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Discontinuous Modulation Scheme for a Differential-Mode Ćuk Inverter

机译:差模交流变换器的不连续调制方案

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The differential-mode Ćuk inverter (DMCI) is a single-stage inverter with low device count. It offers advantages over other topologies because of compactness, higher power density, and reduced cost. It is a promising topological configuration for renewable-/alternative-energy applications with isolated as well as nonisolated structures. The continuous modulation scheme (CMS), which was introduced originally for this inverter, activates all the modules of the DMCI. The new discontinuous modulation scheme (DMS) deactivates one module in each half line-cycle leading to discontinuous operation of modules. This paper outlines the DMS and a mechanism to realize it. The experimental open-loop and closed-loop results of the DMCI using CMS and DMS are provided along with a comparison of their performances. It is shown that, the DMS reduces the circulating power and hence mitigates the losses. The voltage ratings of the devices also are reduced with the DMS. In contrast, the CMS has wider linearity in its normalized dc-voltage gain and yields reduced harmonic distortion of the output voltage. For DMS, to achieve comparable linearity in normalized dc-voltage gain and distortion, harmonic compensation under closed-loop control is a pathway that has been demonstrated.
机译:差模交流逆变器(DMCI)是器件数量少的单级逆变器。由于其紧凑性,更高的功率密度和降低的成本,它比其他拓扑结构具有优势。对于具有隔离结构和非隔离结构的可再生/替代能源应用来说,这是一种很有前途的拓扑配置。最初为该逆变器引入的连续调制方案(CMS)激活DMCI的所有模块。新的不连续调制方案(DMS)在每个半线周期中都会停用一个模块,从而导致模块不连​​续运行。本文概述了DMS及其实现的机制。提供了使用CMS和DMS进行DMCI实验的开环和闭环结果,并比较了它们的性能。结果表明,DMS降低了循环功率,从而减轻了损耗。使用DMS还可降低设备的额定电压。相比之下,CMS在归一化的直流电压增益中具有更宽的线性度,并降低了输出电压的谐波失真。对于DMS,要在归一化的直流电压增益和失真方面实现可比的线性,闭环控制下的谐波补偿是一种已被证明的途径。

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