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Leakage current suppression for transformerless inverter for grid connected PV power systems

机译:并网光伏发电系统无变压器逆变器的漏电流抑制

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Due to the driving worldwide environmental demand for the renewable energy resources the photovoltaic power market in the recent years experiences certain amount of the innovations regarding the construction and the operation of the inverter connected to the grid. One such significant development, is that the abolition of the galvanic isolation due to the absence of the transformer which causes safety threats in the event of ground faults. This results in the development of the transformerless CSI inverter which experiences reduced cost, higher efficiency, smaller size and weight. But the use of the CSI injects high earth leakage current into the grid the leakage current generated between the PV panels and the ground. In order to overcome the aforementioned limitations, this paper deals with the effective solution to anticipate the CM ground leakage current using the transformerless Modified Current Source Inverter (MCSI) for grid connected photovoltaic power system. Bssy the use of Maximum Power Point Tracking(MPPT) control technique and SEPIC converter desired output from PV to the inverter is achieved. This advance topology can be modulated using Space Vector Pulse Width Modulation (SVPWM) to produce the reduced output ripple. The experimental results show the performance of the proposed solution in terms of ground leakage current reduction and the experimental studies are analyzed using MATLAB simulation.
机译:由于全球对可再生能源的环境需求不断增长,近年来,光伏电力市场在有关连接到电网的逆变器的构造和运行方面经历了一定量的创新。其中一项重大进展是,由于没有变压器,取消了电流隔离,这在发生接地故障时会造成安全威胁。这导致了无变压器CSI逆变器的发展,该逆变器的成本降低,效率更高,尺寸和重量更小。但是,CSI的使用将大的漏电电流注入到电网中,从而在PV面板和地面之间产生漏电电流。为了克服上述局限性,本文针对采用并网光伏发电系统的无变压器修改电流源逆变器(MCSI)来预测CM接地漏电流的有效解决方案。基本实现了使用最大功率点跟踪(MPPT)控制技术和SEPIC转换器从PV到逆变器的所需输出。可以使用空间矢量脉冲宽度调制(SVPWM)来调制此高级拓扑,以减少输出纹波。实验结果表明,该解决方案在降低接地漏电流方面具有良好的性能,并使用MATLAB仿真对实验研究进行了分析。

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