Master index |
Index for eidors/solvers/forward ![]() |
| BOUNDSHAPEFUNC Shape functions on the boundary in local coordiantes | |
| CALC_ALL_NODE_VOLTAGES - calculate voltage on all nodes | |
| CALC_TRANSFERIMPEDANCE: Calculates transfer impedance matrix | |
| function spice = eit_spice(img, [name]) | |
| DELEMSHAPEFUNC | |
| ELEMENT_SHAPE_FUNCTION - Evaluation of shape functions | |
| FEM_1ST_TO_HIGH_ORDER: Modify the FEM for high order FEM called as | |
| [srf, idx] = find_boundary(simp); | |
| FIND_ELECTRODE_BDY: find the boundary index area for electrode | |
| FWD_MODEL_PARAMETERS: data= fwd_solve_1st_order( fwd_model, image) | |
| FWD_SOLVE_1ST_ORDER: data= fwd_solve_1st_order( img) | |
| FWD_SOLVE_2P5D_1ST_ORDER: data= fwd_solve_2p5d_1st_order( img) | |
| fwd_solve_apparent_resistivity: fwd_solve output as apparent resistivity | |
| FWD_SOLVE_HALFSPACE: data = fwd_solve_halfspace(img) | |
| Solve for voltages (nodes/electrodes) for a forward model. | |
| GAUSS_POINTS | |
| JACOBIAN_ADJOINT: J= jacobian_adjoint( img ) | |
| JACOBIAN_ADJOINT_2P5D: J= jacobian_adjoint_2p5d_1st_order( img ) | |
| Find the Jacobian associated with an image (and forward model) | |
| jacobian_apparent_resistivity: Jacobian output as apparent resistivity | |
| JACOBIAN_ELEM2NODES: calculate Jacobian on Nodes from Elem solver | |
| JACOBIAN_FILTERED: J= jacobian_filtered( fwd_model, img) | |
| JACOBIAN_MOVEMENT Computes the Jacobian matrix for conductivity and | |
| JACOBIAN_MOVEMENT_2P5D: J = jacobian_movement_2p5d_1st_order( img ) | |
| JACOBIAN_MOVEMENT_PERTURB: J= jacobian_movement_perturb( img ) | |
| JACOBIAN_MOVEMENT_PERTURB: J= jacobian_movement_perturb( img ) | |
| JACOBIAN_PERTURB: J= jacobian_perturb( fwd_model, img) | |
| Vn = spice_eit(netlist, [freq]) | |
| SYSTEM_MAT_1ST_ORDER: SS= system_mat_1st_order( fwd_model, img) | |
| SYSTEM_MAT_2P5D_1ST_ORDER: 2.5D system matrix | |
| SYSTEM_MAT_2P5D_FIELDS: fields (elem to nodes) fraction of system mat | |
| SYSTEM_MAT_FIELDS: fields (elem to nodes) fraction of system mat | |
| Assemble the total stiffness matrix : s_mat.E=At; | |
| SYSTEM_MAT_FIELDS: fields (elem to nodes) fraction of system mat |