Deprecated: $wgMWOAuthSharedUserIDs=false is deprecated, set $wgMWOAuthSharedUserIDs=true, $wgMWOAuthSharedUserSource='local' instead [Called from MediaWiki\HookContainer\HookContainer::run in /var/www/html/w/includes/HookContainer/HookContainer.php at line 135] in /var/www/html/w/includes/Debug/MWDebug.php on line 372
On Stability of LMS Methods and Characteristic Roots of Delay Differential Equations - MaRDI portal

On Stability of LMS Methods and Characteristic Roots of Delay Differential Equations

From MaRDI portal
Publication:4787281

DOI10.1137/S003614290037472XzbMath1021.65040MaRDI QIDQ4787281

Dirk Roose, Koen Engelborghs

Publication date: 5 January 2003

Published in: SIAM Journal on Numerical Analysis (Search for Journal in Brave)




Related Items (35)

Stability analysis of age-structured population equations by pseudospectral differencing meth\-odsNumerical approximation of characteristic values of partial retarded functional differential equationsAnalysis and Control of Deterministic and Stochastic Dynamical Systems with Time DelayDetermining stability of pulses for partial differential equations with time delaysDiscretization of Solution Operators for Linear Time Invariant - Time Delay Systems in Hilbert SpacesNumerical stability analysis of steady state solutions of integral equations with distributed delaysStability analysis of delay-differential equations by the method of steps and inverse Laplace transformAnalytical and numerical treatment of oscillatory mixed differential equations with differentiable delays and advancesA nonsmooth optimisation approach for the stabilisation of time-delay systemsMultiplicity-induced-dominancy in parametric second-order delay differential equations: Analysis and application in control designStability analysis of time-delay systems using a contour integral methodImaginary axis eigenvalues of matrix delay equations with a certain alternating coefficient structureDelay-dependent stability of linear multistep methods for DAEs with multiple delaysEfficient computation of characteristic roots of delay differential equations using LMS methodsSolution operator approximations for characteristic roots of delay differential equationsApproximation of Eigenvalues of Evolution Operators for Linear Renewal EquationsNumerical treatment of oscillatory functional differential equationsMultiplicity-induced-dominancy for delay-differential equations of retarded typeFast-lifting approach to the computation of the spectrum of retarded time-delay systemsLow level viral persistence after infection with LCMV: A quantitative insight through numerical bifurcation analysisComputable stability criterion of linear neutral systems with unstable difference operatorsAsymptotic properties of the spectrum of neutral delay differential equationsPERIODIC SOLUTIONS OF DIFFERENTIAL ALGEBRAIC EQUATIONS WITH TIME DELAYS: COMPUTATION AND STABILITY ANALYSISReliably computing all characteristic roots of delay differential equations in a given right half plane using a spectral methodLowpass filter-based continuous-time approximation of delayed dynamical systemsNumerical bifurcation analysis of immunological models with time delaysConsensus analysis with large and multiple communication delays using spectral delay space conceptNumerical solutions of fractional delay differential equations using Chebyshev wavelet methodMatrix Polynomials, Similar Operators, and the Imaginary Axis Eigenvalues of a Matrix Delay EquationOn characteristic roots and stability charts of delay differential equationsQPmR - Quasi-Polynomial Root-Finder: Algorithm Update and ExamplesBifurcation analysis of systems with delays: methods and their use in applicationsCombination of sign inverting and delay scheduling control concepts for multiple-delay dynamicsOptimal sign inverting control for time-delayed systems, a concept study with experimentsContinuous separation for monotone skew-product semiflows: from theoretical to numerical results







This page was built for publication: On Stability of LMS Methods and Characteristic Roots of Delay Differential Equations