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Optimization of a hybrid energy system with/without considering back-up system by a new technique based on fuzzy logic controller

机译:一种基于模糊逻辑控制器的新技术优化混合能量系统,无需考虑备份系统

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摘要

The environmental benefits of alternative energy sources, including wind and solar, are the main attraction for both researchers and the public. The use of the photovoltaic and wind systems to generate energy is very unreliable in itself without a back-up system like diesel generators or storage devices like batteries. This work focuses on determining the size of a hybrid energy scheme including the photovoltaic panels and wind turbines with/without considering the backup system to reduce economic costs and increase reliability. Also, sensitivity analysis based on loss of power supply probability (LPSP) has been investigated under different scenarios. According to the main goals, a novel method is proposed based on the integration of fuzzy logic controller and harmony search algorithm. This method will give the optimal size of a hybrid energy scheme based on environmental information (load demand, solar irradiation, and wind speed). In this paper, the fuzzy rules and membership functions are designed to increase the convergence rate and improve the results. According to the results (for LPSP = 1), utilization of a backup system can save the costs up to 24%. For increasing the system reliability by 5%, the system costs will raise up to 36%. The utilization of a backup system reduces the hybrid energy system costs. Thus, the hybrid energy system that consist of photovoltaic panels, wind turbines, batteries, and diesel generators are more affordable than other systems. Moreover, the fuzzy harmony search algorithm leads to more promising results compared to the harmony search algorithm.
机译:替代能源的环境效益包括风和太阳能,是研究人员和公众的主要吸引力。使用光伏和风系统在没有像电池等柴油发电机或存储设备这样的备用系统的情况下非常不可靠。这项工作侧重于确定混合能源方案的尺寸,包括光伏板和风力涡轮机,其中包含/不考虑备用系统以降低经济成本并提高可靠性。此外,在不同场景下研究了基于电源概率损失(LPSP)的敏感性分析。根据主要目标,提出了一种基于模糊逻辑控制器和和谐搜索算法的集成的新方法。该方法将提供基于环境信息(负载需求,太阳辐照和风速)的混合能量方案的最佳大小。在本文中,模糊规则和隶属函数旨在提高收敛速度并提高结果。根据结果​​(对于LPSP = 1),备用系统的利用可以将成本节省高达24%。为了提高系统可靠性5%,系统成本将增加高达36%。备用系统的利用降低了混合能量系统成本。因此,由光伏板,风力涡轮机,电池和柴油发电机组成的混合能量系统比其他系统更实惠。此外,与和声搜索算法相比,模糊和声搜索算法导致更有前途的结果。

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