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Photovoltaic array reconfiguration method based on fuzzy logic and recursive least squares: An experimental validation

机译:基于模糊逻辑和递归最小二乘的光伏阵列重新配置方法:实验验证

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摘要

In this paper, an experimental analysis and validation of a simple reconfigurable photovoltaic (PV) array is carried out. An assessment of a new reconfiguration method based on fuzzy logic (FL) under partial shading conditions is introduced. Furthermore, a recursive least squares based irradiance estimator is proposed aiming to reduce the investment cost of the dynamic PV array. An experimental comparison with other estimators showed the high precision of the proposed estimator. The estimation error has decreased by an average of 10% compared to the first estimator (based on the PV current and voltage measurement) and by 4.28%compared to the second estimator(based on the PV current measurement). On the other hand, the results validated the FL Controller ability to switch to the appropriate configuration under prevailing shading conditions. The method was tested for a simple configuration, however it could be generalized for small-scale configurations as residential house (average power output equal to 5 kWh). To evaluate the performance of the FL method an extended simulation of dynamic PV array of 16 PV modules is also realized. The mismatch loss is mitigated by nearly 50% compared to fixed Total Cross-Tied and 8% compared to basic Irradiance Equalization techniques. (c) 2021 Elsevier Ltd. All rights reserved.
机译:在本文中,执行简单的可重新配置光伏(PV)阵列的实验分析和验证。介绍了基于模糊逻辑(FL)的新重新配置方法在局部遮荫条件下进行评估。此外,提出了一种基于递归的基于正方形的辐照度估计器,其目的是降低动态PV阵列的投资成本。与其他估计器的实验比较显示了所提出的估计的高精度。与第一估计器(基于PV电流和电压测量)相比,估计误差平均为10%,与第二估计器相比(基于PV电流测量值)。另一方面,结果验证了FL控制器的能力在普遍的阴影条件下切换到适当的配置。测试该方法以进行简单的配置,但是它可以作为住宅房屋(平均功率输出等于5千瓦时)的小规模配置。为了评估FL方法的性能,还实现了16个PV模块的动态PV阵列的扩展模拟。与固定总交叉绑定和8%相比,与基本辐照均衡技术相比,不匹配损失减轻了近50%。 (c)2021 elestvier有限公司保留所有权利。

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