kuehn2015early
Early warning signs for saddle-escape transitions in complex networks
Christian Kuehn, Gerd Zschaler and Thilo Gross
Sci Rep 5, 13190, 2015
Many real world systems are at risk of undergoing critical transitions, leading to sudden qualitative and sometimes irreversible regime shifts. The development of early warning signals is recognized as a major challenge. Recent progress builds on a mathematical framework in which a real-world system is described by a low-dimensional equation system with a small number of key variables, where the critical transition often corresponds to a bifurcation. Here we show that in high-dimensional systems, containing many variables, we frequently encounter an additional non-bifurcative saddle-type mechanism leading to critical transitions. This generic class of transitions has been missed in the search for early-warnings up to now. In fact, the saddle-type mechanism also applies to low-dimensional systems with saddle-dynamics. Near a saddle a system moves slowly and the state may be perceived as stable over substantial time periods. We develop an early warning sign for the saddle-type transition. We illustrate our results in two network models and epidemiological data. This work thus establishes a connection from critical transitions to networks and an early warning sign for a new type of critical transition. In complex models and big data we anticipate that saddle-transitions will be encountered frequently in the future.
Critical transitions such as outbreaks of epidemics and bioinvasions are typically not caused by the destabilization of a formerly stable state, but rather by the arrival of a rare perturbation at an already unstable state. Here we construct an early warning signal for this type of transition.
Figure 1: Critical transitions such as outbreaks of epidemics and bioinvasions are typically not caused by the destabilization of a formerly stable state, but rather by the arrival of a rare perturbation at an already unstable state. Here we construct an early warning signal for this type of transition.