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Generalization of loop-star approach for adaptive MoM analysis of mixed multiple geometries of metals, dielectrics, wires and thin material sheets

机译:环星方法的通用化,用于对金属,电介质,导线和薄材料片的多种混合几何形状进行自适应MoM分析

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In this paper, a conventional loop-star approach is generalized on mixed multiple geometries composed of metal surfaces, wires, dielectrics and thin material sheets. A hybridized MoM solver to jointly handle these geometry elements is developed and applied for analysis of specific electromagnetic (EM), electromagnetic interference (EMI), compatibility (EMC) and safety (EMS) problems. The developed approach is validated by comparison of simulated results for particular geometries with those obtained by other approaches. Application of it to practical EMC and EMS problems, such as inductive charging in electrical and hybrid vehicles (EV and HV), is demonstrated.
机译:在本文中,常规的循环星形方法适用于由金属表面,导线,电介质和薄材料片组成的混合多个几何形状。开发了一种可共同处理这些几何元素的混合MoM求解器,并将其应用于特定电磁(EM),电磁干扰(EMI),兼容性(EMC)和安全(EMS)问题的分析。通过将特定几何形状的模拟结果与其他方法获得的结果进行比较,可以验证所开发的方法。演示了将其应用于实际的EMC和EMS问题,例如电动和混合动力车辆(EV和HV)中的感应充电。

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