V =
How should I compute the Jacobian for my equations of motion?
Mostrar comentarios más antiguos
Hi there!
I have a set of second-order equations of motion written symbolically in Matlab, put into matrix form using EquationsToMatrix( ). Then I convert these symbolic equations to numerical code files, using matlabFunction( ). With the numerical files, I then wrote six first-order equations of motion, in order to pass them into ode45 for simulations, in a separate simulation file. Now, I have found fixed points in my system, and I want to evaluate their stability. I am supposed to compute the Jacobian partial-derivatives matrix for the right-hand-side functions within the full set of equations of motion. How can I best compute the 6x6 Jacobian, knowing that later I have to find eigenvalues of this Jacobian matrix? Should I work numerically, symbolically, or both? If I work numerically, should I be using the gradient function, or something else?
Thanks in advance,
Respuesta aceptada
Más respuestas (0)
Categorías
Más información sobre Assumptions en Centro de ayuda y File Exchange.
Community Treasure Hunt
Find the treasures in MATLAB Central and discover how the community can help you!
Start Hunting!