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Optimization of electricity production in a grid-tied solar power system with a three-phase quasi-Z-source inverter

机译:三相准Z源逆变器的电网纹太阳能电力系统中电力生产优化

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摘要

Solar energy can be harnessed in all areas of the world and directly converted to electricity by means of photovoltaic (PV) systems. This leads to a reduced emission of greenhouse gases such as CO2. In this paper, a grid-tied quasi-Z-source inverter (qZSI) is considered with a PV array connected at the inverter input. The PV array is selected so as to ensure currents and voltages required by the qZSI. A novel maximum power point tracking (MPPT) algorithm, proposed in this study, does not require the measurement of the PV array current and does not oscillate around the maximum power point as opposed to most standard MPPT algorithms. The simulation model of the considered system was built in the MATLAB Simulink environment by using basic Simulink blocks only. The simulation analysis was performed with three PV array models of different complexity to establish the impact of the PV array dynamics on the overall system performance. The operation of the considered system was tested over a wide range of the solar irradiation levels and temperatures of the PV array. The proposed MPPT algorithm is additionally compared with the conventional constant-voltage algorithm, which also requires only measurement of the PV array output voltage. In the considered operating range, the proposed algorithm provides up to 453 W more power from the PV array (i.e., about 7% of the respective nominal power). (C) 2019 Elsevier Ltd. All rights reserved.
机译:可以在世界的所有区域利用太阳能,并通过光伏(PV)系统直接转换为电力。这导致降低的温室气体(如CO2)的排放。在本文中,使用连接在逆变器输入端的PV阵列进行网格连接的准Z源逆变器(QZSI)。选择光伏阵列以确保QZSI所需的电流和电压。本研究中提出的新型最大功率点跟踪(MPPT)算法不需要测量PV阵列电流,并且与大多数标准MPPT算法相反,不围绕最大功率点振荡。仅使用基本的Simulink块,在Matlab Simulink环境中构建了所考虑系统的仿真模型。使用三个PV阵列模型进行了不同复杂性的模拟分析,以确定PV阵列动力学对整体系统性能的影响。在广泛的太阳照射水平和PV阵列的温度上测试了所考虑的系统的操作。该提出的MPPT算法另外与传统的恒压算法进行比较,这也仅需要测量PV阵列输出电压。在考虑的操作范围内,所提出的算法从PV阵列(即,约7%的相应标称力量)提供高达453 W的功率。 (c)2019 Elsevier Ltd.保留所有权利。

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