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Model Predictive Control of Seven-Level Single-Phase Boost Inverter without weighting factor for Grid-Tied Photovoltaic Applications

机译:并网光伏应用中无加权因子的七级单相升压逆变器的模型预测控制

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This paper presents a switched-capacitor integrated 7-level boost inverter for single-phase photovoltaic (PV) applications and its associated control scheme. It consists of three switched capacitors and eleven active switching elements. A boost converter at the front side helps to maintain the capacitor voltage balance during the operation modes. This topology does not require any control scheme to balance the switched capacitors at the DC-bus due to its inherent voltage balancing capability. Thus, it reduces the control complexity. The proposed structure has the capability to integrate low and varying voltage sources such as PV and consequently, reduces the number of components, required input voltage, and control complexity. Finite control set model predictive control (FCS-MPC) algorithm is used to control the proposed inverter. Thermal analysis of the proposed topology is presented for loss calculation of each power devices. Finally, detailed analysis followed by simulation and measurement results is presented at the end.
机译:本文介绍了一种用于单相光伏(PV)应用的开关电容器集成式7级升压逆变器及其相关的控制方案。它由三个开关电容器和十一个有源开关元件组成。正面的升压转换器有助于在工作模式期间保持电容器电压平衡。由于其固有的电压平衡能力,该拓扑不需要任何控制方案来平衡DC总线处的开关电容器。因此,它降低了控制复杂度。所提出的结构具有集成低压和变化电压源(例如PV)的能力,因此减少了组件数量,所需的输入电压和控制复杂性。有限控制集模型预测控制(FCS-MPC)算法用于控制所提出的逆变器。提出了建议拓扑的热分析,用于计算每个功率器件的损耗。最后,最后给出了详细的分析,然后给出了仿真和测量结果。

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