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A multifunction series inductive AC-link universal power converter with reduced-switch count

机译:具有减少开关计数的多功能系列电感交流链路通用电源转换器

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This paper proposes a new family of series inductive ac-link universal power converter with a lower number of switches compared to other series inductive ac-link universal converters. The number of switches in the proposed three-phase ac-ac configuration is reduced to 18; whereas, the original series inductive ac-link converter requires 24 switches. In this converter, the power is transferred from input to output entirely or partially through a small link inductor. A small capacitor that is placed in parallel with this inductor allows all the switches to benefit from zero-voltage switching (ZVS), which results in significant reduction of switching losses, stresses over the active switches, and electromagnetic interference (EMI). The converter structure enables an input voltage to be stepped up or down, and provides unidirectional power flow. This converter, in which the input and output can be dc, single-phase ac, or multi-phase ac, is capable of functioning in buck, boost, and buck-boost modes of operation. A combination of these operation modes is also feasible. Operating the converter in buck or boost functions leads to substantially decreased inductor link peak current, stress of the switches, and total power-loss compared to other inductive-link universal power converters. Galvanic isolation in the proposed converter can be provided by means of a compact lightweight single-phase high-frequency (HF) transformer connected to the link instead of a low-frequency transformer, which is a prominent contributor to size and weight of a conventional isolated converter. In view of these advantages, the proposed configuration offers improved efficiency, increased power-density, high reliability, reduced total cost, and wide range of operation in terms of input voltage. In this paper, the detailed behavior of the proposed converter is investigated, and performance of the converter is evaluated at various operating points through simulation and experimental results.
机译:本文提出了一个新的串联电感AC-LINK通用电源转换器,与其他系列电感AC链路通用转换器相比,开关数量较少。所提出的三相AC-AC配置中的开关数量减少到18;鉴于原始系列电感AC-Link转换器需要24个开关。在该转换器中,电力从输入转移到完全或部分通过小链路电感器输出。与该电感器并联放置的小电容器允许所有开关受益于零电压切换(ZVS),这导致切换损耗的显着降低,在有源开关上应力,以及电磁干扰(EMI)。转换器结构使输入电压能够上升或向下升压,并提供单向功率流。该转换器,其中输入和输出可以是DC,单相AC或多相AC,能够在降压,升压和降压 - 升压操作模式下运行。这些操作模式的组合也是可行的。在降压或升压功能中操作转换器导致电感器链路电流大大降低,与其他电感连杆通用电源转换器相比的电感线峰值电流,应力和总电力损耗。所提出的转换器中的电流隔离可以通过紧凑的轻质单相高频(HF)变压器提供连接到链路而不是低频变压器,这是常规孤立的尺寸和重量的突出贡献者转换器。鉴于这些优点,所提出的配置提供了提高的效率,增加功率密度,高可靠性,降低总成本,以及在输入电压方面的宽范围。在本文中,研究了所提出的转换器的详细行为,并通过模拟和实验结果在各种操作点评估转换器的性能。

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