Recent contributions showed the benefits of operator filtering for both preconditioning and fast solution strategies. While previous contributions leveraged laplacian-based filters, in this work we introduce and study a different approach leveraging the truncation of appropriately chosen spectral representations of operators’ kernels. In this contribution, the technique is applied to the operators of the 2D TE- and TM-electric field integral equations (EFIE). We explore two different spectral representations for the 2D Green’s function that lead to two distinct types of filtering of the EFIE operators. Numerical results corroborate the effectiveness of the newly proposed approaches, also in the Calderón preconditioned EFIE.
On some Operator Filtering Strategies Based on Suitably Modified Green’s Functions / Masciocchi, Matteo; Citraro, Ermanno; Dély, Alexandre; Rahmouni, Lyes; Merlini, Adrien; Andriulli, FRANCESCO PAOLO. - ELETTRONICO. - (2023), pp. 624-626. (Intervento presentato al convegno 2023 International Conference on Electromagnetics in Advanced Applications (ICEAA) tenutosi a Venice (Italy) nel 09-13 October 2023) [10.1109/ICEAA57318.2023.10297810].
On some Operator Filtering Strategies Based on Suitably Modified Green’s Functions
Masciocchi Matteo;Ermanno Citraro;Andriulli Francesco Paolo
2023
Abstract
Recent contributions showed the benefits of operator filtering for both preconditioning and fast solution strategies. While previous contributions leveraged laplacian-based filters, in this work we introduce and study a different approach leveraging the truncation of appropriately chosen spectral representations of operators’ kernels. In this contribution, the technique is applied to the operators of the 2D TE- and TM-electric field integral equations (EFIE). We explore two different spectral representations for the 2D Green’s function that lead to two distinct types of filtering of the EFIE operators. Numerical results corroborate the effectiveness of the newly proposed approaches, also in the Calderón preconditioned EFIE.| File | Dimensione | Formato | |
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https://hdl.handle.net/11583/2993390
			
		
	
	
	
			      	