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Summation law for supraharmonic currents (2-150 kHz) in low-voltage installations

机译:低压装置中超声电流(2-150 kHz)的总结法

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The development of methods to study the propagation of supraharmonics in LV and even MV grids is a current research topic among the power quality community, which has been motivated by the efforts to establish limits for non-intentional supraharmonic emissions and planning levels. The assessment of how much distortion a bulk use of power electronics devices can inject into the grid is necessary before stating emission limits and planning levels for supraharmonics. To address this issue, the development of suitable models that can predict the supraharmonic emission from a low-voltage installation as a whole is required. This article presents a comparison of models for the summation of supraharmonics. An improved model for the summation of supraharmonics is proposed, which is validated experimentally. It is shown that by using the proposed model, predictions of supraharmonic propagation can be accomplished. Furthermore, it is demonstrated experimentally that, with the increasing number of supraharmonic emitting devices, the supraharmonic current distortion injected into a grid by an installation increases up to a maximum value and then decreases due to the capacitive nature of power electronics appliances existing in low-voltage networks.
机译:研究了研究LV甚至MV网格在LV甚至MV网格中的方法的发展是电能质量界的当前研究课题,这一直受到建立非故意超声排放和规划水平的限制的动力。在陈述Supraharmonics的排放限制和规划水平之前,需要评估散装电力电子设备的大量使用电力电子设备的使用。为了解决这个问题,需要开发可以预测整个低压安装的超声发射的合适模型。本文介绍了Supraharmonics求和的模型的比较。提出了一种改进的Suprabonmonics的模型,实验验证。结果表明,通过使用所提出的模型,可以实现超声波传播的预测。此外,通过实验证明,随着越来越多的超声发射器件,安装到网格中的超声电流失真增加到最大值,然后由于低于电力电子设备的电容性质而降低电压网络。

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