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DESIGN OF HYBRID POWER GENERATION SYSTEMS CONNECTED TO UTILITY GRID AND NATURAL GAS DISTRIBUTION NETWORK: A NEW CONTRIBUTION

机译:连接到公用电网和天然气分配网络的混合发电系统的设计:新贡献

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摘要

Hybrid power generation system (HPGS) is an active research area, which is in need of a continuous improvement. It represents the best solution for the most complex problems facing the world in the last decades. These problems are known as the shortage of energy, or lack of electricity, which logically are the results of the continuous increasing demand. Therefore, the researchers do their best to overcome all expected roadblocks facing the development, where the most applicable solutions to solve these problems are introduced. In this paper, the HPGS includes; wind turbine (WT), photovoltaic (PV), storage battery (SB), gas turbine (GT), and utility grid (UG). The GT of this system is fueled directly from the natural gas distribution network considering all operational conditions of it, which may be affected by fueling the natural gas for the GT. So, the natural gas distribution network is becoming an important component of the HPGS, and it is included in the HPGS for the first time. Multi meta-heuristic optimization techniques are applied to obtain the components sizing of this system, where cuckoo search algorithm (CSA), firefly algorithm (FA), and flower pollination algorithm (FPA) have been applied. Therefore, this paper introduces a new contribution not only to the new configuration of the HPGS, but also in applying the new optimization techniques as solving tools. The output results are compared to show the effectiveness and the superiority of the applied techniques as well as extract a recommendation for the best solving technique.
机译:混合发电系统(HPGS)是一个活跃的研究区域,需要连续改进。它代表了过去几十年来世界面临的最复杂问题的最佳解决方案。这些问题被称为能量短缺,或缺乏电力,逻辑上是不断增加的需求的结果。因此,研究人员尽最大努力克服面对开发的所有预期的障碍,其中介绍了解决这些问题的最适用的解决方案。在本文中,HPG包括;风力涡轮机(WT),光伏(PV),蓄电池(SB),燃气轮机(GT)和公用电网(UG)。考虑到其所有操作条件,该系统的GT直接从天然气分配网络加油,这可能会受到GT的天然气的影响。因此,天然气分配网络成为HPG的重要组成部分,它首次包含在HPG中。应用多元启发式优化技术来获得该系统的组件尺寸,其中杜鹃搜索算法(CSA),萤火虫算法(FA)和花授粉算法(FPA)已经应用。因此,本文不仅介绍了新的HPG的新配置,也介绍了新的优化技术作为解决工具。将输出结果进行比较,以显示应用技术的有效性和优越性以及提取最佳求解技术的建议。

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