TY - JOUR
T1 - The occurrence mechanisms of extreme events in a class of nonlinear Duffing-type systems under random excitations
AU - Zhao, Dan
AU - Li, Yongge
AU - Liu, Qi
AU - Zhang, Huikang
AU - Xu, Yong
N1 - Publisher Copyright:
© 2023 Author(s).
PY - 2023/8/1
Y1 - 2023/8/1
N2 - The occurrence mechanisms of extreme events under random disturbances are relatively complex and not yet clear. In this paper, we take a class of generalized Duffing-type systems as an example to reveal three mechanisms for the occurrence of extreme events. First, it is intuitive that a very large excitation can generate extreme events, such as the Lévy noise. In such a case, extreme excitation works, while it does not require much about the systems. Second, when a system has a bifurcation structure, if the difference of the branches at the bifurcation point is large, a randomly varying bifurcation parameter can lead to extreme events. Finally, when a system has rare attractors, a random impulse excitation, such as Poisson white noise, is able to cause the system to escape from one general attractor into rare attractors. Such a kind of special regime switching behavior can lead to extreme events. These results reveal the possible mechanisms of extreme events in a class of nonlinear Duffing-type systems and provide guidance for further prediction and avoidance of extreme events.
AB - The occurrence mechanisms of extreme events under random disturbances are relatively complex and not yet clear. In this paper, we take a class of generalized Duffing-type systems as an example to reveal three mechanisms for the occurrence of extreme events. First, it is intuitive that a very large excitation can generate extreme events, such as the Lévy noise. In such a case, extreme excitation works, while it does not require much about the systems. Second, when a system has a bifurcation structure, if the difference of the branches at the bifurcation point is large, a randomly varying bifurcation parameter can lead to extreme events. Finally, when a system has rare attractors, a random impulse excitation, such as Poisson white noise, is able to cause the system to escape from one general attractor into rare attractors. Such a kind of special regime switching behavior can lead to extreme events. These results reveal the possible mechanisms of extreme events in a class of nonlinear Duffing-type systems and provide guidance for further prediction and avoidance of extreme events.
UR - http://www.scopus.com/inward/record.url?scp=85166595748&partnerID=8YFLogxK
U2 - 10.1063/5.0156492
DO - 10.1063/5.0156492
M3 - 文章
C2 - 37539590
AN - SCOPUS:85166595748
SN - 1054-1500
VL - 33
JO - Chaos
JF - Chaos
IS - 8
M1 - 083109
ER -