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Energy-Balance Control of PV Cascaded Multilevel Grid-Connected Inverters Under Level-Shifted and Phase-Shifted PWMs

机译:电平和相移PWM下的光伏级联多级并网逆变器的能量平衡控制

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摘要

This paper presents an energy-balance control strategy for a cascaded single-phase grid-connected H-bridge multilevel inverter linking $n$ independent photovoltaic (PV) arrays to the grid. The control scheme is based on an energy-sampled data model of the PV system and enables the design of a voltage loop linear discrete controller for each array, ensuring the stability of the system for the whole range of PV array operating conditions. The control design is adapted to phase-shifted and level-shifted carrier pulsewidth modulations to share the control action among the cascade-connected bridges in order to concurrently synthesize a multilevel waveform and to keep each of the PV arrays at its maximum power operating point. Experimental results carried out on a seven-level inverter are included to validate the proposed approach.
机译:本文提出了一种级联单相并网H桥多电平逆变器的能量平衡控制策略,该逆变器将独立光伏(PV)阵列连接到电网。该控制方案基于光伏系统的能量采样数据模型,并且能够为每个阵列设计电压环路线性离散控制器,从而确保了整个光伏阵列工作条件范围内系统的稳定性。该控制设计适用于相移和电平移位的载波脉宽调制,以在级联的电桥之间共享控制动作,以便同时合成多电平波形并将每个PV阵列保持在其最大功率工作点。包括在七电平逆变器上进行的实验结果,以验证所提出的方法。

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