通过集成分布式发电机:风能、水力和太阳能,最大限度地提高发电的成本效益

Idoko Peter Idoko, Temitope Raphael Ayodele, Sogo Mayokun Abolarin, Daniel Raphael Ejike Ewim
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摘要

向可再生能源转型已成为减缓气候变化、减少碳排放、促进能源安全和经济可持续繁荣的必要步骤。最大限度地提高发电的成本效益对于使可再生能源成为清洁能源生产的可行和有吸引力的选择至关重要。风能、水力和太阳能发电系统的战略性配置对实现这一目标至关重要。本文试图通过风能、太阳能和水电系统的整合,以及在0%、25%、50%、75%和100%不同渗透率水平下发电成本效益的比较,来论证如何实现电力系统成本效益的最大化。根据发电机的输出特性设计了不同的发电机技术。结果计算了各母线上各发电机组在不同渗透水平下的综合发电成本,进行了公平比较。结果表明:在4号母线和50%插深水平下,太阳能一体化的最小损失为743.90美元;在4号母线和25%插深水平下,风电一体化的最小损失为999.00美元;在4号母线和75%插深水平下,水电一体化的最小损失为546.50美元。结论不同发电机组的集成对发电成本效益的影响程度取决于发电机组的类型、接入水平和发电机组在电网中的位置。
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Maximizing the cost effectiveness of electric power generation through the integration of distributed generators: wind, hydro and solar power
Abstract Background The transition towards renewable energy sources has become an imperative step to mitigate climate change, reduce carbon emissions and improve energy security and economic prosperity in a sustainable manner. Maximizing the cost effectiveness of electric power generation is crucial to making renewable energy sources viable and attractive options for clean energy production. The strategic allocation of wind, hydro and solar power systems is essential to achieving this goal. This paper attempts to demonstrate how the cost effectiveness of electrical power system could be maximized through the integration of wind, solar and hydropower systems and comparison at different penetration levels of 0, 25, 50, 75 and 100% on cost effectiveness of electric power generation. The different generator technologies were designed based on their electrical output attributions. Results The cost of electric generation for the integration of each generator at the various buses were calculated at different penetration level for fair comparison. The results indicate that the minimum money loss for the integration of solar power was $743.90 at bus 4 and at 50% penetration level, the minimum money loss for the integration of wind power was $999.00 at bus 4 and at 25% penetration level while the minimum amount loss for the integration of hydropower was $546.50 at bus 4 and at 75% penetration level. Conclusions The magnitude to which the integration of the different generator affects the cost effectiveness of power production hinges on the type of generator, the penetration level and the location of the generator in the grid.
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