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Calculation of ohmic losses in litz wires by coupling analytical and numerical methods

机译:耦合分析和数值方法计算利兹线中的欧姆损耗

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Up to now, litz wires with many (several hundreds) strands are simplified in complex systems such as transformers or coils to make simulations feasible. However, frequency dependent losses of litz wires and solid conductors differ strongly. In this paper, a coupled process of numerical simulation and analytical methods is described which allows efficient simulation of full 3D structures including resolving litz wire sub-structure. To achieve this, 3D simulation with a simplified conductor calculates the magnetic field in the entire system. Based on these data, a new analytical method determines the losses in the litz wire along the conductor for the large number of 2D cross-sections. The error of the analytical method is less than 5% at frequencies up to 1MHz and external magnetic fields up to 2500kA/m. Because of the significant reduction of calculation time, windings and ferrite structures can be efficienly optimized.
机译:到目前为止,在复杂的系统(如变压器或线圈)中,具有多(几百)股绞线的绞合绞线已简化,以使仿真可行。但是,取决于频率的绞合线和实心导体的损耗差异很大。在本文中,描述了数值模拟和分析方法的耦合过程,该过程允许对包括解析绞合线子结构在内的完整3D结构进行有效的模拟。为了实现这一点,使用简化导体的3D模拟将计算整个系统中的磁场。基于这些数据,一种新的分析方法可以确定大量2D横截面沿导体的绞合线中的损耗。在高达1MHz的频率和高达2500kA / m的外部磁场下,分析方法的误差小于5%。由于大大减少了计算时间,因此可以有效地优化绕组和铁氧体结构。

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