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References

1 
Energy B., Renewable energy sources, Ergon Energy, pp. 1-10, 2015.URL
2 
Lei Zuo, Brian Scully, Jurgen Shestani, Yu Zhou, “Design and characterization of an electromagnetic energy harvester for vehicle suspensions,” Smart Materials and Structures. vol. 19, no. 4, pp. 045003, 2010.URL
3 
Özge Zorlu, Emre Tan Topal, Haluk Kulah, “A vibration-based electromagnetic energy harvester using mechanical frequency up-conversion method,” IEEE Sensors Journal, vol. 11, no. 2, pp. 481-488, 2010.DOI
4 
Pan, C. T., Hwang, Y. M., Lin, L., Chen, Y. C., Design, and Fabrication of Self-Powered Micro-Harvesters: Rotating and Vibrated Micro-Power Systems. John Wiley & Sons, pp. 16-36, 2014.URL
5 
Erturk, A., Inman, D. J., Piezoelectric energy harvesting. John Wiley & Sons, pp. 6-23, 2011.URL
6 
Chen W, He Z, Zhao J, Mo J, Ouyang H, “Hybrid triboelectric-piezoelectric energy harvesting via a bistable swing-impact structure with a tuneable potential barrier and frequency-up conversion effects,” Applied Energy, vol. 375, pp. 124123, 2024.DOI
7 
Beeby, S., White, N., Energy harvesting for autonomous systems, Artech House, pp. 45-90, 2010.URL
8 
Tan, Y. K., Energy harvesting autonomous sensor systems: design, analysis, and practical implementation, CRC Press, pp. 89-136, 2013.URL
9 
A. Bibo, R. Masana, A. King, G. Li, and M. F. Daqaq, “Electromagnetic ferrofluid-based energy harvester,” Phys. Lett. A, vol. 376, pp. 2163–2166, 2012.DOI
10 
Liu Q, Alazemi SF, Daqaq MF, Li G., “A ferrofluid based energy harvester: Computational modeling, analysis, and experimental validation,” Journal of Magnetism and Magnetic Materials 449, pp. 105-118, 2018.DOI
11 
Bibo A, Masana R, King A, Li G, Daqaq MF., “ Electromagnetic ferrofluid-based energy harvester,” Physics Letters A, vol. 376, no. 32, pp. 2163-2166, 2012.DOI
12 
Kulandaivel A, Potu S, Babu A, Madathil N, Velpula M, Rajaboina RK, Khanapuram UK., “Advances in ferrofluid-based triboelectric nanogenerators: Design, performance, and prospects for energy harvesting applications,” Nano Energy, vol. 120, pp. 109110, 2023.DOI
13 
S. Elborai, Ferrofluid surface, and volume flows in uniform rotating magnetic fields, Ph. D. thesis, Massachusetts Institute of Technology, Cambridge, MA, 2006.URL
14 
X. He, Ferrohydrodynamic flows in uniform, and nonuniform rotating magnetic fields, Ph. D. thesis, Massachusetts Institute of Technology, Cambridge, MA, 2006.URL