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A new six-switch five-level boost-active neutral point clamped (5L-Boost-ANPC) inverter

机译:一个新的六开关五层升压 - 主动中性点钳位(5L-Boost-ANPC)逆变器

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Multilevel converters have seen an increasing popularity in the last decades, due to the increased power ratings, improved power quality, low switching losses, and reduced Electromagnetic Interference (EMI). Among them, the most popular ones are the Neutral Point Clamped (NPC) and the Flying Capacitor (FC) inverter topologies. Different derivatives of the NPC and FC are prevalent in the literature for various applications. However, the main drawback of the NPC and FC topologies is the high dc-link voltage, which has to be more than twice of the grid peak voltage for grid integration. Therefore, a front-end boost dc-dc converter is normally required before the inverter, which decreases the overall efficiency of the system. Single-stage dc-ac power converters with boost capabilities offer an interesting alternative compared to the two-stage approach. Considering this aspect, a novel 5-Level three-phase boost type inverter is introduced in this paper for general-purpose applications (e.g. rolling mills, fans, pumps, marine appliances, mining, tractions, and most prominently grid-connected renewable energy, etc.) which reduces the dc-link voltage requirement to half of the conventional 5-Level NPC, ANPC and 5-Level FC family. Whilst reducing the dc-link voltage requirement, the number of active and passive components are also reduced. The principle of operation and theoretical analysis supported by key simulation and experimental waveforms of a 1.5 kW prototype are presented to prove the concept of the proposed 5L-Boost-ANPC inverter.
机译:由于电力额定值增加,电力质量,低开关损耗和降低的电磁干扰(EMI),多级转换器在过去几十年中看到了越来越受欢迎。其中,最流行的是中性点钳位(NPC)和飞行电容器(FC)逆变器拓扑。 NPC和Fc的不同衍生物在文献中普遍存在各种应用中。然而,NPC和FC拓扑的主要缺点是高直流链路电压,它必须大于电网峰值电压的两倍以进行网格集成。因此,在逆变器之前通常需要前端升压DC-DC转换器,这降低了系统的整体效率。与两级方法相比,具有升压功能的单级DC-AC电源转换器提供了一个有趣的替代方案。考虑到这方面,一种新的5级三相升压型逆变器在本文中用于一般用途的应用引入(例如轧钢机,风扇,泵,海洋设备,采矿,牵引力,和最突出电网连接的可再生能源,等等)将DC-Link电压要求降低到传统的5级NPC,ANPC和5级FC系列的一半。虽然降低了直流链路电压要求,但也减少了主动和无源元件的数量。通过关键仿真和1.5 kW原型的关键仿真和实验波形支持的操作原理和理论分析,以证明提出的5L-Boost-Anpc逆变器的概念。

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