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Digital implementation of optimal SR ON-time control and asymmetric duty control in LLC resonant converter

机译:LLC谐振转换器中最佳SR导通时间控制和非对称占空比控制的数字实现

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In this paper, a half-bridge (HB) LLC resonant converter which has been used for server power supply, is controlled by digital controller. In order to increase the entire load efficiency of HB LLC converter, a synchronous rectifier (SR) should has a robust control at any condition such as PFC noise or the lack of current sensing. For these reason, digital controller with LLC SR control is preferred in server power supply market. In this paper, the optimal SR ON-time control which operates as a constant ON-time at below region, and the same ON-time of primary switch at above region, is implemented. However, the problems of optimal SR ON-time control still exist. Because of senseless operation, when the ON-time of SR is larger than the half period of LLC resonant tank, the current of converter flows reversely and it will make the big surge current which damage to active devices. From this result, the ON-time of SR should be shorter than the half period of LLC resonant tank. Moreover, in the case of current unbalance in center-tapped rectifier, the conducting time of rectifiers is different due to the parasitic components. Since the powering periods of two SR are different, the SR ON-time of HB LLC resonant converter should be determined by minimum conducting time of rectifiers. This result causes a large conduction loss of body diodes which makes the low efficiency or the reliability problem of LLC resonant converter. Therefore, HB LLC resonant converter with optimal SR ON-time control is implemented and the asymmetric duty control is proposed in this paper, which solves the current unbalance problem in center-tapped rectifier. Therefore, the LLC resonant converter which has wide input variation, can achieve the high efficiency with optimal SR ON-time control and eliminate the current unbalance problem with asymmetric duty control.
机译:在本文中,用于服务器电源的半桥(HB)LLC谐振转换器由数字控制器控制。为了提高HB LLC转换器的整体负载效率,同步整流器(SR)在任何情况下(例如PFC噪声或缺少电流感应)都应具有强大的控制能力。由于这些原因,具有LLC SR控制的数字控制器是服务器电源市场中的首选。在本文中,实现了最佳SR接通时间控制,该控制在下部区域以恒定的接通时间运行,而在上部区域以相同的方式接通一次开关。然而,最佳SR导通时间控制的问题仍然存在。由于无意义的操作,当SR的导通时间大于LLC谐振回路的半个周期时,转换器的电流反向流动,会产生较大的浪涌电流,从而损坏有源器件。根据此结果,SR的接通时间应短于LLC谐振回路的半个周期。而且,在中心抽头整流器中电流不平衡的情况下,由于寄生元件,整流器的导通时间不同。由于两个SR的供电时间不同,因此HB LLC谐振转换器的SR导通时间应由整流器的最短导通时间决定。该结果导致体二极管的大的传导损耗,这导致LLC谐振转换器的低效率或可靠性问题。因此,本文实现了具有最佳SR导通时间控制的HB LLC谐振变换器,并提出了非对称占空比控制,解决了中心抽头整流器的电流不平衡问题。因此,具有宽输入范围的LLC谐振转换器,可以通过最佳的SR导通时间控制来实现高效率,并通过不对称的占空比控制来消除电流不平衡问题。

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