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A framework to quantify technical flexibility in power systems based on reliability certificates

机译:基于可靠性证书量化电力系统技术灵活性的框架

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Power systems are increasingly stressed by variable and unpredictable generation from various sources. We identify the qualitative framework of flexibility as an adequate tool to specify requirements that allow the system to handle this variability. An open problem is the quantification of technical flexibility that incorporates limitations from transmission system and component behavior in contrast to existing copper plate supply and demand balance approaches. We develop such a quantitative method for single components on the basis of a priori specified reliability criteria. Our framework bases on a combined static power flow and small signal stability analysis. In a perturbative approach we derive sensitivity-based formula for eigenvalue variations under nonlinear changes of steady power flow set points. To this end, we define rigorously the terms flexibility metric and technical flexibility of single components. We provide an algorithmic procedure for computation of tolerance ranges of individual system components such that the overall behavior remains reliable.
机译:电力系统越来越受到来自各种来源的可变且不可预测的发电的压力。我们将灵活性的定性框架确定为指定允许系统处理这种可变性的要求的适当工具。一个开放的问题是技术灵活性的量化,与现有的铜板供求平衡方法相比,它结合了传输系统和组件行为的局限性。我们在事先指定的可靠性标准的基础上为单个组件开发了一种定量方法。我们的框架基于结合的静态潮流和小信号稳定性分析。在摄动方法中,我们推导了基于稳定度潮流设定值非线性变化下特征值变化的基于灵敏度的公式。为此,我们严格定义了单个组件的灵活性指标和技术灵活性。我们提供了用于计算单个系统组件的公差范围的算法程序,以使总体行为保持可靠。

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