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Synchronized flicker measurement for flicker transfer evaluation in power systems

机译:同步闪烁测量,用于评估电力系统中的闪烁转移

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摘要

Voltage fluctuations caused by rapidly changing loads, such as arc furnaces, can propagate to different parts of a power system. Although the flicker level at its origin can be high, levels that are measured at other sites are subject to attenuation, a process that is influenced by fault levels, transformer impedances, line impedances, and composition of the connected loads. This paper presents the methodology, measurement results, and data analysis in relation to synchronized flicker measurements carried out in a high-voltage (HV)/medium-voltage (MV) power system which contains an arc furnace supplied by a dedicated feeder connected to the HV busbar. The flicker transfer coefficients derived from measurement results clearly indicate that flicker transfer from the arc furnace site to the upstream HV busbar is governed by the fault levels at the two locations. However, the transfer of flicker from the upstream HV busbar to other downstream busbars is dependent on the downstream load composition. These flicker transfer coefficients are vital in the application of methodologies described in many reports and standards in relation to establishing planning levels at various voltage levels and in the allocation of flicker emission to customers.
机译:由快速变化的负载(例如电弧炉)引起的电压波动会传播到电力系统的不同部分。尽管其起源处的闪烁水平可能很高,但在其他位置测量的水平会受到衰减,该过程受故障水平,变压器阻抗,线路阻抗和所连接负载的组成的影响。本文介绍了在高压(HV)/中压(MV)电力系统中进行的与同步闪烁测量有关的方法,测量结果和数据分析,该系统包含一个电弧炉,该电弧炉由专用馈线供电,该馈线连接到高压母线。从测量结果得出的闪变传递系数清楚地表明,从电弧炉站点到上游HV母线的闪变传递受两个位置的故障级别控制。但是,闪烁从上游HV母线到其他下游母线的转移取决于下游负载组成。这些闪烁传递系数对于在许多报告和标准中描述的方法的应用至关重要,这些方法与在各种电压水平下建立计划水平以及在向客户分配闪烁发射方面有关。

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