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首页> 外文期刊>Dielectrics and Electrical Insulation, IEEE Transactions on >A novel on-line cable pd localisation method based on cable transfer function and detected pd pulse rise-time
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A novel on-line cable pd localisation method based on cable transfer function and detected pd pulse rise-time

机译:基于电缆传递函数和检测到的pd脉冲上升时间的新型在线pdp定位方法

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This paper presents a novel Partial Discharge (PD) localisation method, based on PD pulse Rise-Time and Transfer Function (RTTF), for use in on-line cable PD monitoring systems. This is based on the change in rise time as a function of cable length along which a PD pulse has propagated. A comparison with four other well-known location techniques, i.e. Time-Domain Reflectometry (TDR), Phase difference, Arrival Time Analysis (ATA) and Amplitude-Frequency (AF) mapping has been made and presented. Analysis shows that the TDR and Phase difference methods, although requiring a single measurement point, are only applicable to short length cable systems as both incident pulse and reflected pulse should be observable when it reaches the detection point. On the other hand, the ATA and AF mapping, which can be applied to longer cable systems, need to install detectors at multiple points and detect synchronously. In comparison, PD localisation by the proposed RTTF method, which requires detection of the incident pulse at only one measurement point, can be used to localise a PD source which is further away from the PD detection point than other methods and can be used in on-line PD monitoring systems. As on-line PD monitoring sensors commonly comprise of a high frequency current transformer (HFCT) and a high-pass filter, the rise time of detected PD pulses depends on the attenuation of the cable, the HFCT used and the filter applied. Simulations of pulse propagation in a cable and PD monitoring system are performed, based on analyses in the frequency domain using the concept of transfer functions. Results of RTTF from the simulations have been verified by laboratory experiments and on-site PD measurements, which provide evidence that the RTTF method is a very valuable and useful PD localisation technique.
机译:本文提出了一种新的基于PD脉冲上升时间和传递函数(RTTF)的局部放电(PD)定位方法,用于在线电缆PD监测系统。这是基于上升时间的变化,PD脉冲沿电缆长度的变化而变化。与四种其他众所周知的定位技术进行了比较,即时域反射仪(TDR),相位差,到达时间分析(ATA)和幅度-频率(AF)映射。分析表明,TDR和相位差方法虽然需要一个测量点,但仅适用于短距离电缆系统,因为入射脉冲和反射脉冲到达检测点时都应可以观察到。另一方面,可以应用于较长电缆系统的ATA和AF映射需要在多个点安装检测器并进行同步检测。相比之下,通过建议的RTTF方法进行的PD定位仅需要在一个测量点上检测入射脉冲,可以用于定位PD源,该PD源比其他方法更远离PD检测点,并且可以用于在线PD监控系统。由于在线PD监视传感器通常由高频电流互感器(HFCT)和高通滤波器组成,因此检测到的PD脉冲的上升时间取决于电缆的衰减,所用的HFCT和所使用的滤波器。基于传递函数概念在频域中的分析,对电缆和PD监视系统中的脉冲传播进行了仿真。 RTTF的仿真结果已通过实验室实验和现场PD测量进行了验证,这提供了RTTF方法是非常有价值和有用的PD定位技术的证据。

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