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Irregularity Detection in Output Power of Distributed Energy Resources Using PMU Data Analytics in Smart Grids

机译:使用智能电网中的PMU数据分析法检测分布式能源输出功率中的不规则性

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The output power of distributed energy resources (DERs) may experience irregular fluctuations due to variations of renewable sources, which need to be monitored in order to reliably control the grid. This paper proposes a novel approach for centralized detection of such irregularities based on the time-series analysis of the data reported by phasor measurement units (PMUs). In this approach, a network controller constructs datasets of time-aligned real/reactive powers for different zones. The datasets are transformed into sequences of short-time local outlier probability (ST-LOP) that are analyzed to identify the DER events. The network controller estimates features such as the average duration and the similarity degree that is a measure of spatio-temporal correlation between the DER events. As a use case, event-triggered control of solar photovoltaic (PV) systems with energy storage devices is investigated. The simulation results for the IEEE 123-bus network corroborate the effectiveness of the developed analytics for detection and mitigation of ramp-rate solar power fluctuations. Smart microgrids and active distribution networks can employ the developed analytics to improve a range of diagnostic and control functionalities.
机译:由于可再生能源的变化,分布式能源(DER)的输出功率可能会出现不规则的波动,需要对其进行监视以可靠地控制电网。本文基于相量测量单元(PMU)报告的数据的时间序列分析,提出了一种集中检测此类不规则现象的新方法。在这种方法中,网络控制器为不同区域构造时间对齐的有功/无功功率的数据集。将数据集转换为短时局部离群值概率(ST-LOP)序列,对其进行分析以识别DER事件。网络控制器估计诸如平均持续时间和相似度的特征,所述相似度是DER事件之间的时空相关性的量度。作为用例,研究了具有储能设备的事件触发式太阳能光伏(PV)系统控制。 IEEE 123总线网络的仿真结果证实了所开发的分析方法在检测和缓解太阳能斜率波动方面的有效性。智能微电网和主动配电网络可以利用开发的分析功能来改善一系列诊断和控制功能。

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