Effect of Sampling Rate and Sensor Bandwidth on Measured Transient Signals in LV AC and DC Power Systems

Yljon Seferi, Arshad, M. Syed, G. Burt, B. Stewart
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引用次数: 1

Abstract

Impulsive transients in power systems can stress the state of electrical insulation of equipment. Knowledge of signal characteristics is of paramount importance to accurately assess their impact on electrical insulation. This paper investigates the effect of sampling rate and sensor bandwidth on capturing high-frequency transient disturbances and their characteristics in laboratory-scale LV AC and DC systems to increase the understanding of their impact on electrical insulation. Two measurement systems of different bandwidths and configurable sampling rates, up to 500 kS/s and up to 250 MS/s, have been used in parallel to capture and compare the high-frequency transient phenomenon in voltage signals following DC series electric arc faults and the AC output of a bi-directional power converter. The presence of unknown high-frequency transient signals of magnitudes more than 10% and more than 600% with respect to the considered voltage of the system were found to exist in AC and DC recorded signals, respectively. Three dependency curves relating the maximum voltage, the rate-of-rise, and the pulse duration of the transients to different sampling rates are experimentally established to provide an improved appreciation of transient characteristics and a better correlation of their impact on the electrical insulation systems.
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采样率和传感器带宽对低压交流和直流电力系统暂态测量信号的影响
电力系统中的脉冲暂态会对设备的电气绝缘状态造成压力。了解信号特性对于准确评估其对电绝缘的影响至关重要。本文研究了采样率和传感器带宽对捕获实验室规模低压交流和直流系统中高频瞬态扰动及其特性的影响,以增加对它们对电绝缘影响的理解。采用两种不同带宽和可配置采样率(最高可达500 kS/s和最高可达250 MS/s)的测量系统,并联捕捉和比较直流串联电弧故障后电压信号中的高频瞬态现象和双向电源变换器的交流输出。发现在交流和直流记录信号中分别存在幅度大于系统所考虑电压10%和600%的未知高频暂态信号。通过实验建立了最大电压、上升速率和瞬态脉冲持续时间与不同采样率的关系曲线,以便更好地了解瞬态特性,并更好地了解它们对电绝缘系统的影响。
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