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Multi-time-scale modeling and analysis of energy storage in power system operations

机译:电力系统运行中能量存储的多时间尺度建模和分析

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This paper explores a modeling framework necessary for analyzing the impact of energy storage on power system operations. We first develop a unifying definition of energy storage as an abstraction of many heterogenous energy storage options, including flexible demand response. Then we develop, a multi-time-scale model of energy storage tailored for temporal hierarchies of power systems. Based on this model, the impact of energy storage in primary control, secondary frequency regulation, and economic dispatch can be pinpointed and analyzed explicitly. We then propose a simple scalar performance index for quantifying the value of energy storage over different horizons in competitive electricity markets. This performance index provides a value-based criteria for operating energy storage over different time horizons. Numerical case studies are conducted in a modified IEEE 14-bus system, which includes flywheel and battery energy storage.
机译:本文探讨了分析能量存储对电力系统运行的影响所必需的建模框架。我们首先将储能的统一定义定义为许多异构储能方案的抽象,包括灵活的需求响应。然后,我们开发了一个针对电力系统时间层次结构量身定制的多时间尺度储能模型。在此模型的基础上,可以明确地确定和分析能量存储在一次控制,二次频率调节和经济调度中的影响。然后,我们提出了一个简单的标量性能指标,用于量化竞争性电力市场中不同视野下的储能价值。该性能指标为不同时间段内的储能提供了基于价值的标准。在改进的IEEE 14总线系统中进行了数值案例研究,该系统包括飞轮和电池能量存储。

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