fixed_dof_solve
fixed_dof_solve_precompute
Source code in src/gpytoolbox/fixed_dof_solve.py
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__init__(A, k=None)
Prepare a precomputation object to efficiently solve a linear system while fixing certain degrees of freedom for which the linear system is to be ignored during solution.
For the linear system A*u = b
, the linear system will be enforced at all
the rows that don't correspond to fixed degrees of freedom, and the fixed
degrees of freedom will be enforced on their respective rows.
This can be used to implement finite differences with Dirichlet boundary conditions by fixing the boundary degrees of freedom to the appropriate boundary values.
Parameters:
Name | Type | Description | Default |
---|---|---|---|
A |
(n,n) scipy csc matrix
|
square matrix for the linear system |
required |
k |
(o,) numpy int array
|
index vector of fixed degrees of freedom |
None
|
Returns:
Name | Type | Description |
---|---|---|
precomputed |
precomputation object that can be used to solve the problem
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See Also
min_quad_with_fixed
Examples:
TODO
Source code in src/gpytoolbox/fixed_dof_solve.py
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solve(b=None, y=None)
Solve the prefactored linear system while fixing certain degrees of freedom for which the linear system is to be ignored during solution.
For the linear system A*u = b
, the linear system will be enforced at all
the rows that don't correspond to fixed degrees of freedom, and the fixed
degrees of freedom will be enforced on their respective rows.
This can be used to implement finite differences with Dirichlet boundary conditions by fixing the boundary degrees of freedom to the appropriate boundary values.
Parameters:
Name | Type | Description | Default |
---|---|---|---|
b |
(n,) or (n,p) numpy float array
|
right-hand side of the linear system |
None
|
y |
(o,) or (o,p) numpy float array
|
what the degrees of freedom are fixed to, |
None
|
Returns:
Name | Type | Description |
---|---|---|
u |
(n,) or (n,p) numpy float array such that
|
|
See Also
min_quad_with_fixed
Examples:
TODO
Source code in src/gpytoolbox/fixed_dof_solve.py
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fixed_dof_solve(A, b=None, k=None, y=None)
Solves a linear system while fixing certain degrees of freedom for which the linear system is to be ignored during solution.
For the linear system A*u = b
, the linear system will be enforced at all
the rows that don't correspond to fixed degrees of freedom, and the fixed
degrees of freedom will be enforced on their respective rows.
This can be used to implement finite differences with Dirichlet boundary conditions by fixing the boundary degrees of freedom to the appropriate boundary values.
Parameters:
Name | Type | Description | Default |
---|---|---|---|
A |
(n,n) scipy csc matrix
|
square matrix for the linear system |
required |
b |
(n,) or (n,p) numpy float array
|
right-hand side of the linear system |
None
|
k |
(o,) numpy int array
|
index vector of fixed degrees of freedom |
None
|
y |
(o,) or (o,p) numpy float array
|
what the degrees of freedom are fixed to, |
None
|
Returns:
Name | Type | Description |
---|---|---|
u |
(n,) or (n,p) numpy float array such that
|
|
See Also
min_quad_with_fixed
Examples:
TODO
Source code in src/gpytoolbox/fixed_dof_solve.py
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