Title :
A Wide-Band Equivalent Source Reconstruction Method Exploiting the Stoer-Bulirsch Algorithm With the Adaptive Frequency Sampling
Author :
Ping Li ; Yan Li ; Li Jun Jiang ; Jun Hu
Author_Institution :
Dept. of Electr. & Electron. Eng., Univ. of Hong Kong, Hong Kong, China
Abstract :
Conventional equivalent source reconstruction methods are only operating at a single frequency point each time. However, for wide-band radiators, their computation cost of the source reconstruction increases with the number of frequency points. In this communication, a wide-band equivalent source reconstruction method (WB-SRM) based on the Neville-type Stoer-Bulirsch (SB) algorithm is developed. Since the SB algorithm is a recursive tabular method, it can perform the interpolation over a broadband using a single rational function without any singularity issue. Supported by the adaptive frequency sampling (AFS) scheme, the number of required sampling data is significantly reduced, which leads to much better computational efficiency. During the AFS process, three fitting models (FM) are considered: two are “triangle rules,” and another one is “rhombus rule.” In this communication, a bisection searching strategy is performed. Furthermore, to achieve high-order accuracy, the Nyström method is implemented. Numerical examples are presented to validate the proposed WB-SRM and demonstrate its accuracy and applications.
Keywords :
antennas; matrix algebra; near-field communication; rational functions; Neville type Stoer-Bulirsch algorithm; Nyström method; SB algorithm; Stoer-Bulirsch Algorithm; WB-SRM; adaptive frequency sampling; bisection searching strategy; computational efficiency; frequency points; recursive tabular method; wide band equivalent source reconstruction method; wide band radiators; Accuracy; Antennas; Equations; Interpolation; Noise measurement; Surface impedance; Time-frequency analysis; Adaptive frequency sampling; Nyström method; Stoer-Bulirsch (SB) algorithm; electric field integral equation; fitting models; wide-band source reconstruction;
Journal_Title :
Antennas and Propagation, IEEE Transactions on
DOI :
10.1109/TAP.2013.2274032