Abstract:MATCONT is a graphical MATLAB software package for the interactive numerical study of dynamical systems. It allows one to compute curves of equilibria, limit points, Hopf points, limit cycles, period doubling bifurcation points of limit cycles, and fold bifurcation points of limit cycles. All curves are computed by the same function that implements a prediction-correction continuation algorithm based on the Moore-Penrose matrix pseudo-inverse. The continuation of bifurcation points of equilibria and limit cycl… Show more
“…Note, the resulting system can also be viewed as the BRN in the limit of infinite N . Both bifurcation diagrams were obtained numerically with the help of the software package MAT-CONT [34], which allows for parameter continuation of equilibrium states and periodic orbits of autonomous systems of ODEs. Both systems show analogous regions in their bifurcation diagram.…”
Section: Effects Of Coupling Beyond Noise Reductionmentioning
Abstract.We study the dynamics of oscillatory hair bundles which are coupled elastically in their deflection variable and are subject to noise. We present a stochastic description capturing the dynamics of the hair bundles' mean field. In particular, the presented derivation elucidates the origin of the previously described noise reduction by coupling. By comparison of simulations of the approximate dynamics and the full system, we verify our results. Furthermore, we demonstrate that the specific type of coupling considered implies coupling-induced changes in the dynamics beyond mere noise reduction.
“…Note, the resulting system can also be viewed as the BRN in the limit of infinite N . Both bifurcation diagrams were obtained numerically with the help of the software package MAT-CONT [34], which allows for parameter continuation of equilibrium states and periodic orbits of autonomous systems of ODEs. Both systems show analogous regions in their bifurcation diagram.…”
Section: Effects Of Coupling Beyond Noise Reductionmentioning
Abstract.We study the dynamics of oscillatory hair bundles which are coupled elastically in their deflection variable and are subject to noise. We present a stochastic description capturing the dynamics of the hair bundles' mean field. In particular, the presented derivation elucidates the origin of the previously described noise reduction by coupling. By comparison of simulations of the approximate dynamics and the full system, we verify our results. Furthermore, we demonstrate that the specific type of coupling considered implies coupling-induced changes in the dynamics beyond mere noise reduction.
“…There are several freely available continuation software with different levels of maturity and robustness. AUTO [37], Continuation Core (COCO) [38], MATCONT [39] and CL_MATCONT [39] are examples of the most widely used packages. In this analysis, the continuation and bifurcation software AUTO was used.…”
Section: Continuation and Bifurcation Methods For Rotating Bladesmentioning
One contribution of 11 to a theme issue 'A field guide to nonlinearity in structural dynamics' . This article presents a systematic assessment of the use of numerical continuation and bifurcation techniques in investigating the nonlinear periodic behaviour of a teetering rotor operating in forward autorotation. The aim is to illustrate the potential of these tools in revealing complex blade dynamics, when used in combination (not necessarily at the same time) with physical testing. We show a simple procedure to promote understanding of an existing but not fully understood engineering instability problem, when uncertainties in the numerical modelling and constraints in the experimental testing are present. It is proposed that continuation and bifurcation methods can play a significant role in developing numerical and experimental techniques for studying the nonlinear dynamics not only for rotating blades but also for other engineering systems with uncertainties and constraints.
“…Monitoring the jacobian of br-i is crucial for forecasting these new emerging branches that can be continuated by means of sophisticated strategies 11 . In the absence of such techniques, we simply explore the presence of new solutions by inspection, i.e., using Newton's method for α − < α < α + or α > α + to detect br-ii or br-iii, respectively, starting the iteration from different initial guesses until a new solution branch is identified.…”
Section: Numerical Continuation In Mechanicsmentioning
Abstract:In this paper, modern numerical continuation methodologies are presented as a way of understanding and computing multiplicity of solutions in undergraduate physics problems. Mechanical and thermodynamical problems are used as a storyline to introduce the mathematical formalism required to make clear the distinction between uniqueness and multiplicity of equilibrium solutions and critical states of a nonlinear physical problem as well as to illustrate how these novel numerical continuation techniques are implemented in practice. The paper provides simple numerical Matlab codes easily adaptable to other problems as well as updated software and literature resources currently available.
CONFIDENTIAL -FOR REVIEW ONLY EJP-100348.R4Numerical
AbstractIn this paper, modern numerical continuation methodologies are presented as a way of understanding and computing multiplicity of solutions in undergraduate physics problems. Mechanical and thermodynamical problems are used as a storyline to introduce the mathematical formalism required to make clear the distinction between uniqueness and multiplicity of equilibrium solutions and critical states of a nonlinear physical problem as well as to illustrate how these novel numerical continuation techniques are implemented in practice. The paper provides simple numerical Matlab codes easily adaptable to other problems as well as updated software and literature resources currently available.
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