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首页> 外文期刊>Power Electronics, IET >Optimal peak flux density model (OPFDM) for non-iterative design of high-frequency gapped transformer (HFGT) in LLC resonant converters
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Optimal peak flux density model (OPFDM) for non-iterative design of high-frequency gapped transformer (HFGT) in LLC resonant converters

机译:LLC谐振转换器中高频拆除变压器(HFGT)非迭代设计的最优峰值磁峰密度模型(OPFDM)

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摘要

In LLC resonant converters, litz-wire high-frequency gapped transformer (HFGT) is one of the most critical components, responsible for efficient operation. However, it is also a major contributor to overall weight and volume. Therefore, designers perform multi-objective optimisation for minimising its losses and size, which is itself complex and cumbersome. This usually requires many iterations because the losses vary non-linearly with the decrease in size. The selection of initial-setup parameter (ISP) values, plays a vital role in overall performance improvement of the optimisation. The closer the ISPs to optimal values, the smaller are the iterations required for convergence. Therefore, this study proposes an optimal peak flux density model (OPFDM), considering the voltage excitation waveform, duty cycle, core material parameters, and the response of litz-wire to high-frequency. The aim is to obtain an optimised HFGT design through a non-iterative approach by directly estimating optimal values of ISPs through OPFDM. The designed HFGT results in minimised losses and size, while keeping the thermal constraints within limits. Moreover, the impact of frequency and duty cycle on OPFDM is also presented. The proposed model is implemented to design HFGT for 380 VDC/12 VDC LLC converter. Comparison-based analytical, finite-elements method and experimental results validate the model.
机译:在LLC谐振转换器中,LITZ-Wire高频拆除变压器(HFGT)是最关键的组件之一,负责有效的操作。然而,它也是总重量和体积的主要贡献者。因此,设计人员执行多目标优化,以最小化其损失和尺寸,这本身就是复杂和繁琐的。这通常需要许多迭代,因为损失随着尺寸的减小而变化不变。选择初始设置参数(ISP)值,在优化的整体性能提高方面发挥着重要作用。 ISP越靠近最佳值,收敛需要越小的迭代是迭代。因此,本研究提出了最佳峰值磁通密度模型(OPFDM),考虑到电压激励波形,占空比,芯材参数和LITZ线对高频率的响应。目的是通过直接通过OPFDM直接估计ISP的最佳值来获得优化的HFGT设计。设计的HFGT导致最小化的损耗和尺寸,同时保持在限制范围内的热约束。此外,还提出了频率和占空比对OPFDM的影响。所提出的模型用于设计HFGT,适用于380 VDC / 12 VDC LLC转换器。基于比较的分析,有限元方法和实验结果验证了模型。

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  • 来源
    《Power Electronics, IET》 |2020年第5期|942-952|共11页
  • 作者

    Ahmed Daniyal; Wang Li;

  • 作者单位

    Nanjing Univ Aeronaut & Astronaut Ctr More Elect Aircraft Power Syst Nanjing 211100 Peoples R China;

    Nanjing Univ Aeronaut & Astronaut Ctr More Elect Aircraft Power Syst Nanjing 211100 Peoples R China;

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  • 正文语种 eng
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