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Total volume evaluation of high-power density non-isolated DC–DC converters with integrated magnetics for electric vehicles

机译:电动汽车集成磁性的高功率密度非隔离式DC-DC转换器的总体积评估

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摘要

One of the main problems in electric vehicles is the volume of their electrical systems because their bulky components carry additional mass and high cost to the total system. On this topic, interleaving-phases and magnetic coupling techniques have been reported as effective methods for increasing the power density of the DC-DC converters that work between the storage unit and the motor inverter. In that sense, a volume assessment of these topologies would provide a better understanding of the problems to be faced when an electric power train is designed. In this paper, a volume modelling methodology is introduced with the purpose of comparing four different DC-DC converters: Single-Phase Boost, Two-Phase Interleaved with non-coupled inductors, Loosely Coupled Inductor (LCI), and Integrated Winding Coupled Inductor (IWCI). The analysis considers the volume of magnetic components, power devices (conventional and next-generation), cooling devices and capacitors. The methodology can be used as a part of an optimization procedure to minimize the volume of DC-DC converters. Conclusively, LCI and IWCI were found effective to miniaturize power converters with a power density of 8.4 W/cc and 9.66 W/cc, respectively. Moreover, a maximum efficiency of 98.04% and 97.61% was obtained for a 1kW LCI and IWCI prototypes, respectively.
机译:电动车辆的主要问题之一是其电气系统的体积,因为其笨重的组件给整个系统带来了额外的质量和高成本。关于这一主题,据报道,交错相和磁耦合技术是提高在存储单元和电动机逆变器之间工作的DC-DC转换器的功率密度的有效方法。从这种意义上讲,对这些拓扑的体积评估将提供对设计动力传动系时要面对的问题的更好理解。本文介绍了一种体积建模方法,旨在比较四种不同的DC-DC转换器:单相升压,两相与非耦合电感器交错,松耦合电感器(LCI)和集成绕组耦合电感器( IWCI)。该分析考虑了磁性元件,功率设备(常规和下一代),冷却设备和电容器的体积。该方法可以用作优化程序的一部分,以最小化DC-DC转换器的体积。最终,发现LCI和IWCI可以有效地分别使功率密度为8.4 W / cc和9.66 W / cc的功率转换器小型化。此外,对于1kW LCI和IWCI原型,最高效率分别为98.04%和97.61%。

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