Probabilistic distribution and stochastic P-bifurcation of a hybrid energy harvester under colored noise

被引:36
作者
Fokou, I. S. Mokem [1 ,2 ]
Buckjohn, C. Nono Dueyou [1 ]
Siewe, M. Siewe [1 ]
Tchawoua, C. [1 ]
机构
[1] Univ Yaounde I, Lab Mech Mat & Struct, Dept Phys, Fac Sci, POB 812, Yaounde, Cameroon
[2] African Ctr Excellence Informat & Commun Technol, Yaounde, Cameroon
来源
COMMUNICATIONS IN NONLINEAR SCIENCE AND NUMERICAL SIMULATION | 2018年 / 56卷
关键词
Stochastic P-bifurcation; Mean residence time; Stochastic resonance; GENERATOR; RESONANCE; SYSTEMS; BEAM;
D O I
10.1016/j.cnsns.2017.08.006
中图分类号
O29 [应用数学];
学科分类号
070104 ;
摘要
In this manuscript, a hybrid energy harvesting system combining piezoelectric and electromagnetic transduction and subjected to colored noise is investigated. By using the stochastic averaging method, the stationary probability density functions of amplitudes are obtained and reveal interesting dynamics related to the long term behavior of the device. From stationary probability densities, we discuss the stochastic bifurcation through the qualitative change which shows that noise intensity, correlation time and other system parameters can be treated as bifurcation parameters. Numerical simulations are made for a comparison with analytical findings. The Mean first passage time (MFPT) is numerical provided in the purpose to investigate the system stability. By computing the Mean residence time (TMR), we explore the stochastic resonance phenomenon; we show how it is related to the correlation time of colored noise and high output power. (C) 2017 Elsevier B.V. All rights reserved.
引用
收藏
页码:177 / 197
页数:21
相关论文
共 64 条
[1]  
[Anonymous], STOCHASTIC DYNAMICS
[2]  
[Anonymous], 1998, MULTIPLICATIVE ERGOD, DOI DOI 10.1007/978-3-662-12878-7_4
[3]  
Arrhenius S., 1889, Z. Phys. Chem, V4U, P226, DOI [10.1515/zpch-1889-0416.S2CID100032801, DOI 10.1515/ZPCH-1889-0416, 10.1515/zpch-1889-0416]
[4]  
Arrhenius S., 1889, Z. Phys. Chem., V4U, P96, DOI [DOI 10.1515/ZPCH-1889-0408, 10.1515/zpch-1889-0408]
[5]   A Preliminary Study on Piezo-aeroelastic Energy Harvesting Using a Nonlinear Trailing-Edge Flap [J].
Bae, Jae-Sung ;
Inman, Daniel J. .
INTERNATIONAL JOURNAL OF AERONAUTICAL AND SPACE SCIENCES, 2015, 16 (03) :407-417
[6]   A micro electromagnetic generator for vibration energy harvesting [J].
Beeby, S. P. ;
Torah, R. N. ;
Tudor, M. J. ;
Glynne-Jones, P. ;
O'Donnell, T. ;
Saha, C. R. ;
Roy, S. .
JOURNAL OF MICROMECHANICS AND MICROENGINEERING, 2007, 17 (07) :1257-1265
[7]   Energy harvesting vibration sources for microsystems applications [J].
Beeby, S. P. ;
Tudor, M. J. ;
White, N. M. .
MEASUREMENT SCIENCE AND TECHNOLOGY, 2006, 17 (12) :R175-R195
[8]   ENERGY HARVESTING IN PIEZOELASTIC SYSTEMS DRIVEN BY RANDOM EXCITATIONS [J].
Borowiec, M. ;
Litak, G. ;
Friswell, M. I. ;
Ali, S. F. ;
Adhikari, S. ;
Lees, A. W. ;
Bilgen, O. .
INTERNATIONAL JOURNAL OF STRUCTURAL STABILITY AND DYNAMICS, 2013, 13 (07)
[9]   Noise Effected Energy Harvesting in a Beam with Stopper [J].
Borowiec, Marek ;
Litak, Grzegorz ;
Lenci, Stefano .
INTERNATIONAL JOURNAL OF STRUCTURAL STABILITY AND DYNAMICS, 2014, 14 (08)
[10]   Investigating bifurcations and chaos in magnetopiezoelastic vibrating energy harvesters using Melnikov theory [J].
Buckjohn, C. Nono Dueyou ;
Siewe, M. Siewe ;
Fokou, I. S. Mokem ;
Tchawoua, C. ;
Kofane, T. C. .
PHYSICA SCRIPTA, 2013, 88 (01)