Research on accuracy of electrical energy measurement in microgrid for mine dewatering

K. Vasylets, S. Vasylets, A. Kylymchuk
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Abstract

The object of the study is the current transformers of the electricity metering unit as part of the microgrid for mine dewatering, which includes a photovoltaic station. The need to pump mine waters is caused by the danger of flooding large areas. The introduction of a photovoltaic station to power underground pumps reduces electricity consumption from the central power grid. At the same time, it changes the operating conditions of the metering unit. There is a need to measure both the currents of the pumps in the absence of solar generation, as well as relatively small current flows in the case of commensurate capacities generated and consumed within the microgrid. A feature of electromagnetic current transformers is a decrease in the accuracy of operation if the primary current is several percent of the rated value. Based on the analysis of variance of the experimental data, it was established that there is a statistically significant connection between the secondary and primary currents of the measuring transformer at insignificant values of the primary current. Estimates of the values of the linear regression parameters that link the secondary and primary currents were determined. It was established that in the range of the transformer primary current from 0.22 % to 1.4 %, the current error reaches a value of 6.7 %. Taking into account the resulting dependence in the software of the electricity metering unit will make it possible to increase the accuracy of energy metering. Accordingly, the accuracy of financial calculations will be increased
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矿井脱水微电网电能计量精度研究
本研究的对象是作为矿井脱水微电网一部分的电量计量单元的电流互感器,其中包括一个光伏电站。抽水矿井水的需要是由于大面积洪水的危险造成的。引入光伏电站为地下水泵供电,减少了中央电网的电力消耗。同时也改变了计量机组的运行条件。有必要在没有太阳能发电的情况下测量水泵的电流,以及在微电网内产生和消耗相应容量的情况下测量相对较小的电流。电磁电流互感器的一个特点是,如果一次电流为额定值的几个百分点,则操作精度会下降。通过对实验数据的方差分析,得出在一次电流不显著的情况下,被测变压器的二次电流和一次电流之间存在统计学意义上的联系。确定了连接次级和初级电流的线性回归参数值的估计值。结果表明,在变压器一次电流0.22% ~ 1.4%的范围内,电流误差达到6.7%。考虑到由此产生的电能计量单元软件的依赖性,将有可能提高电能计量的准确性。因此,财务计算的准确性将得到提高
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