Publication | Closed Access
Piecewise linear recursive convolution for dispersive media using FDTD
524
Citations
10
References
1996
Year
Numerical AnalysisElectromagnetic WaveElectrical EngineeringEngineeringBiomedical ImagingInverse ProblemsDispersive MediaComputational ElectromagneticsDeconvolutionRecursive ConvolutionElectric FieldDispersionDiscrete Time ConvolutionElectromagnetic Compatibility
Electromagnetic propagation through linear dispersive media can be analyzed using the finite-difference time-domain (FDTD) method by employing the recursive convolution (RC) approach to evaluate the discrete time convolution of the electric field and the dielectric susceptibility function. The RC approach results in a fast and computationally efficient algorithm; however, the accuracy achieved is not generally as good as that obtained with other methods. A new piecewise linear recursive convolution (PLRC) method is described here that has greatly improved accuracy over the original RC approach but retains its speed and efficiency advantages.
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