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Analytical Method, based on Slater Perturbation Theorem, to Control Frequency Error when representing Cylindrical Structures in 3D Simulators

机译:基于Slater摄动定理的解析方法,用于在3D模拟器中表示圆柱结构时控制频率误差

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When simulating electrically large complex structures such as Drift Tube Linac (DTL) cavities in 3D simulators, it is important to choose a model representation that is a compromise between accuracy and time/resource cost. This paper presents an analytical method, based on Slater perturbation theorem, to control frequency error and obtain a fairly accurate 3D mesh to represent cylindrical structures.
机译:在3D模拟器中模拟大型电气复杂结构(例如,漂移管直线加速器(DTL)空腔)时,重要的是选择一种在精度和时间/资源成本之间折衷的模型表示。本文提出了一种基于Slater摄动定理的分析方法,可以控制频率误差并获得相当精确的3D网格来表示圆柱结构。

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