We present ERODE, a multi-platform tool for the solution and exact reduction of systems of ordinary differential equations (ODEs). ERODE supports two recently introduced, complementary, equivalence relations over ODE variables: forward differential equivalence yields a self-consistent aggregate system where each ODE gives the cumulative dynamics of the sum of the original variables in the respective equivalence class. Backward differential equivalence identifies variables that have identical solutions whenever starting from the same initial conditions. As back-end ERODE uses the well-known Z3 SMT solver to compute the largest equivalence that refines a given initial partition of ODE variables. In the special case of ODEs with polynomial der...
Models of complex systems often consist of state variables with structurally similar dynamics that d...
During the last three decades, a vast variety of methods to numerically solve ordinary differential ...
In the last decade, two distinct directions have emerged in the way Ordinary Differential Equation (...
We present ERODE, a multi-platform tool for the solution and exact reduction of systems of ordinary ...
Ordinary differential equations (ODEs) are widespread in many natural sciences including chemistry, ...
Ordinary differential equations (ODEs) are widely used in the modeling of physical systems. However,...
AbstractThe goal of the present paper is to propose an enhanced ordinary differential equation solve...
Choosing the optimal solver for systems of ordinary differential equations (ODEs) is a critical step...
AbstractAn extremely simple change to existing software for the solution of ordinary differential eq...
88 p.Ordinary differential equation (ODE) is a powerful mathematical tool. ODE arises in many differ...
Ordinary differential equations (ODEs) are the primary means to modelling dynamical systems in many ...
In the systems biology field, algorithms for structural identification of ordinary differential equa...
International audienceVarious open problems have been recently solved using Ordinary Differential Eq...
It is well known that exact notions of model abstraction and reduction for dynamical systems may not...
In this paper we introduce SODES (Step-wise Ordinary Differential Equations Solver) which is a new s...
Models of complex systems often consist of state variables with structurally similar dynamics that d...
During the last three decades, a vast variety of methods to numerically solve ordinary differential ...
In the last decade, two distinct directions have emerged in the way Ordinary Differential Equation (...
We present ERODE, a multi-platform tool for the solution and exact reduction of systems of ordinary ...
Ordinary differential equations (ODEs) are widespread in many natural sciences including chemistry, ...
Ordinary differential equations (ODEs) are widely used in the modeling of physical systems. However,...
AbstractThe goal of the present paper is to propose an enhanced ordinary differential equation solve...
Choosing the optimal solver for systems of ordinary differential equations (ODEs) is a critical step...
AbstractAn extremely simple change to existing software for the solution of ordinary differential eq...
88 p.Ordinary differential equation (ODE) is a powerful mathematical tool. ODE arises in many differ...
Ordinary differential equations (ODEs) are the primary means to modelling dynamical systems in many ...
In the systems biology field, algorithms for structural identification of ordinary differential equa...
International audienceVarious open problems have been recently solved using Ordinary Differential Eq...
It is well known that exact notions of model abstraction and reduction for dynamical systems may not...
In this paper we introduce SODES (Step-wise Ordinary Differential Equations Solver) which is a new s...
Models of complex systems often consist of state variables with structurally similar dynamics that d...
During the last three decades, a vast variety of methods to numerically solve ordinary differential ...
In the last decade, two distinct directions have emerged in the way Ordinary Differential Equation (...