Minimize a variable in a no-linear system
Mostrar comentarios más antiguos
Hi, i need to minimize Fv in this system:

The problems variables are :

19 comentarios
David Hill
el 21 de En. de 2023
Show us your code and ask a specific question.
Matt J
el 22 de En. de 2023
I would imagine linprog would be applicable, since all constraints appear to be linear.
Torsten
el 22 de En. de 2023
Except the second to last.
Antonio Cassano
el 22 de En. de 2023
Editada: Matt J
el 23 de En. de 2023
Torsten
el 22 de En. de 2023
If I counted correctly, you have 15 unknowns and 15 equality constraints.
So you can be happy if you even get a solution for your problem. Bound constraints on the solution can not be imposed.
Antonio Cassano
el 23 de En. de 2023
Editada: Antonio Cassano
el 23 de En. de 2023
Antonio Cassano
el 23 de En. de 2023
Matt J
el 23 de En. de 2023
There is nothing more to say about how to solve the problem. The only question is, does the problem have a solution? The 15-variable fake problem apparently does not have a solution, but it might not matter in the end, because maybe your real problem does.
Incidentally, you could have had,
problem.Objective = Fv;
Antonio Cassano
el 26 de En. de 2023
Editada: Matt J
el 26 de En. de 2023
Matt J
el 26 de En. de 2023
Again, you appear to have more equaltity constraints than unknowns, so the problem is extremely likely to be infeasible.
Antonio Cassano
el 29 de En. de 2023
Torsten
el 29 de En. de 2023
5 unknows:
initialPoint.Fv = Fvt(j,i-1);
initialPoint.p0 = p0t(j,i-1);
initialPoint.x_k = x_kt(j,i-1);
initialPoint.y_k = y_kt(j,i-1);
initialPoint.f = ft(j,i-1);
6 equality constraints, 2 inequality constraints:
problem.Constraints.constraint1 = p01 >= 0;
problem.Constraints.constraint2 = F1eq == 0;
problem.Constraints.constraint3 = -densita*volume_oggetto*g*sin(angolo)+F2eq == 0;
problem.Constraints.constraint4 = Fv1 - 2*p01*pi*Re - densita*g*volume_oggetto*cos(angolo) == 0;
problem.Constraints.constraint5 = f1 <= fst(1,j);
problem.Constraints.constraint6 = F1eq.^2+F2eq.^2-f1.^2*(2*pi*p01*Re).^2 == 0;
problem.Constraints.constraint7 = F2eq ./ F1eq == -x_k1/y_k1;
problem.Constraints.constraint8 = -densita*volume_oggetto*g*G(1,1)*sin(angolo)+F3eq == 0 ;
Or did I interprete something wrong ?
Antonio Cassano
el 30 de En. de 2023
Matt J
el 30 de En. de 2023
Well, maybe it eventually will converge.
Antonio Cassano
el 31 de En. de 2023
Matt J
el 31 de En. de 2023
@Antonio Cassano I would post that as a new question. First of all, we don't know what your current code looks like, the one that produced that graph. Secondly, we don't know what you would consider an "improvement" to the current result. All that could and should go into a new post..
However you might also try looping backwards from n:-1:1 and initializing instead with,
initialPoint.Fv = Fvt(j,i+1);
initialPoint.p0 = p0t(j,i+1);
initialPoint.x_k = x_kt(j,i+1);
initialPoint.y_k = y_kt(j,i+1);
initialPoint.f = ft(j,i+1);
since the solutions seem to be more sensitive to the initial guess at lower i.
Respuesta aceptada
Más respuestas (0)
Categorías
Más información sobre Solver Outputs and Iterative Display 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!
