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Stability Analysis and Optimal Design for Virtual Impedance of 48 V Server Power System for Data Center Applications

机译:数据中心应用48 V服务器电力系统虚拟阻抗的稳定性分析和最优设计

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摘要

In the past literature on virtual impedance to series systems, most of the discussion focused on stability without in-depth research on the system design of the series converter and the overall output impedance. Accordingly, this study takes an open-loop resonant LLC converter series-connected closed-loop Buck converter as an example. First, the conditions required for the direct connection of the small-signal model in the series, the effect of feedback compensation on the input impedance of the load stage, the operating frequency, and passive components of the two-stage converter are discussed in detail―the relationship between the matching and the output impedance. Afterwards, a mathematical model is used to discuss the effect of adding parallel virtual impedance on the output impedance of the overall series converter and then derive an optimized virtual impedance design. Finally, an experimental platform of 48 V to 12 V and maximum wattage of 96 W are implemented. The output impedance of the series converter is measured with an impedance analyzer to verify the theoretical analysis proposed in this paper.
机译:在过去的虚拟阻抗到串联系统的文献中,大多数讨论都专注于稳定性,无需深入研究系列转换器的系统设计和整体输出阻抗。因此,本研究采用开环谐振LLC转换器串联连接的闭环降压转换器作为示例。首先,在系列中直接连接小信号模型所需的条件,反馈补偿对负载级的输入阻抗的影响,进行了两级转换器的运行频率和无源元件的效果 - 匹配与输出阻抗之间的关系。之后,使用数学模型来讨论在整个串联转换器的输出阻抗上添加并行虚拟阻抗的效果,然后导出优化的虚拟阻抗设计。最后,实施了48 V至12V的实验平台,最大的瓦数为96W。通过阻抗分析器测量串联转换器的输出阻抗,以验证本文提出的理论分析。

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