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Investments in Flexibility Measures for Gas-Fired Power Plants: A Real Options Approach

机译:对燃气发电厂的灵活性措施进行投资:真正的选择方法

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The promotion of electricity from renewable energy in Germany by means of guaranteed feed-in tariffs and preferential dispatch leads to difficulties in the profitable operation of many modern conventional power plants. Nevertheless, conventional power generation technologies with enhanced flexibility in their operational characteristics can contribute to balancing electricity supply and demand. For this reason, the operational flexibility of conventional power plants becomes important for the system and has an inherent economic value. The focus of this research is on high efficiency gas-fired power plants; we tackle the following three research questions from a plant owner's perspective: (1) How can already existing conventional power plants be operated more flexibly and thus be made more profitable? (2) Which flexibility measures can be taken under consideration? (3) What is the optimal timing to invest in flexibility measures? To answer these questions we propose an optimization model for the flexible operation of existing gas-fired power plants that is based on real options analysis (ROA). In the model, the economic and technical aspects of the power plant operation are explicitly taken into account. Moreover, the spark spread, which is an important source of uncertainty, is used for the definition of the flexible plant operation in terms of different load levels and corresponding efficiency factors. The usefulness of the proposed model is illustrated with a case study mimicking the retrofitting decision process.
机译:通过保证的饲料关税和优惠派遣促进德国可再生能源的电力导致许多现代传统发电厂的有利可图运营困难。然而,传统的发电技术,其操作特性的灵活性增强可以有助于平衡电力供需。因此,传统发电厂的操作灵活性对系统变得重要,并且具有固有的经济价值。本研究的重点是高效的燃气发电厂;我们从工厂所有者的角度解决以下三个研究问题:(1)如何更灵活地运行现有的传统发电厂,从而使得更有利可图? (2)正在考虑哪些灵活性措施? (3)投资灵活性措施的最佳时间是多少?为了回答这些问题,我们提出了一种优化模型,可实现基于真实选项分析(ROA)的现有燃气发电厂的灵活运行。在该模型中,明确地考虑了电厂操作的经济和技术方面。此外,作为不确定度重要来源的火花差用于在不同的负载水平和相应的效率因素方面用于柔性工厂操作的定义。用模拟改造决策过程的案例研究说明了所提出的模型的有用性。

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