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Optimal Operation of the Hybrid Electricity Generation System Using Multiverse Optimization Algorithm

机译:基于多元优化算法的混合发电系统的最优运行

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摘要

The ongoing load-shedding and energy crises due to mismanagement of energy produced by different sources in Pakistan and increasing dependency on those sources which produce energy using expensive fuels have contributed to rise in load shedding and price of energy per kilo watt hour. In this paper, we have presented the linear programming model of 95 energy production systems in Pakistan. An improved multiverse optimizer is implemented to generate a dataset of 100000 different solutions, which are suggesting to fulfill the overall demand of energy in the country ranging from 9587 MW to 27208 MW. We found that, if some of the power-generating systems are down due to some technical problems, still we can get our demand by following another solution from the dataset, which is partially utilizing the particular faulty power system. According to different case studies, taken in the present study, based on the reports about the electricity short falls been published in news from time to time, we have presented our solutions, respectively, for each case. It is interesting to note that it is easy to reduce the load shedding in the country, by following the solutions presented in our dataset. Graphical analysis is presented to further elaborate our findings. By comparing our results with state-of-the-art algorithms, it is interesting to note that an improved multiverse optimizer is better in getting solutions with lower power generation costs.
机译:由于巴基斯坦不同来源生产的能源管理不善,以及由于越来越依赖于使用昂贵燃料生产能源的那些来源而造成的持续的甩负荷和能源危机,导致了减负荷和每千瓦时能源价格的上涨。在本文中,我们介绍了巴基斯坦95个能源生产系统的线性规划模型。实施了一种改进的多元宇宙优化器,以生成包含100000种不同解决方案的数据集,这表明满足该国9587 MW至27208 MW范围内能源的总体需求。我们发现,如果某些发电系统由于某些技术问题而停机,我们仍然可以通过遵循数据集中的另一种解决方案来满足需求,该解决方案部分利用了特定的故障电力系统。根据本研究中采用的不同案例研究,基于不时在新闻中发布的有关电力短缺的报道,我们针对每种情况分别提出了解决方案。有趣的是,通过遵循我们的数据集中提供的解决方案,很容易减少该国的负荷减少。提出了图形分析以进一步阐述我们的发现。通过将我们的结果与最先进的算法进行比较,有趣的是,经过改进的多宇宙优化器可以更好地获得具有较低发电成本的解决方案。

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