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Uniform treatment of different conductor types in two-dimensional eddy-current problems applied to a fast ferrite tuner

机译:快速铁氧体调谐器在二维涡流问题中对不同导体类型的统一处理

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摘要

This paper deals with the numerical solution of two-dimensional (2-D) eddy-current problems. It shows that the numerical description of current-fed massive conductors is closely related to the numerical description of voltage-fed thin wire coils. With the help of this result, a boundary element method-finite element method code originally designed to deal with thin-wire coils could be applied to the optimization of a fast ferrite tuner (FFT). An FFT consists of a closed short-circuited strip line with an inner conductor covered by ferrites. The operating frequency of such a device is limited by parasitic eddy currents. This problem can be overcome by slotting the strip line. Numerical simulations have been performed to judge the effects of the slots.
机译:本文涉及二维(2-D)涡流问题的数值解。结果表明,电流馈送大导体的数值描述与电压馈送细线线圈的数值描述密切相关。借助此结果,可以将最初设计用于处理细线线圈的边界元方法-有限元方法代码应用于快速铁氧体调谐器(FFT)的优化。 FFT包括一条闭合的短路带状线,其内部导体被铁氧体覆盖。这种设备的工作频率受到寄生涡流的限制。通过开缝带状线可以解决这个问题。已经执行了数值模拟来判断缝隙的影响。

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