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A ZVS imbricated cell multilevel inverter with auxiliary resonant commutated poles

机译:具有辅助谐振换向极的ZVS混合单元多电平逆变器

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The imbricated-cell multilevel converter is well suited to high power applications. It allows the series connection of n switches with natural voltage sharing between these switches enabled through the connection of n-1 flying capacitors. This paper deals with the application of soft-switching on this topology; to date, only the hard-switching mode has been studied. The use of soft switching enables an increase of the switching frequency (resulting in the size reduction of the flying capacitors) without a decrease of the converter efficiency. Of the soft switching methods considered, the Auxiliary Resonant Commutated Pole (ARCP) technique was chosen due to the relative ease in which it can be incorporated into the converter topology. Furthermore, this technique offers numerous advantages: loss reduction, no added stress to the switches and compatibility with PWM control. The main properties of the ARCP multicell converter are the same as the hard-switched topology: an increase of the apparent output switching frequency and natural self-balancing of the flying-capacitor voltages. This paper presents the results of both simulations performed and measurements taken from an experimental set-up in order to study the viable system functioning. The introduction of soft-switching strongly complicates the theoretical study of the balancing mechanisms, however. As a result, the authors depend on simulations to validate the natural balancing effect during soft switching. Lastly, a general method of loss measurement is presented. Results show that the converter losses are reduced by at least 30%.
机译:嵌入式单元多电平转换器非常适合大功率应用。它允许串联n个开关,并通过连接n-1个飞跨电容器来使这些开关之间具有自然的电压共享。本文讨论了软交换在该拓扑上的应用。迄今为止,仅研究了硬切换模式。使用软开关可以增加开关频率(导致快速电容器的尺寸减小),而不会降低转换器效率。在考虑的软开关方法中,选择辅助谐振换向极点(ARCP)技术是因为它可以相对容易地集成到转换器拓扑中。此外,该技术还具有许多优点:减少损耗,不给开关增加压力以及与PWM控制的兼容性。 ARCP多单元转换器的主要特性与硬开关拓扑相同:视在输出开关频率的增加和飞电容电压的自然自平衡。本文介绍了从实验装置进行的仿真和测量结果,以研究可行的系统功能。但是,软开关的引入使平衡机制的理论研究变得非常复杂。结果,作者依靠仿真来验证软切换期间的自然平衡效果。最后,提出了一种一般的损耗测量方法。结果表明,转换器损耗至少降低了30%。

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