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A Novel PV Array Reconfiguration Algorithm Approach to Optimising Power Generation across Non-Uniformly Aged PV Arrays by Merely Repositioning

机译:一种新颖的PV阵列重新配置算法通过仅重新定位优化非均匀老化PV阵列的发电

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摘要

Photovoltaic (PV) module working conditions lack consistency and PV array power outputs fluctuate due to the non-uniform impact that aging has on various PV modules in a PV array. No assessment has been conducted on the energy potential of a non-uniform PV array, despite the fact that the maximum power point (MPP) can be tracked by global maximum power point tracking (GMPPT). Therefore, the present work undertakes such an assessment by devising an algorithm to optimise the PV array electrical structure as the PV modules undergo aging in a non-uniform way. To enable PV arrays with non-uniform aging to produce as much power as possible and to make maintenance more cost-effective, the work puts forward a novel approach for reconfiguring PV arrays, where the PV modules are repositioned by retaining the aged PV modules. By this approach, the selection of the best reconfiguration topology necessitates the information on the electrical parameters associated with the PV modules in an array. Furthermore, the non-uniform aging of the PV modules can engender an incompatibility effect, which can be diminished in the proposed algorithm through iterative sorting of the modules in a hierarchical pattern. To determine how effective the method is for PV arrays with non-uniform aging and of different sizes, such as 3 × 4, 5 × 8 and 7 × 8 arrays, computer simulation and analysis have been conducted, with findings indicating that, irrespective of dimensions, PV arrays with non-uniform aging can have improved power yield.
机译:光伏(PV)模块的工作条件缺乏一致性和PV阵列功率输出到不均匀的影响衰老对PV阵列中各个PV模块波动所致。没有评估对非均匀光伏阵列的能源潜力尽管最大功率点(MPP)可以通过全局最大功率点跟踪(GMPPT)被跟踪已进行。因此,目前的工作中通过设计的算法作为PV模块经历以非均匀的方式老化以优化PV阵列电气结构承担这样的评估。以实现与非均匀老化以产生尽可能多的功率尽可能PV阵列和使维修更加具有成本效益,工作提出了一种新的方法用于重新配置光伏阵列,其中所述光伏模块由保持老年人PV模块重新定位。通过该方法,最好重配置拓扑的选择必要与在阵列中PV模块相关联的电气参数的信息。此外,不均匀的老化PV模块的可以产生的不兼容的效果,它可以在该算法通过迭代以分层图案排序模块的减少。为了确定所述方法是如何有效用于具有非均匀老化和不同尺寸的PV阵列,例如3×4,5×8和7×8阵列,计算机仿真和分析已经进行,与指示的发现,即,不论尺寸,具有非均匀老化PV阵列可以具有改进的功率产量。

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