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Practical Implementation of Computational Algorithms for Efficient Power Conversion in Photovoltaic Energy Generation Systems

机译:光伏发电系统中有效功率转换的计算算法的实际实现

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Photovoltaic energy generation systems are characterized by the dependence of their output power on environmental conditions and load matching. The power conversion stage serves as an intermediate adaptation interface that matches the operating point of the source to an optimal operating point (Maximum Power Point MPP). In this paper, different versions of computational intelligence based Maximum Power Point Tracking (MPPT) algorithms illustrated using the Particle Swarm Optimization algorithm are implemented in a DSP-based experimental setup to evaluate their performance for tracking the MPP in various operating conditions. Experimental results show the enhanced power conversion efficiency obtained by using computational intelligence techniques in photovoltaic energy generation systems.
机译:光伏发电系统的特征在于其输出功率对环境条件和负载匹配的依赖性。功率转换级用作将电源的工作点与最佳工作点(最大功率点MPP)匹配的中间适配接口。在本文中,在基于DSP的实验设置中实现了使用粒子群优化算法说明的不同版本的基于计算智能的最大功率点跟踪(MPPT)算法,以评估其在各种操作条件下跟踪MPP的性能。实验结果表明,通过在光伏能源发电系统中使用计算智能技术,可以提高功率转换效率。

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