Title :
High-order Runge-Kutta multiresolution time-domain methods for computational electromagnetics
Author :
Cao, Qunsheng ; Kanapady, Ramdev ; Reitich, Fernando
Author_Institution :
Coll. of Inf. Sci. & Technol., Nanjing Univ. of Aeronaut. & Astronaut.
Abstract :
In this paper we introduce a class of Runge-Kutta multiresolution time-domain (RK-MRTD) methods for problems of electromagnetic wave propagation that can attain an arbitrarily high order of convergence in both space and time. The methods capitalize on the high-order nature of spatial multiresolution approximations by incorporating time integrators with convergence properties that are commensurate with these. More precisely, the classical MRTD approach is adapted here to incorporate mth-order m-stage low-storage Runge-Kutta methods for the time integration. As we show, if compactly supported wavelets of order N are used (e.g., the Daubechies DN functions) and m=N, then the RK-MRTD methods deliver solutions that converge with this overall order; a variety of examples illustrate these properties. Moreover, we further show that the resulting algorithms are well suited to parallel implementations, as we present results that demonstrate their near-optimal scaling
Keywords :
Runge-Kutta methods; computational electromagnetics; electromagnetic wave propagation; time-domain analysis; Runge-Kutta multiresolution time-domain methods; computational electromagnetics; electromagnetic wave propagation; spatial multiresolution approximations; Computational electromagnetics; Convergence; Electromagnetic propagation; Finite difference methods; Helium; Multiresolution analysis; Numerical simulation; Spatial resolution; Time domain analysis; Wavelet domain; High-order accuracy; Runge–Kutta methods; multiresolution time domain (MRTD); wavelets;
Journal_Title :
Microwave Theory and Techniques, IEEE Transactions on
DOI :
10.1109/TMTT.2006.879130