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Assessing Increased Flexibility of Energy Storage and Demand Response to Accommodate a High Penetration of Renewable Energy Sources

机译:评估能量储存和需求响应的灵活性增加,以适应可再生能源的高渗透率

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摘要

Today's power systems are subject to various challenges arising from the large-scale integration of renewable energy sources (RES), especially wind energy production. System flexibility, or the capability of a system to address deviations in variable RES production, is becoming more and more relevant. This paper aims to provide a systematic approach to evaluate the level of flexibility of a power system by unequivocally considering fast-ramping units (FRU), hourly demand response (DR) and energy storage (ES). In addition, to research the flexibility role in power system operation, an "online" index is considered to evaluate the technical aptitude of the FRU, hourly DR and ES system to deliver the required flexibility. The mathematical representation of day-ahead scheduling, with the added modeling of an online flexibility index, is a mixed-integer nonlinear program (MINLP). This paper presents a method to convert this MINLP into a mixed-integer linear program without loss of accuracy. The adapted 6-bus and IEEE 118-bus systems are employed to assess the suggested models and flexibility metric, demonstrating the proficiency of the online flexibility index.
机译:今天的电力系统受到可再生能源(RES)的大规模集成,尤其是风能生产的各种挑战。系统灵活性,或系统在变量RES生产中解决偏差的能力变得越来越相关。本文旨在提供系统的方法,以通过考虑快速斜坡(FRU),每小时需求响应(DR)和储能(ES)来评估电力系统的灵活性水平。此外,为了研究电力系统操作中的灵活性作用,认为“在线”指数被认为是评估FRU,每小时DR和ES系统的技术能力,以提供所需的灵活性。随着在线灵活性索引的附加建模,日前调度的数学表示是混合整数非线性程序(MINLP)。本文介绍了将此MINLP转换为混合整数线性程序的方法,而不会损失精度。适用于6柱和IEEE 118总线系统用于评估建议的模型和灵活性度量,展示了在线灵活性指数的熟练程度。

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