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New Hybrid Control Technique to Improve Light Load Efficiency while Meeting the Hold-up Time Requirement for Two-Stage Server Power

机译:新的混合控制技术,以提高光负荷效率,同时满足两阶段服务器电源的保持时间要求

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The main theme of this paper is to propose a new hybrid control technique to improve the light load efficiency and meet hold-up time requirement of the server power without additional sensors or auxiliary circuits. The server power consists of PFC and phase-shift full-bridge converter. The proposed hybrid control technique on-line controls the DC-link bus voltage of power factor corrector (PFC) to retain the maximum duty operation of phase-shift full-bridge converter. Therefore the efficiency under light load condition can be improved which is contributed by the reduction of circulating loss and switching losses of the converter. To meet the hold-up time requirement, the DC-link bus voltage is controlled to be its nominal value under heavy load conditions. The specifications of the server power supply include: AC input voltage = 110/220 V, DC output voltage = 12 V and output power = 480 W. Experimental results show that the efficiency can be improved up to 3% under light load conditions and meet the hold-up time requirement under whole load conditions. These results confirm the effectiveness of the proposed hybrid control technique.
机译:本文的主要主题是提出了一种新的混合控制技术,可以提高光负荷效率,并满足服务器电源的升降时间要求,而无需额外的传感器或辅助电路。服务器电源包括PFC和相移全桥转换器。所提出的混合控制技术在线控制功率因数校正器(PFC)的直流链路母线电压,以保持相移全桥转换器的最大占空比操作。因此,可以提高轻负载条件下的效率,这通过减小转换器的循环损耗和切换损耗来贡献。为了满足升降时间要求,将DC-Link母线电压控制为重载条件下的标称值。服务器电源的规格包括:交流输入电压= 110/220 V,直流输出电压= 12 V和输出功率= 480 W.实验结果表明,在轻负载条件下效率可提高3%,达到3%在整个负荷条件下的升降时间要求。这些结果证实了提出的混合控制技术的有效性。

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