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The operational economics of compressed air energy storage systems under uncertainty

机译:不确定条件下压缩空气储能系统的运行经济性

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A Compressed Air Energy Storage System is a means of storing energy which can then be used when the demand for energy increases. In this system, air is compressed in a cavern when power prices are low, and this air is used to run a natural gas-fired turbine to generate power when prices go up, with the aim of profiting from the price difference. This type of system can independently compress air, generate electricity, or do both. However, the prices of electricity and natural gas fluctuate, which directly impacts the amount of revenue that can be made, and this requires the calculating of estimates to optimize operation strategies and maximize profit. For these reasons, this is a crucial energy storage technology that requires economic analyses to justify investment decisions in power markets. In this paper, a mixed integer programming method is developed to schedule the operation of the system for forward market prices that are estimated using a markov-based probabilistic model. Then an algorithm that includes two separate modules in a simulation is employed to optimize the annual operation of the system. The paper presents a case study for Turkey as well as economic analyses based on probabilistic forward prices and the profits obtained from the optimization module.
机译:压缩空气能量存储系统是一种存储能量的方法,当能量需求增加时可以使用它。在该系统中,当电价低时,空气在​​山洞中被压缩,当价格上涨时,该空气被用于驱动天然气涡轮机发电,目的是从价格差异中获利。这种类型的系统可以独立压缩空气,发电或两者兼而有之。但是,电价和天然气价格的波动直接影响了可实现的收入额,这需要估算估算值以优化运营策略并实现利润最大化。由于这些原因,这是一项至关重要的储能技术,需要进行经济分析以证明电力市场中的投资决策合理。在本文中,开发了一种混合整数规划方法来调度系统的操作,以使用基于马尔可夫的概率模型估算的远期市场价格。然后,采用在仿真中包括两个独立模块的算法来优化系统的年度运行。本文介绍了土耳其的案例研究以及基于概率远期价格和从优化模块获得的利润的经济分析。

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