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Application of IEEE 1459-2010 for the power investigation a traction substation transformer secondary voltage

机译:IEEE 1459-2010在牵引变电站变压器二次电压功率研究中的应用

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Today, with a steady increase in the number of consumers in which semiconductor converters are available, the nonlinear distortions value in electricity is increasing. Assessment of the electricity quality in traction networks is a problem related to the complexity of energy processes mathematical formalization in unballanced and non-sinusoid terms. Therefore, there is a need to find a calculation method with simple implementation and high informativeness indicators. The purpose is in the power components investigation of the secondary busbars a traction substation transformer, using the standard of IEEE 1459 - 2010. Guided by order of determining the instantaneous power components, regulated by standard IEEE 1459-2010, using the Fourier transform, the power values for each of the secondary voltage phases a three-phase transformer and the three phases as a whole were calculated. It is established that during the calculation as indicators reflecting of unballanced three-phase transformer mode, is use only fundamental harmonic components. This does not take into account the transition effect of pair harmonics and multiples of three harmonics, respectively, on the negative and zero sequences. It is noted, that the reactive power is calculated only by the fundamental harmonic. The higher harmonics reactive power is not included in recommended for definition. The results can be used in electrical energy control and metering systems, as motivating, to take steps to maintain of electricity quality required level at the metering point.
机译:如今,随着可使用半导体转换器的用户数量的稳定增长,电力中的非线性失真值正在增加。牵引网络中电能质量的评估是一个与能量过程的复杂性有关的问题,这些能量以非平衡和非正弦形式进行数学形式化。因此,需要找到一种实现简单,信息量高的指标的计算方法。目的是在牵引次级变电站的次级母线的功率组件研究中,使用IEEE 1459-2010标准。在确定瞬时功率分量的顺序的指导下,使用IEEE 1459-2010标准,使用傅立叶变换,计算了三相变压器和三相整体的每个次级电压相的功率值。确定在计算过程中仅使用基波谐波分量作为反映不平衡三相变压器模式的指标。这没有考虑负对和零序列分别具有成对谐波和三个谐波的倍数的过渡效应。注意,无功功率仅由基波谐波计算。建议的定义中不包括高谐波无功功率。该结果可用于电能控制和计量系统,作为激励,以采取措施来维持计量点所需的电能质量水平。

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