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Control of asymmetrical cascaded multilevel inverter for a grid-connected photovoltaic system

机译:光伏并网系统中非对称级联多电平逆变器的控制

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摘要

This article presents a generalised asymmetrical cascaded multilevel inverter (MLI) for a single-phase grid-connected photovoltaic (PV) system and their control strategy. The control strategy, including maximum power tracking along with a suitable interface, is implemented for maximum power transfer from the PV source to the single-phase low-power grid. The balancing of DC-link voltages for an asymmetrical MLI under variable solar parameters as well as grid parameter variation is implemented using the proposed control strategy. The voltage controllers maintain the constant DC-link voltage ratio, whereas the current controller injects the sinusoidal current into the grid at unity power factor and track the grid voltage under variation of grid voltage using grid tracker. Stability analysis of the proposed grid-connected asymmetrical inverter system is also incorporated. The whole grid-tied PV system is simulated in the MATLAB/SIMULINK environment and the exhaustive simulation results of the system under different transient conditions are presented. In addition, a laboratory prototype for a low-power grid-tied PV system has been developed and implemented using DS1103. The performance of the system is also tested at varying irradiance conditions and the corresponding experimental results are also presented.
机译:本文提出了一种用于单相并网光伏(PV)系统的广义不对称级联多电平逆变器(MLI)及其控制策略。实施了包括最大功率跟踪以及合适接口的控制策略,以实现从PV电源到单相低功率电网的最大功率传输。使用所提出的控制策略,实现了太阳能参数可变以及电网参数变化下非对称MLI的直流母线电压平衡。电压控制器保持恒定的直流母线电压比,而电流控制器以单位功率因数向电网注入正弦电流,并使用电网跟踪器在电网电压变化的情况下跟踪电网电压。还结合了提出的并网非对称逆变器系统的稳定性分析。在MATLAB / SIMULINK环境中对整个并网光伏系统进行了仿真,并给出了在不同瞬态条件下系统的详尽的仿真结果。此外,使用DS1103开发并实施了用于低功率并网光伏系统的实验室原型。还在不同的辐照条件下测试了系统的性能,并给出了相应的实验结果。

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