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Instantaneous Reactive Power in Systems with Stochastic Electric Power Processes

机译:具有随机电力过程的系统中的瞬时无功功率

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The paper is dedicated to the estimation of instantaneous reactive power in a DC traction power system. Currently, the integral and frequency methods are mostly used to define reactive power and do not give high accuracy in the calculations of power balance or cannot describe the essence of physical processes. The problem is complicated in DC electric transport systems due to random impulse character of voltages and currents. As a comparison, the calculation of reactive power according to various approaches was performed for the DE1 electric locomotive. It is suggested that the instantaneous reactive power should be used for the analysis of electromagnetic exchange processes in DC power systems. The paper shows the definition and main formulas for defining the instantaneous reactive power taking into consideration the random character of voltage and current. Numerical calculations together with statistical analysis were performed for two variants of experimentally recorded voltages and currents: the first one - on the bus-bar of traction substation, which supplies the section with the Pendolino trains in Poland and the second one - on the current collector of the VL8 electric locomotive in Ukraine. They confirm the validity of the aforementioned method.
机译:本文致力于直流牵引电力系统中的瞬时无功功率的估算。当前,积分和频率方法主要用于定义无功功率,并且在功率平衡的计算中不能提供很高的准确性,也无法描述物理过程的本质。由于电压和电流的随机脉冲特性,该问题在DC电力输送系统中变得复杂。作为比较,对DE1电力机车根据各种方法进行了无功功率的计算。建议将瞬时无功功率用于分析直流电源系统中的电磁交换过程。本文给出了考虑电压和电流的随机特性的瞬时无功功率的定义和主要公式。对实验记录的电压和电流的两种变体进行了数值计算和统计分析:第一种-在牵引变电站的母线上,为该部分提供波兰的Pendolino火车,第二种-在集电器上乌克兰的VL8电力机车的制造。他们证实了上述方法的有效性。

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