论文标题
基于表面源的近场到远场变换的准确性和条件
Accuracy and Conditioning of Surface-Source Based Near-Field to Far-Field Transformations
论文作者
论文摘要
研究了各种反表面源配方的调节和准确性。首先,讨论了方程式的正常系统。其次,分析了零场条件的不同实现,分析了它们对解决方案准确性,调理和源歧义的影响。为了提供准确的与问题无关的方法,对爱情流动侧约束的加权进行了研究。 模拟和测量的近场数据的转换结果表明,大多数配方的准确性和条件的可比行为。爱情流动解决方案的优势仅在诊断能力中找到。无论如何,爱情端的约束都是影响迭代求解器阈值的一种计算昂贵的方式,该迭代求解器阈值更方便地使用适当的正常方程式来控制。 反面源配方的溶液行为主要受重建表面的选择影响。球形的huygens表面会导致最佳的调理,而最精确的溶液是在测试天线周围紧密的,可能是凸面的紧密,可能是凸面的。
The conditioning and accuracy of various inverse surface-source formulations are investigated. First, the normal systems of equations are discussed. Second, different implementations of the zero-field condition are analyzed regarding their effect on solution accuracy, conditioning, and source ambiguity. The weighting of the Love-current side constraint is investigated in order to provide an accurate problem-independent methodology. The transformation results for simulated and measured near-field data show a comparable behavior regarding accuracy and conditioning for most of the formulations. Advantages of the Love-current solutions are found only in diagnostic capabilities. Regardless of this, the Love side constraint is a computationally costly way to influence the iterative solver threshold, which is more conveniently controlled with the appropriate type of normal equation. The solution behavior of the inverse surface-source formulations is mostly influenced by the choice of the reconstruction surface. A spherical Huygens surface leads to the best conditioning, whereas the most accurate solutions are found with a tight, possibly convex hull around the antenna under test.