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Optimal sizing of stand-alone photovoltaic system by minimizing the loss of power supply probability

机译:通过最小化电源损失的概率来优化独立光伏系统的尺寸

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摘要

This paper presents Firefly Algorithm-based Sizing Algorithm (FASA) for sizing optimization of a Stand Alone Photovoltaic (SAPV) system. Firefly Algorithm (FA) was used to optimally select the model of each system component such that a technical performance indicator is consequently optimized. Prior to implementation of FASA, an Iterative-based Sizing Algorithms known as ISA had been developed to determine the optimal solutions which were used as benchmark for FASA. Although ISA was capable in determining the optimal design solutions when there are numerous models for each system component being considered, the computation time of ISA can be very long as ISA tested every possible combination of PV module, battery, charge controller and inverter during sizing process. Therefore, FASA was introduced to accelerate the sizing optimization for SAPV system. FA was incorporated into sizing algorithm with the technical performance indicator was set to optimize the Loss of Power Supply Probability (LPSP). Besides that, two design cases of PV-battery system, i.e. system with standard charge controller denoted as Case 1 and system with MPPT-based charge controller denoted as Case 2 were investigated. The results showed that FASA had successfully found the optimal LPSP in all design cases. In addition, sizing algorithm with FA was also discovered to outperform sizing algorithm with selected computational intelligence in producing the lowest computation time in the sizing optimization. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本文提出了基于Firefly算法的尺寸调整算法(FASA),用于独立光伏(SAPV)系统的尺寸优化。使用Firefly算法(FA)来最佳地选择每个系统组件的模型,从而优化技术性能指标。在实施FASA之前,已开发出一种称为ISA的基于迭代的大小调整算法,以确定用作FASA基准的最佳解决方案。尽管在考虑每个系统组件有多个模型的情况下,ISA能够确定最佳的设计解决方案,但是只要在尺寸调整过程中ISA测试了PV模块,电池,充电控制器和逆变器的每种可能组合,ISA的计算时间就可能非常长。 。因此,引入FASA可以加快SAPV系统的尺寸优化。将FA合并到大小调整算法中,并设置了技术性能指标来优化电源概率损失(LPSP)。除此之外,还研究了两个光伏电池系统的设计案例,即以标准充电控制器表示为案例1的系统和具有基于MPPT的充电控制器表示为案例2的系统。结果表明,FASA已在所有设计案例中成功找到了最佳的LPSP。此外,还发现了使用FA的尺寸调整算法在选择尺寸优化中产生最少的计算时间方面优于具有选定计算智能的尺寸调整算法。 (C)2017 Elsevier Ltd.保留所有权利。

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