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Optimal core dimensional ratios for minimizing winding loss in high-frequency gapped-inductor windings

机译:最佳磁芯尺寸比,可最大程度地减少高频间隙电感绕组的绕组损耗

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摘要

Numerical techniques are used to find the inductor core dimensional ratios that minimize winding loss. It is shown that common core shapes result in significant excess losses, even if the shape of the wire winding is optimized. A design example demonstrates the practical implications of this technique for choosing cores-a standard core with dimensional ratios close to optimum provides a 32 % savings in power loss compared to another popular core shape. Further improvements in power loss could be achieved by using optimized core shapes. Improvements to software for shape-optimization of windings are described, including accounting for different turn lengths at different radii, the ability to select gaps in different core legs, and better approximations of three-dimensional field geometry.
机译:数值技术用于找到最小化绕组损耗的电感器核心尺寸比率。结果表明,即使在线绕组的形状优化,常见的核心形状也会导致显着的过度损耗。设计示例演示了该技术对选择核心的实际意义 - 与尺寸比的标准核心接近最佳,与另一个流行的核心形状相比,功率损耗节省32%。通过使用优化的核心形状可以实现功率损耗的进一步改进。描述了对绕组形状优化的软件的改进,包括在不同的半径下的不同转向长度,选择不同核腿中的间隙的能力,以及三维场几何形状的更好近似。

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