Behaviour of HVDC Cables Under Variable Load Conditions: PD Detection and Recognition

Alessio Di Fatta, P. Romano, G. Rizzo, A. Imburgia, F. Viola, G. Ala
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Abstract

HVDC technology is widely used today in the field of energy transmission over long distances and with underground or submarine cable lines. The advantages of these applications lie in the absence of stability and transport capacity problems which characterize an equivalent HVAC line as the distance increases. However, new challenges arise in the transition from HVAC to HVDC technology. The accumulation of space charge plays a fundamental role in the ageing process of the component and in the possible triggering of partial discharges. Furthermore, the dependence of the conductivity of the dielectric material on the temperature causes the load condition, whereby a radial thermal gradient is established, to influence this charge distribution and therefore on the electric field profile. The aim of this paper is to analyze the effect of the load conditions on the behaviour of an HVDC cable evaluated in terms of partial discharge activity. The test object of this work is an extruded HVDC model cable with an artificial insulation defect. With a transformer-like device a current was induced to simulate the operating conditions. The acquired data concern two tests carried out with and without load current. Following the measurements, the pulse classification was performed with a new algorithm based on the cross-correlation operation. The results show that in the absence of a thermal gradient the partial discharge activity is very low and most of the acquired pulses are identified as noise. Instead, in the presence of a thermal gradient, a more intense activity is observed.
变负载条件下HVDC电缆的行为:PD检测和识别
高压直流输电技术目前广泛应用于长距离能源传输和地下或海底电缆线路。这些应用的优点在于没有稳定性和运输能力问题,这些问题是随着距离的增加而成为等效HVAC线路的特征。然而,在从暖通空调技术向高压直流技术过渡的过程中,出现了新的挑战。空间电荷的积累在元件的老化过程和可能引发的局部放电中起着重要作用。此外,介电材料的电导率对温度的依赖导致了负载条件,从而建立了径向热梯度,从而影响了电荷分布,从而影响了电场分布。本文的目的是分析负载条件对高压直流电缆性能的影响,以局部放电活度进行评估。本工作的试验对象是带有人工绝缘缺陷的挤压式直流模型电缆。用一个类似变压器的装置感应电流来模拟运行条件。获得的数据涉及在有负载电流和没有负载电流的情况下进行的两次试验。在测量之后,使用基于互相关运算的新算法进行脉冲分类。结果表明,在没有热梯度的情况下,局部放电活度很低,获得的脉冲大部分被识别为噪声。相反,在存在热梯度的情况下,观察到更强烈的活动。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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