The combined source integral equation (CSIE) for the electric field on the surface of a perfect electrically conducting scatterer can be discretized very accurately with lowest-order Rao-Wilton-Glisson basis and testing functions if the combined-source (CS) condition is enforced in weak form. We introduce a technique to accelerate the iterative solution for this kind of CSIE. It is demonstrated that the iterative solution of the equation system can be performed very efficiently by explicitly inverting the weak-form CS condition in any evaluation of the forward operator. This reduces the number of unknowns and results in improved convergence behavior at negligible, linear cost. Numerical results demonstrate that the new CSIE outperforms the classical CFIE for high-accuracy simulations.
翻译:如果联合源(CS)条件以微弱的形式强制实施,则完全进行电子散射的完美散射器表面电场的混合源整体方程式(CSIE)可以非常精确地与最低顺序的Rao-Wilton-Glisson基点和测试功能分离。我们引入了一种技术来加速这类CSIE的迭代解决方案。事实证明,通过在对前方操作器的任何评估中明确颠倒微弱的 CS 条件,方程式系统的迭代解决方案可以非常高效地运行。这减少了未知数的数量,并导致以可忽略不计的线性成本改进了趋同行为。数字结果表明,新的CSIE在高精度模拟中优于古典CFIE。