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An Optimized, 99 Efficient, 5 kW, Phase-Shift PWM DC-DC Converter for Data Centers and Telecom Applications

机译:用于数据中心和电信应用的优化,99%效率,5 kW,相移PWM DC-DC转换器

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The development of new power supply systems is increasingly focused on higher efficiency, while the power density should remain on a high level. This is especially true for data center and telecom application Power Supply Units (PSU). The commonly-used DC-DC converter in telecom and data center PSU's are full-bridge phase-shift PWM converter, which enables a high power and highly efficient conversion, compact design and simple control due to constant switching frequency. The component dimensioning of the converter system has many degrees of freedom, as the design parameters are interdependent from each other to some extend. An automatic optimization procedure based on comprehensive analytical models leads to the optimal design parameters, such as switching frequency and geometry of the magnetic components. In this paper, the development, optimization and design process for an efficiency-optimized 5 kW, 400 V to 48..54 V phase-shift PWM DC-DC converter with LC-output filter and synchronous rectification is presented. The proposed optimization algorithm, which considers the part-load-efficiency as well, results directly in the component values for the realized prototype. The design of the converter is explained in detail and measurement results are presented and discussed.
机译:新电源系统的开发越来越关注效率更高,而功率密度应保持高水平。对于数据中心和电信应用电源单元(PSU)尤其如此。电信和数据中心PSU中的常用DC-DC转换器是全桥相移PWM转换器,可实现高功率和高效的转换,由于恒定的开关频率而设计。转换器系统的组分尺寸具有多程度的自由度,因为设计参数彼此相互依存到一些延伸。基于综合分析模型的自动优化过程导致最佳设计参数,例如磁性元件的开关频率和几何形状。本文在效率优化的5千瓦,400V至48..54 V相移PWM DC-DC转换器的开发,优化和设计过程,具有LC输出滤波器和同步整流。所提出的优化算法,其考虑了部分负载效率,也可以直接在实现原型的组件值中实现。详细说明并讨论了转换器的设计,并讨论了测量结果。

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