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Multilevel DC-link converter photovoltaic system with modified PSO based on maximum power point tracking

机译:基于最大功率点跟踪的具有改进PSO的多级DC-LINK转换器光伏系统

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The paper presents a modified particle swarm optimization (MPSO) control strategy for the maximum power point tracking applied to a multilevel DC-link PV power generation system. This system consists of a chain of PV modules with individual DC-DC converters and has a DC-AC converter at its terminals for generating AC voltage. The proposed MPSO control method can predict all PV voltages at their maximum power point on the basis of respective light level and temperature. A PWM with permutation of DC converter switching is applied to balance switch utilisation. The method is applied to a system of five-voltage levels with two PV-converter units under different light intensities and the results are compared with the perturb and observe (P&O) method and the traditional PSO method under the same operating conditions. The paper shows that the new method gives more rapid convergence, increased power output, and lower total harmonic distortion. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本文提出了一种改进的粒子群优化(MPSO)控制策略,用于将最大功率点跟踪应用于多级DC-link光伏发电系统。该系统由一串PV模块组成,这些PV模块带有单独的DC-DC转换器,并且在其端子处具有一个DC-AC转换器以产生AC电压。所提出的MPSO控制方法可以根据各自的光照水平和温度来预测所有PV电压在其最大功率点。带有直流转换器开关排列的PWM应用于平衡开关的使用。将该方法应用于具有两个PV转换器单元的五电压电平的系统,该系统在不同的光强度下进行了比较,并将结果与​​在相同工作条件下的扰动观察(P&O)方法和传统PSO方法进行了比较。本文表明,该新方法可提供更快的收敛速度,增加的功率输出和更低的总谐波失真。 (C)2017 Elsevier Ltd.保留所有权利。

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