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Energy efficiency of the PV panels using a MPPT controller with improved search speed: Part I: Modeling of the PV power system under extremum seeking control

机译:使用具有改进的搜索速度的MPPT控制器的光伏面板的能源效率:第一部分:极值搜索控制下的光伏发电系统建模

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In first part of this paper the Maximum Power Point Tracking (MPPT) technique for photovoltaic (PV) panels based on Extremum Seeking Control (ESC) scheme is analyzed. It is important to know how much energy can be harvested from a PV that uses a MPPT controller. In this paper, the ESC schemes are analyzed in the frequency domain. The modified ESC (mESC) and high-order ESC (hoESC) schemes are considered in this study. The mESC scheme is based on a band pass filter (BPF), while the hoESC scheme is based on a series connection of the high pass (HP) and the low pass (LP) filters. Because the BPF topology may be represented as an equivalent series combination of the HP and LP filters, the equivalence of these topologies is shown for the same cut-off frequencies used. The simulations performed shows that the mentioned equivalence is effective. Also, the design condition to obtain the highest value of the search speed for the mESC scheme is shown when the HP cut-off frequency is known.
机译:在本文的第一部分中,分析了基于极值搜索控制(ESC)方案的光伏(PV)面板的最大功率点跟踪(MPPT)技术。重要的是要知道使用MPPT控制器的PV可以收集多少能量。本文在频域上分析了ESC方案。这项研究考虑了改进的ESC(mESC)和高阶ESC(hoESC)方案。 mESC方案基于带通滤波器(BPF),而hoESC方案基于高通(HP)和低通(LP)滤波器的串联连接。因为BPF拓扑可以表示为HP和LP滤波器的等效串联组合,所以对于使用的相同截止频率,显示了这些拓扑的等效性。进行的仿真表明,上述等效是有效的。此外,当知道HP截止频率时,将显示为mESC方案获得最高搜索速度值的设计条件。

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