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Validation of distribution level measurements for power system monitoring and low frequency oscillation analysis

机译:电力系统监测和低频振荡分析的分配水平测量验证

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The University of Texas at Austin introduced the Independent Synchrophasor Network in order to monitor events and analyze low frequency oscillations from the electric power grid through PMU measurements taken at customer level voltage (120 V). The purpose of this paper is to present validation of the quality of these distribution level measurements for power system monitoring and analysis. Three different steps are used in the validation process. In the first step, the distribution voltage phase angle measurements are plotted with and compared to the state estimated transmission level voltage phase angle. The second step is the comparison of distribution level PMU measurements to transmission level PMU measurements during a power system transient response. The frequency, voltage magnitude, and voltage phase angle are analyzed during a unit trip event. In the final step, the modal frequency and damping estimates are used to illustrate the accuracy of distribution measurements as representative of the power system's ambient response. Because of the location of the PMUs within the network, it will also be possible to measure the effects of wind power on the rest of the grid.
机译:德克萨斯大学奥斯汀推出了独立的同步素网络,以通过在客户级电压(120 V)处采用的PMU测量来监测事件并分析来自电力电网的低频振荡。本文的目的是验证电力系统监测和分析的这些分配水平测量质量。在验证过程中使用了三个不同的步骤。在第一步中,与状态估计的传输电平电压相位角相比,分配电压相角测量绘制并与状态估计的传输电平电压相位角进行比较。第二步骤是在电力系统瞬态响应期间对传输电平PMU测量的分配水平PMU测量的比较。在单元跳闸事件期间分析频率,电压幅度和电压相位角。在最终步骤中,模态频率和阻尼估计用于说明作为电力系统环境响应的代表的分布测量的准确性。由于网络内的PMU的位置,还可以测量风电对栅格的其余部分的影响。

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