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A nine-switch inverter with reduced leakage current for PV grid-tied systems using model-free predictive current control

机译:采用无模型预测电流控制的光伏并网系统具有降低漏电流的九开关逆变器

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摘要

To address the leakage current problem of transformerless three-phase inverters for photovoltaic (PV) grid-tied systems, H8 and improved H8 inverters were proposed to alleviate the leakage current of the PV grid-tied systems to a certain extent. However, these inverters cannot avoid the high-frequency switching of the generated common mode voltages (CMVs) among multiple levels, resulting in the unsatisfactory effect of the leakage current suppression of these inverter topologies. In order to solve these problems, an auxiliary power supply based nine-switch (AP-H9) inverter with reduced leakage current is proposed in this paper. A DC auxiliary circuit containing a switch is added to the inverter based on the H8 inverter, and one or more diodes are connected in reverse parallel with other corresponding switches to form the H9 inverter topology. By properly controlling the nine switches and using the reverse diodes to divide the DC voltage , the CMV of the system is limited to 2/3 times of the DC voltage, which can effectively suppress the leakage current of the PV grid-tied system. In addition, a model-free predictive current control (MFPCC) method based on ultra-local model is presented to eliminate the dependence of inverter control performance on system parameters. This method uses the voltage and current information of the previous two moments to realize the online update of the gain and dynamic part of the ultra-local model, and then obtain the predicted voltage vector for the next moment. Moreover, the switching loss optimization constraint is considered in the cost function to further improve the efficiency of the inverter. Finally, an experimental prototype is developed. The simulation and experimental results show that the proposed inverter and its control method can effectively suppress the leakage current of PV grid-tied system, and are insensitive to parameter changes.
机译:针对光伏并网系统无变压器三相逆变器的漏电流问题,提出了H8和改进型H8逆变器,以在一定程度上缓解光伏并网系统的漏电流。然而,这些逆变器无法避免产生的共模电压(CMV)在多电平之间的高频切换,导致这些逆变器拓扑结构的漏电流抑制效果不理想。为了解决这些问题,该文提出一种基于辅助电源的九开关(AP-H9)逆变器,降低漏电流。在基于H8逆变器的逆变器中增加一个包含开关的直流辅助电路,一个或多个二极管与其他相应的开关反向并联,形成H9逆变器拓扑结构。通过正确控制九个开关,使用反向二极管分压直流电压,将系统的CMV限制在直流电压的2/3倍,可以有效抑制光伏并网系统的漏电流。此外,该文还提出了一种基于超局部模型的无模型预测电流控制(MFPCC)方法,以消除逆变器控制性能对系统参数的依赖性。该方法利用前两时刻的电压和电流信息,实现超局部模型增益和动态部分的在线更新,进而得到下一时刻的预测电压矢量。此外,在成本函数中考虑了开关损耗优化约束,以进一步提高逆变器的效率。最后,开发了一个实验原型。仿真和实验结果表明,所提逆变器及其控制方法能够有效抑制光伏并网系统的漏电流,且对参数变化不敏感。

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