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Performance of a Single-Stage Buck-Boost Inverter Fed from a Photovoltaic Source Under Different Meteorological Conditions

机译:在不同气象条件下从光伏源供给的单级降压逆变器的性能

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This paper describes the implementation and performance evaluation of a single-stage buck-boost inverter to extract the maximum power (MP) from a photovoltaic (PV) source under different meteorological conditions. The considered system reduces Power Electronic (PE) devices that are required for the maximum power point tracking and the DC/AC inverting stages to only four switches. A Maximum Power Point Tracker (MPPT) is designed, based on the particle swarm optimization (PSO), to enable the system operation at the Global Maximum Power Point (GMPP), which avoids the local MPPs that exist during partial shading. The PSO algorithm generates a signal proportional to the MPP and inputted to the single-stage buck-boost inverter via a control circuit that generates the four shifted pulses required to operate the four PE switches. A DSP-based PV laboratory model is built to assess the single-stage inverter experimentally. The PSO-based MPPT algorithm is implemented on-line to extract the maximum power and produces a sinusoidal AC output during non-uniform solar irradiation and the results are presented, illustrating successful operation of the single-stage buck-boost to track the MPP under partial shading and sever fluctuations in solar irradiation.
机译:本文介绍了单级降压逆变器的实施和性能评估,以在不同气象条件下从光伏(PV)源中提取最大功率(MP)。所考虑的系统减少了最大功率点跟踪所需的电力电子(PE)设备,以及仅为四个开关的DC / AC反相级。基于粒子群优化(PSO)设计了最大功率点跟踪器(MPPT),以使系统操作在全局最大功率点(GMPP)处,该系统运行避免了部分着色期间存在的本地MPP。 PSO算法通过控制电路产生与MPP成比例的信号,并通过控制电路输入单级降压逆变器,该控制电路产生操作四个PE交换机所需的四个移位脉冲。基于DSP的PV实验室模型是为了通过实验评估单级逆变器。基于PSO的MPPT算法在线实现以提取最大功率,并在非均匀的太阳辐射期间产生正弦AC输出,并且提出了结果,说明了单级降压 - 升压的成功操作以跟踪MPP下的太阳照射中的部分遮阳和切割波动。

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