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PSO-Based Smart Grid Application for Sizing and Optimization of Hybrid Renewable Energy Systems

机译:基于PSO的智能电网应用,用于混合可再生能源系统的规模和优化

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摘要

This paper introduces an optimal sizing algorithm for a hybrid renewable energy system using smart grid load management application based on the available generation. This algorithm aims to maximize the system energy production and meet the load demand with minimum cost and highest reliability. This system is formed by photovoltaic array, wind turbines, storage batteries, and diesel generator as a backup source of energy. Demand profile shaping as one of the smart grid applications is introduced in this paper using load shifting-based load priority. Particle swarm optimization is used in this algorithm to determine the optimum size of the system components. The results obtained from this algorithm are compared with those from the iterative optimization technique to assess the adequacy of the proposed algorithm. The study in this paper is performed in some of the remote areas in Saudi Arabia and can be expanded to any similar regions around the world. Numerous valuable results are extracted from this study that could help researchers and decision makers.
机译:本文介绍了一种基于可用电网的智能电网负荷管理应用程序的混合可再生能源系统的最优规模算法。该算法旨在以最小的成本和最高的可靠性最大化系统能量的产生并满足负载需求。该系统由光伏阵列,风力涡轮机,蓄电池和柴油发电机组成,作为备用能源。本文介绍了使用基于负载转移的负载优先级将需求曲线整形作为智能电网应用程序之一。该算法使用粒子群优化来确定系统组件的最佳大小。从该算法获得的结果与从迭代优化技术获得的结果进行比较,以评估所提出算法的适当性。本文的研究是在沙特阿拉伯的一些偏远地区进行的,可以扩展到世界上任何类似的地区。从这项研究中提取了许多有价值的结果,可以为研究人员和决策者提供帮助。

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