid interface options for variable-speed, permanent-
magnet generators,” IEEE Proceedings—Electronic Power Applications , vol. 145, no.
4, pp. 273-283, 1998.
68.
Q. Wang and L. Chang, “An intelligent maximum power extraction algorithm
for inverter-based variable speed wind turbine systems,” IEEE Transactions on
Power Electronics , vol. 19, no. 5, pp. 1242-1249, 2004.
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