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Integration of Battery Energy Storage Systems into Natural Gas Combined Cycle Power Plants in Fuzzy Environment

机译:电池储能系统集成到模糊环境中天然气联合循环发电厂的

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摘要

The increasing share of renewable energy sources in the grid has created the need for operational flexibility for natural gas combined cycle power plants (NGCCPPs) that offer high thermal efficiency and ease of operation. However, battery energy storage technologies (BESSs), which eliminate the time and ratio imbalance between energy supply and demand, will be effective solutions that can increase plant flexibility when integrated with NGCCPPs. This integration is a decision problem with high uncertainty and complexity evaluated by grid stakeholders. For this reason, firstly, the operational goals of the power plants have been prioritized in terms of BESSs. At this phase, the combination of Pythagorean Fuzzy AHP and Pythagorean Fuzzy TOPSIS methods was used. Afterwards, to pose a sustainable projection under the mentioned operational goals, which is the main purpose of the study has been started to the phase of ranking BESSs (lead-acid, lithium-ion, vanadium redox flow battery, sodium-nickel chloride, sodium-sulfur) under different conditions. By this means, evaluating the BESSs for different application purposes, rationalizing the high uncertainty in both the energy sector and electricity markets at the same time with the proposed hierarchical model will provide an important projection to the literature. The results of the proposed methodology show that lithium-ion batteries can be an effective replacement technology alternative for NGCCPPs, given their economic benefits and technological capabilities. Another result is that the scalability of BESSs can be used for different operational goals in the power plants. This also can allow the establishment of a hybrid BESS facility.
机译:的网格中的可再生能源的增加的份额已创建了用于提供高的热效率和易于操作的天然气联合循环发电设备(NGCCPPs)的操作灵活性的需要。然而,电池的能量储存技术(BESSs),其消除能源供应和需求之间的时间和比例失调,将是有效的解决方案时,与NGCCPPs集成,可以提高植物的灵活性。这种整合是一个决策问题具有较高的不确定性和复杂电网的利益相关者进行评估。为此,首先,电厂的运行目标已经优先于BESSs方面。在这个阶段中,使用勾股定理模糊AHP和毕达哥拉斯模糊TOPSIS方法的结合。然后,向姿势下所提到的操作目标的一个可持续投影,这是研究的主要目的已经开始排名BESSs(铅酸,锂离子的相位,钒氧化还原液流电池,钠 - 氯化镍,钠 - 硫)在不同条件下。通过这种方式,评估BESSs针对不同的应用目的,在同一时间提出的分层模型合理化在能源领域和电力这两个市场的高度不确定性将提供一个重要的投影文献。所提出的方法显示,锂离子电池可以成为一种有效的替代技术替代了NGCCPPs的结果,因为它们的经济利益和技术能力。另一个结果是,BESSs的可扩展性,可用于在发电厂的不同操作的目标。这也可以允许建立一个混合储能设施。

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