TY - JOUR
T1 - Stochastic Response of a Vibro-Impact System via a New Impact-to-Impact Mapping
AU - Wang, Liang
AU - Wang, Bochen
AU - Peng, Jiahui
AU - Yue, Xiaole
AU - Xu, Wei
N1 - Publisher Copyright:
© 2021 World Scientific Publishing Company.
PY - 2021/6/30
Y1 - 2021/6/30
N2 - In this paper, a new impact-to-impact mapping is constructed to investigate the stochastic response of a nonautonomous vibro-impact system. The significant feature lies in the choice of Poincaré section, which consists of impact surface and codimensional time. Firstly, we construct a new impact-to-impact mapping to calculate the one-step transition probability matrix from a given impact to the next. Then, according to the matrix, we can investigate the stochastic responses of a nonautonomous vibro-impact system at the impact instants. The new impact-to-impact mapping is smooth and it effectively overcomes the nondifferentiability caused by the impact. A linear and a nonlinear nonautonomous vibro-impact systems are analyzed to verify the effectiveness of the strategy. The stochastic P-bifurcations induced by the noise intensity and system parameters are studied at the impact instants. Compared with Monte Carlo simulations, the new impact-to-impact strategy is accurate for nonautonomous vibro-impact systems with arbitrary restitution coefficients.
AB - In this paper, a new impact-to-impact mapping is constructed to investigate the stochastic response of a nonautonomous vibro-impact system. The significant feature lies in the choice of Poincaré section, which consists of impact surface and codimensional time. Firstly, we construct a new impact-to-impact mapping to calculate the one-step transition probability matrix from a given impact to the next. Then, according to the matrix, we can investigate the stochastic responses of a nonautonomous vibro-impact system at the impact instants. The new impact-to-impact mapping is smooth and it effectively overcomes the nondifferentiability caused by the impact. A linear and a nonlinear nonautonomous vibro-impact systems are analyzed to verify the effectiveness of the strategy. The stochastic P-bifurcations induced by the noise intensity and system parameters are studied at the impact instants. Compared with Monte Carlo simulations, the new impact-to-impact strategy is accurate for nonautonomous vibro-impact systems with arbitrary restitution coefficients.
KW - impact-to-impact mapping
KW - stochastic P-bifurcation
KW - stochastic response
KW - Vibro-impact system
UR - http://www.scopus.com/inward/record.url?scp=85109068602&partnerID=8YFLogxK
U2 - 10.1142/S021812742150139X
DO - 10.1142/S021812742150139X
M3 - 文章
AN - SCOPUS:85109068602
SN - 0218-1274
VL - 31
JO - International Journal of Bifurcation and Chaos
JF - International Journal of Bifurcation and Chaos
IS - 8
M1 - 2150139
ER -