Effects of flexible ramping product on improving power system real-time operation

M. Khoshjahan, M. Fotuhi‐Firuzabad, M. Moeini‐Aghtaie
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引用次数: 2

Abstract

Integration of renewable energies in generation sector of power systems has caused many new issues for planners and decision makers. Therefore, new concepts such as flexibility are introduced to properly cover these problems. In this paper, a recently announced short-term flexibility product, namely, “Flexible ramping product” (FRP) in power markets is put under investigation from different aspects. FRP is the capacity reserved to meet next upcoming five-minute net load (load minus intermittent supply) uncertainty. Therefore, at first, the mathematical model of real-time dispatch (RTD) problem in presence of the FRP is formulated. Modeling this problem as a linear programming (LP) optimization problem, it is shown how the price of FRP and energy cost can be extracted for different scenarios. The effectiveness of presented algorithm for RTD problem is examined on different test systems. Based on the results, it is discussed that how the presence of FRP can reduce overall costs and price spikes as well as decreasing load and wind curtailment levels.
柔性匝道产品对提高电力系统实时性的影响
可再生能源在电力系统发电部门的整合给规划者和决策者带来了许多新的问题。因此,引入了诸如灵活性之类的新概念来适当地涵盖这些问题。本文从不同的角度对电力市场中最近出现的一种短期柔性产品——“柔性爬坡产品”进行了研究。FRP是为满足下一个即将到来的5分钟净负荷(负荷减去间歇性供应)不确定性而保留的容量。因此,首先建立了考虑FRP的实时调度问题的数学模型。将该问题建模为线性规划(LP)优化问题,展示了如何在不同情况下提取FRP价格和能源成本。在不同的测试系统上验证了该算法对RTD问题的有效性。基于结果,讨论了FRP的存在如何降低总体成本和价格峰值,以及降低负荷和弃风水平。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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