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Boost Current Multilevel Inverter and Its Application on Single-Phase Grid-Connected Photovoltaic Systems

机译:升压电流多电平逆变器及其在单相并网光伏系统中的应用

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This work presents a novel current multilevel (CML) inverter topology, named boost CML inverter, and its application on energy processing of single-phase grid-connected photovoltaic (PV) systems. The structure allows a high power factor operation of a PV system, injecting a quasi-sinusoidal current into the grid, with virtually no displacement in relation to the line voltage at the point of common coupling among the PV system and the loads. The major appeals of using the CML technique are the balanced current sharing among semiconductor switches and the decrease of the current slope in the circuit devices, with a consequent reduction of conducted and radiated electromagnetic interference (EMI). The CML technique also allows adapting or minimizing current waveforms harmonic content. System description, mathematical approach, and design guidelines are presented, providing an overview of the new topology. In order to validate the proposed concepts, experimental measurements, made in a small-scale laboratory prototype, are also presented. The obtained results evidence the feasibility of the application of this new topology on single-phase grid-connected PV systems.
机译:这项工作提出了一种新颖的电流多电平(CML)逆变器拓扑,称为升压CML逆变器,并将其应用于单相并网光伏(PV)系统的能量处理中。该结构允许PV系统以高功率因数运行,向电网中注入准正弦电流,而在PV系统与负载之间的公共耦合点上,相对于线路电压几乎没有位移。使用CML技术的主要吸引力在于半导体开关之间均衡的电流共享以及电路设备中电流斜率的减小,从而减少了传导和辐射的电磁干扰(EMI)。 CML技术还允许调整或最小化电流波形的谐波含量。介绍了系统描述,数学方法和设计指南,提供了新拓扑的概述。为了验证所提出的概念,还介绍了在小型实验室原型中进行的实验测量。获得的结果证明了这种新拓扑在单相并网光伏系统中应用的可行性。

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