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Optimal hybrid renewable energy design in autonomous system using Iterative-Pareto-Fuzzy technique

机译:基于迭代-Pareto-Fuzzy技术的自治系统最优混合可再生能源设计

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摘要

The intermittent resources which cause fluctuations in the power generated by photovoltaic (PV) and wind turbine (WT) system made the optimal design for these resources essential, especially for an autonomous system. Therefore, this paper aims to obtain the best combination size between the hybrid PV-WT-battery system that yields minimum cost and maximum reliability. In addition to that, the minimization of unutilized surplus power is also being considered as one of the design objectives. An Iterative-Pareto-Fuzzy (IPF) technique is used to obtain the best compromised solution between all the design objectives. Results show that the inclusion of unutilized surplus power criteria gave different set of Pareto points to the system and provided a different result for the best compromised solution. The total cost of the hybrid system is lower when the minimization of unutilized surplus power criteria is taken into account in the analysis.
机译:导致光伏(PV)和风力涡轮机(WT)系统产生的功率波动的间歇性资源使得针对这些资源(尤其是自治系统)的最佳设计至关重要。因此,本文旨在获得成本最低,可靠性最高的混合型PV-WT电池系统之间的最佳组合尺寸。除此之外,未利用的剩余功率的最小化也被认为是设计目标之一。迭代帕累托模糊(IPF)技术用于在所有设计目标之间获得最佳折衷解决方案。结果表明,未使用的剩余功率标准的包含给系统带来了不同的帕累托点集,并为最佳折衷解决方案提供了不同的结果。当在分析中考虑未利用的剩余功率标准的最小化时,混合系统的总成本较低。

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