首页> 外文期刊>IEEE Transactions on Antennas and Propagation >Comparison of Lorentz and Coulomb gauge formulations for transverse-electric wave scattering by two-dimensional surfaces of arbitrary shape in the presence of a circular cylinder
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Comparison of Lorentz and Coulomb gauge formulations for transverse-electric wave scattering by two-dimensional surfaces of arbitrary shape in the presence of a circular cylinder

机译:在圆柱存在下通过任意形状的二维表面进行横向电波散射的Lorentz和Coulomb量规公式的比较

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摘要

Two forms of the so-called mixed-potential electric field integral equation (MPIE) are developed for two-dimensional perfectly conducting (PC) surfaces of arbitrary shape in the presence of an infinite PC cylinder of circular cross section subject to transverse-electric (TE) excitation. One of the MPIEs is based on the Coulomb gauge; the other uses the Lorentz gauge. In either case, the effect of the cylinder is incorporated in the integral equation by means of the appropriate Green's functions, leaving the current distribution on the arbitrary surface as the only unknown. The Green's functions are derived by the eigenfunction expansion technique. An existing well-established moment method procedure is adapted to solve both forms of the MPIE numerically. Computed results are presented for several cases of interest, and the relative merits of the Coulomb and Lorentz gauge MPIEs are discussed.
机译:针对存在圆形横截面的无限PC圆柱体的情况,针对任意形状的二维完美导电(PC)表面,开发了两种形式的所谓的混合势电场积分方程(MPIE)。 TE)激发。 MPIE之一是基于库仑计量器的;另一个使用洛伦兹量规。在任何一种情况下,圆柱体的影响都通过适当的格林函数合并到积分方程中,而将唯一表面上的电流分布作为唯一未知数。格林函数是通过特征函数展开技术得出的。现有的完善的矩量方法程序适用于数值求解MPIE的两种形式。给出了一些感兴趣的案例的计算结果,并讨论了库仑和洛伦兹量规MPIE的相对优点。

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