Harnessing Flexibility from Energy Storage and Turndown Capability of Generating Units

S. Yamujala, Anjali Jain, R. Bhakar, Jyotirmay Mathur, Priyanka Kushwaha
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Abstract

Flexibility in operations is gaining importance to facilitate large share of renewable energy sources in generation mix. Various resources and market-based ramp products are practiced for enhancing system flexibility. This work aims at modelling such flexible ramp products from conventional units and Energy storage systems, especially pumped hydro energy storage and battery energy storage systems. The paper further presents a techno-economic analysis of two flexibility enhancement methodologies-Energy storage systems and lower technical minimum of generating units. A MILP based scheduling problem with a 15-minute temporal day-ahead security constrained unit commitment and a 5-minute temporal real-time security constrained economic dispatch is formulated with FRP procurement decisions in day-ahead scheduling for the studies. Effectiveness of proposed model is studied on IEEE RTS 24 bus system using GAMS 24.2.3. Results show that integration of ESS coupled with lower technical minimum of conventional units would enhance market efficiencies and system reliability.
利用发电机组储能和调节能力的灵活性
为了促进可再生能源在发电组合中占有更大份额,操作的灵活性正变得越来越重要。运用各种资源和市场化斜坡产品,增强系统灵活性。这项工作的目的是模拟这种灵活的斜坡产品,从传统的单位和储能系统,特别是抽水蓄能和电池储能系统。本文进一步对储能系统和降低发电机组技术最小值两种增强柔性的方法进行了技术经济分析。提出了一种基于MILP的调度问题,该问题具有15分钟时间日前安全约束的单位承诺和5分钟时间实时安全约束的经济调度,并结合FRP采购决策在日前调度中进行了研究。在基于GAMS 24.2.3的IEEE RTS 24总线系统上研究了该模型的有效性。结果表明,集成ESS与降低常规机组的最低技术要求相结合,将提高市场效率和系统可靠性。
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