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An Improved Flexibility Metric Based on Kernel Density Estimators Applied on the Greek Power System

机译:一种基于核密度估计器的改进灵活性度量标准,应用于希腊电力系统

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The large-scale integration of variable renewable energy (VRE) in power systems, such as wind and solar, increases the flexibility needed to maintain the load-generation balance. In order for the power operators to plan for secure and reliable operation, they must examine whether there exists sufficient power system flexibility to meet ramps caused by the increased VRE integration and the system demand. In this context, the paper aims to propose an improved flexibility metric to accurately evaluate the flexibility level of a power system in the planning stage. The proposed metric is based on kernel density estimators and expresses the probability of the flexibility residual (the difference between the available flexibility and the expected net load ramps) being less than zero. The Greek power system is used as case study in order to evaluate the proposed index. In particular, the unit commitment optimization problem with flexibility constraints for ten different scenarios based on the ENTSO-E methodology for the time period 2020-2024 is solved and then the proposed metric is calculated. Finally, this index is compared to the well known insufficient ramping resource expectation (IRRE) metric to further evaluate it.
机译:可变可再生能源(VRE)在电力系统(如风和太阳能)中的大规模集成增加了维护负载变量所需的灵活性。为了使电力运营商计划安全可靠的操作,他们必须检查是否有足够的电力系统灵活性,以满足由增加的VRE集成和系统需求引起的斜坡。在这种情况下,该文件旨在提出改进的灵活性度量,以准确评估规划阶段中电力系统的灵活性水平。所提出的度量基于核密度估计器,表达灵活性残差的概率(可用灵活性与预期净负载斜坡之间的差异)小于零。希腊电力系统被用作案例研究,以评估所提出的指数。特别地,解决了基于时间段2020-2024的Etono-E方法的十个不同场景的灵活性约束的单元承诺优化问题,然后计算所提出的度量。最后,将该指数与众所周知的猖獗资源期望(IRRE)指标进行比较,以进一步评估它。

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