paper-with-me

홈 › Papers

Balls, cups, and quasi-potentials: quantifying stability in stochastic systems

2015-10-23

When a system has more than one stable state, how can the stability of these states be compared? This deceptively simple question has important consequences for ecosystems, because systems with alternative stable states can undergo dramatic regime shifts. The probability, frequency, duration, and dynamics of these shifts will all depend on the relative stability of the stable states. Unfortunately, the concept of stability in ecology has suffered from substantial confusion and this is particularly problematic for systems where stochastic perturbations can cause shifts between coexisting alternative stable states. A useful way to visualize stable states in stochastic systems is with a ball-in-cup diagram, in which the state of the system is represented as the position of a ball rolling on a surface, and the random perturbations can push the ball from one basin of attraction to another. The surface is determined by a potential function, which provides a natural stability metric. However, systems amenable to this representation, called gradient systems, are quite rare. As a result, the potential function is not widely used and other approaches based on linear stability analysis have become standard. Linear stability analysis is designed for local analysis of deterministic systems and, as we show, can produce a highly misleading picture of how the system will behave under continual, stochastic perturbations. In this paper, we show how the potential function can be generalized so that it can be applied broadly, employing a concept from stochastic analysis called the quasi-potential. Using three classic ecological models, we demonstrate that the quasi-potential provides a useful way to quantify stability in stochastic systems.

📄 PDF Abstract BibTeX arXiv:1508.02088

Code (1)

bmarkslash7/QPot 공식 구현

Similar Papers 제목 키워드 기반

Quasiperiodic functions theory and the superlattice potentials for a two-dimensional electron gas

2003-02-02 · Andrei Ya. Maltsev

We consider Novikov problem of the classification of level curves of quasiperiodic functions on the plane and its connection with the conductivity of two-dimensional electron gas in the presence of both orthogonal magnet…

QPot: An R Package for Stochastic Differential Equation Quasi-Potential Analysis

2015-10-27

QPot is an R package for analyzing two-dimensional systems of stochastic differential equations. It provides users with a wide range of tools to simulate, analyze, and visualize the dynamics of these systems. One of QPot…

The impact of high frequency-based stability on the onset of action potentials in neuron models

2024-02-08 · Eduardo Cerpa, Nathaly Corrales, Matías Courdurier, Leonel E. Medina 외

This paper studies the phenomenon of conduction block in model neurons using high-frequency biphasic stimulation (HFBS). The focus is investigating the triggering of undesired onset action potentials when the HFBS is tur…

Sparse identification of quasipotentials via a combined data-driven method

2024-07-06 · Bo Lin, Pierpaolo Belardinelli

The quasipotential function allows for comprehension and prediction of the escape mechanisms from metastable states in nonlinear dynamical systems. This function acts as a natural extension of the potential function for …

Quasi-stability notions in two-sided matching models

2024-11-19 · Nadia Guiñazú, Noelia Juarez, Pablo Neme, Jorge Oviedo

This paper presents weakened notions of corewise stability and setwise stability for matching markets where agents have substitutable choice functions. We introduce the concepts of worker-quasi-core, firm-quasi-core, and…