Browse > Article
http://dx.doi.org/10.5139/IJASS.2016.17.4.631

Comparison Study on Power Output Characteristics of Power Management Methods for a Hybrid-electric UAV with Solar Cell/Fuel Cell/Battery  

Lee, Bohwa (Korea Aerospace Research Institute)
Kwon, Sejin (Korea Advanced Institute of Science and Technology)
Publication Information
International Journal of Aeronautical and Space Sciences / v.17, no.4, 2016 , pp. 631-640 More about this Journal
Abstract
A dual-mode power management for a hybrid-electric UAV with a cruise power of 200W is proposed and empirically verified. The subject vehicle is a low-speed long-endurance UAV powered by a solar cell, a fuel cell, and a battery pack, which operate in the same voltage bounds. These power sources of different operational characteristics can be managed in two different methods: passive management and active management. This study proposes a new power management system named PMS2, which employs a bypass circuit to control the individual power sources. The PMS2 normally operates in active mode, and the bypass circuit converts the system into passive mode when necessary. The output characteristics of the hybrid system with the PMS2 are investigated under simulated failures in the power sources and the conversion of the power management methods. The investigation also provides quantitative comparisons of efficiencies of the system under the two distinct power management modes. In the case of the solar cell, the efficiency difference between the active and the passive management is shown to be 0.34% when the SOC of the battery is between 25-65%. However, if the SOC is out of this given range, i.e. when the SOC is at 90%, using active management displays an improved efficiency of 6.9%. In the case of the fuel cell, the efficiency of 55% is shown for both active and passive managements, indicating negligible differences.
Keywords
Dual-mode power management system; Solar cell; Fuel cell; Battery; UAV; SOC;
Citations & Related Records
Times Cited By KSCI : 2  (Citation Analysis)
연도 인용수 순위
1 Nadal, M. and Barbir, F., "Development of a Hybrid Fuel Cell/Battery Powered Electric Vehicle", International Journal of Hydrogen Energy, Vol. 21, 1996, pp. 497-505.   DOI
2 Brandt, S. A. and Gilliam, F. T., "Design Analysis Methodology for Solar-Powered Aircraft", Journal of Aircraft, Vol. 32, No. 4, 1995, pp. 703-709.   DOI
3 Herwitz, S. R., Johnson, L. F., Dunagan, S. E., Higgins, R. G., Sullivan, D. V., Zheng, J., Lobitz, B. M., Leung, J. G., Gallmeyer, B. A., Aoyagi, M., Slye, R. E. and Brass, J. A., "Imaging from an Unmanned Aerial Vehicle: Agricultural Surveillance and Decision Support", Computer and Electronics in Agriculture, Vol. 44, No. 1, 2004, pp. 49-61.   DOI
4 Bradley, T. H., Moffitt, B. A., Mavris, D. N. and Parekh, D. E., "Development and Experimental Characterization of a Fuel Cell Powered Aircraft", Journal of Power Sources, Vol. 171, No. 2, 2007, pp. 793-801.   DOI
5 Bradley, T. H., Moffitt, B. A., Fuller, T. F., Mavris, D. N. and Parekh, D. E., "Comparison of Design Methods for Fuel-Cell-Powered Unmanned Aerial Vehicles", Journal of Aircraft, Vol. 46, No. 6, 2009, pp. 1945-1956.   DOI
6 Obaid, R. A., "Development of Solar Powered Aircraft for Multipurpose Application", 51st AIAA/ASME/ASCE/AHS/ASC Structures, Structural Dynamics, and Materials Conference, Orlando, Florida, 2010.
7 Herlik, E., UAVs for Commercial Applications Global Market & Technologies Outlook 2011-2016, Market Info Group, 2010.
8 Jones, P. B., Lakeman, J. B., Mepsted, G. O. and Moore, J. M., "A Hybrid Power Source for Pulse Power Applications", Journal of Power Sources, Vol. 80, 1999, pp. 242-247.   DOI
9 Zheng, J. P., Jow, T. R. and Ding, M. S., "Hybrid Power Sources for Pulsed Current Applications", IEEE Transactions on Aerospace and Electronic Systems, Vol. 37, No. 1, 2001, pp. 288-292.   DOI
10 Gao, L., Jiang, Z. and Dougal, R. A., "Evaluation of Active Hybrid Fuel Cell/Battery Power Sources", IEEE Transactions on Aerospace and Electronic Systems, Vol. 41, No. 1, 2005, pp. 346-355.   DOI
11 Jiang, Z., Gao, L., Blackwelder, M. J. and Dougal, R.A., "Design and Experimental Tests of Control Strategies for Active Hybrid Fuel Cell/Battery Power Sources", Journal of Power Sources, Vol. 130, 2004, pp. 163-171.   DOI
12 Jiang, Z., Gao, L. and Dougal, R. A., "Adaptive Control Strategy for Active Power Sharing in Hybrid Fuel Cell/Battery Power Sources", IEEE Transactions on Energy Conversion, Vol. 22, 2007, pp. 507-515.   DOI
13 Becherif, M., Ayad, M. Y. and Wack, M., "Control Study on Fuel Cell, Battery and Solar Hybridization Power Sources", Industry Applications Society Annual Meeting, 2010.
14 Chen, H. and Khaligh, A., "Hybrid Energy Storage System for Unmanned Aerial Vehicle", IECON 2010 - 36th Annual Conference on IEEE Industrial Electronics Society, 2010.
15 Verstraete, D., Lehmkuehler, K., Gong, A., Harvey, J. R., Brian, G. and Palmer, J. L., "Characterisation of a Hybrid, Fuel-cell-based Propulsion System for Small Unmanned Aircraft", Journal of Power Sources, Vol. 250, 2014, pp. 204-211.   DOI
16 Lee, B., Park, P., Kim, K. and Kwon, S., "The Flight Test and Power Simulations of an UAV Powered by Solar Cells, a Fuel Cell and Batteries," Journal of Mechanical Science and Technology, Vol. 28, No. 1, 2014, pp. 399-405.   DOI
17 Lee, B., Kwon, S., Park, P. and Kim, K., "Active Power Management System for an Unmanned Aerial Vehicle Powered by Solar Cells, a Fuel Cell, and Batteries", IEEE Transactions on Aerospace and Electronic Systems, Vol. 50, No. 4, 2014, pp. 3169-3179.
18 Femia, N., Petrone, G., Spagnuolo, G. and Vitelli, M., "Optimization of Perturb and Observe Maximum Power Point Tracking Method", IEEE Transactions on Power Electronics, Vol. 20, 2005, pp. 963-973.   DOI
19 Dries, V., Andrew, G., Dylan, D. C. and Jennifer, L. P., "Experimental Investigation of the Role of the Battery in the AeroStack Hybrid, Fuel-cell-based Propulsion System for Small Unmanned Aircraft Systems", International Journal of Hydrogen Energy, Vol. 40, 2015, pp. 1598-1606.   DOI
20 Dries, V., James, R. H. and Jennifer, L. P., "Hardwarein-the-loop Simulation of Fuel-cell-based Hybrid-electrical UAV Propulsion", ICAS 2012 28th International Congress of the Aeronautical Sciences, 2012.
21 Lee, B., Park, P., Kim, C., Yang, S. and Ahn, S., "Power Managements of a Hybrid Electric Propulsion System for UAVs", Journal of Mechanical Science and Technology, Vol. 26, 2012, pp. 2291-2299.   DOI
22 Sehra, A. K. and Woodrow, W. J., "Propulsion and Power for 21st Century Aviation", Progress in Aerospace Science, Vol. 40, No. 4, 2004, pp. 199-235.   DOI