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Enhanced-DAB Converter: Comprehensive Design Evaluation

机译:增强型DAB转换器:全面的设计评估

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Soft switching in dual-active-bridge (DAB) converters enables their efficient operation at high frequencies, where the reduction in the size of magnetic components could result in ultra-high power densities. Nonetheless, losing soft-switching at high frequencies results in severe efficiency degradations along with excessive thermal and electrical stresses on the transistors. In a previous work, we have presented an enhanced-DAB (E-DAB) topology along with an adjustable-tap high-frequency transformer to extend soft switching over wider voltage gains. The E-DAB achieved a peak efficiency of 97.4% without any complex modulation techniques, enabling a power density of 10 kW/l (or 164 W/inch3) at 300 kHz. Here, we compare two different transformer geometries for their leakage inductance, quality factor and compatibility with the E-DAB. A theoretical gain-versus-power soft-switching characteristic for the E-DAB is verified by measurements of switching transients and amplitude spectrum analysis. The magnetic flux density and its distribution in the transformer core is analyzed using a finite-element analysis (FEA) method and the on-load operation of electromagnetic tap changers is presented. E-DAB converters are of great importance to renewable energy harvesting, Li-ion battery chargers, future dc distribution systems and smart grids due to their high efficiency, high power density and superior controllability.
机译:双极桥(DAB)转换器中的软切换使其在高频下的高效操作,其中磁性部件尺寸的减小可能导致超高功率密度。尽管如此,在高频时失去软切换导致严重的效率降低以及晶体管上的热量和电应力过多。在以前的工作中,我们介绍了增强型DAB(E-DAB)拓扑以及可调敲击高频变压器,以扩展更宽电压的软切换。 E-DAB在没有任何复杂的调制技术的情况下实现了97.4%的峰值效率,从而使功率密度为10 kW / L(或164个/英寸 3 )在300 kHz。在这里,我们比较两种不同的变压器几何形状,以实现它们的泄漏电感,质量因子和与E-DAB的兼容性。通过切换瞬变和幅度频谱分析来验证E-DAB的理论增益与电动开关特性。使用有限元分析(FEA)方法分析变压器芯中的磁通密度及其分布,并提出了电磁抽头器的负载操作。由于其高效率,高功率密度和卓越的可控性,E-DAB转换器对可再生能源收集,锂离子电池充电器,未来直流配电系统和智能电网具有重要意义。

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