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Far field extrapolation from near field interactions and shielding influence investigations based on a FE-PEEC coupling method

机译:基于Fe-PEEC耦合法,远场相互作用和屏蔽影响研究的远场推断

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Considering standards, the main source of far field emitted by power electronic structures is the common mode current generated by the floating potentials tracks. Moreover, due to the frequency and power increases, the compliance to EMC becomes more and more difficult. In consequence, it is necessary to investigate practical solutions to reduce the emitted field. A useful solution is the shielding of wounded components which are near field influent sources. But this solution may be not efficient for far field reduction and investigations concerning component placement can be a better and cheaper solution. A FE-PEEC hybrid method was developed and can be used to investigate near field interactions and shielding influence. The method is applied to a structure combining a common mode filter with the floating potentials of an inverter. Using the hybrid method, the near field interactions and the influence of the common mode inductance shielding are analyzed on the floating potentials which are the sensitive part of the structure.
机译:考虑标准,电力电子结构发射的远场的主要来源是浮动电位轨道产生的共模电流。此外,由于频率和功率增加,符合EMC变得越来越困难。因此,有必要调查实际解决方案以减少发出的场。一种有用的解决方案是靠近现场流水源的受伤部件的屏蔽。但是这种解决方案可能对远场降低而不是有效的,并且关于组件放置的调查可以是更好和更便宜的解决方案。开发了FE-PEEC混合方法,可用于研究近场相互作用和屏蔽影响。该方法应用于与逆变器的浮动电位组合的结构组合的结构。使用混合方法,对浮动电位的近场相互作用和共模电感屏蔽的影响是结构的敏感部分。

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