quadtree_laplacian
quadtree_laplacian(C, W, CH, D, A)
Finite difference Laplacian matrix on a quadtree
Builds a finite difference laplacian on a quadtree following a centered finite difference scheme, with the adjacency as suggested by Bickel et al. "Adaptative Simulation of Electrical Discharges".
Parameters:
Name | Type | Description | Default |
---|---|---|---|
C
|
numpy double array
|
Matrix of cell centers |
required |
W
|
numpy double array
|
Vector of cell half widths |
required |
CH
|
numpy int array
|
Matrix of child indeces (-1 if leaf node) |
required |
D
|
numpy int array
|
Vector of tree depths |
required |
A
|
scipy sparse.csr_matrix
|
Sparse node adjacency matrix, where a value of a in the (i,j) entry means that node j is to the a-th direction of i (a=1: left; a=2: right; a=3: bottom; a=4: top). |
required |
Returns:
Name | Type | Description |
---|---|---|
L |
scipy sparse.csr_matrix
|
sparse Laplacian matrix |
stored_at |
numpy double array
|
Matrix of child cell centers, where the values of L are stored |
See also
quadtree_gradient, initialize_quadtree.
Notes
This code is purposefully not optimized beyond asymptotics for simplicity in understanding its functionality and translating it to other programming languages beyond prototyping.
Examples:
# Create a random point cloud
P = 2*np.random.rand(100,2) - 1
# Initialize the quadtree
C,W,CH,PAR,D,A = gpytoolbox.initialize_quadtree(P,graded=True,max_depth=8)
# Get the Laplacian matrix
G, stored_at = gpytoolbox.quadtree_laplacian(C,W,CH,D,A)
Source code in src/gpytoolbox/quadtree_laplacian.py
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