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Design, Analysis and Simulation of Magnetic Biased Inductors with Saturation-Gap

机译:具有饱和间隙的磁偏置电感器的设计,分析与仿真

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摘要

Permanent magnet biasing, is a known technique for increasing the energy storage capability of inductors operating in DC applications. The opposing flux introduced by a permanent magnet will extend the saturation flux limit of a given magnetic material. When full biasing of the core is achieved, the effective saturation current limit of a given inductor is doubled. This results in a smaller requirement in number of turns and area cross-section, allowing for smaller and/or more efficient inductors. By adding some switching elements, the benefits of biased inductors can also be used in AC applications. This paper presents a review of the scientific literature on biased hybrid inductors and the evolution of the used magnets and cores configurations. A recently developed biasing configuration, the saturation-gap, will also be analyzed and the design parameter will be identified using finite element software. The simulation results will be compared with empirical laboratory measurements on physical units.
机译:永磁偏置是用于增加在直流应用中工作的电感器的能量存储能力的已知技术。由永磁体引入的相反磁通将扩展给定磁性材料的饱和磁通极限。当磁芯完全偏置时,给定电感器的有效饱和电流极限将增加一倍。这导致对匝数和面积横截面的要求较小,从而允许使用更小和/或更有效的电感器。通过添加一些开关元件,偏置电感器的优势也可以用于交流应用中。本文介绍了有关偏置混合电感器以及所用磁体和铁芯配置的演变的科学文献。还将分析最近开发的偏置配置(饱和间隙),并使用有限元软件识别设计参数。仿真结果将与物理单位的经验实验室测量结果进行比较。

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