Title :
-Parameter Sensitivities for Electromagnetic Optimization Based on Volume Field Solutions
Author :
Nikolova, Natalia K. ; Zhu, Xiaying ; Song, Yunpeng ; Hasib, Arshad ; Bakr, Mohamed H.
Author_Institution :
Dept. of Electr. & Comput. Eng., McMaster Univ., Hamilton, ON
fDate :
6/1/2009 12:00:00 AM
Abstract :
We propose a sensitivity analysis method that computes the S-parameter Jacobian from the volume E-field solutions in the frequency domain. The field solutions may be provided by any valid electromagnetic analysis. The computation is a post-process, which is independent from the simulator´s grid, system equations, and discretization method. The sensitivity solver uses its own finite-difference grid and a sensitivity formula based on the finite-difference frequency-domain vector Helmholtz equation for the electric field. Its computational overhead is negligible in comparison with the simulation. We use the sensitivity solver in the gradient-based optimization of microwave structures. Significant reduction of the time required by the overall optimization process is achieved. In all design examples, the sensitivities are computed from the field solutions provided by a commercial finite-element simulator.
Keywords :
Helmholtz equations; Jacobian matrices; S-parameters; electric fields; finite difference time-domain analysis; gradient methods; sensitivity analysis; S-parameter Jacobian; S-parameter sensitivities; discretization method; electric field; electromagnetic analysis; electromagnetic optimization; finite-difference frequency-domain vector Helmholtz equation; finite-difference grid; finite-element simulator; gradient-based optimization; microwave structures; sensitivity analysis method; volume E-fleld solutions; volume field solutions; Computer-aided design (CAD); finite-difference method; finite-element method (FEM); gradient-based optimization; response Jacobians; sensitivity analysis;
Journal_Title :
Microwave Theory and Techniques, IEEE Transactions on
DOI :
10.1109/TMTT.2009.2020828