宽带阻抗谱技术用于聚合物电缆中各种退化部分的定位和检测

A. Siswoyo, Guanjun Zhang, Suwarno
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引用次数: 2

摘要

现场经常出现的问题是,在安装电缆时,由于各种因素,如被掐、被刺、剥落等,导致电缆出现软缺陷。在过去的一年中,许多方法都是基于无损检测,如线共振分析(LIRA),宽带阻抗谱(BIS)。时域反射仪,联合时频域反射仪进行。虽然这些测试方法中的一些已经能够检测到局部退化,但是解释缺陷的类型仍然是初级阶段。本作品采用BIS方式,总长度为33.5米的RG 58 CU电缆。退化部分是通过使用几种类型来完成的,第一种是通过弯曲超过电缆公差极限的机械损伤,第二种是通过使用T型接头连接电阻(100欧姆)或电容(10nF)值的连接器。利用ANSYS Electronics Desktop进行了仿真比较。结果是由机械压力机引起的缺陷类型,剥落零件具有不同的特征。此外,IT变换法和IFFT法均能准确检测出待测电缆总长33.5米中18.5米处的退化部分。
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Broadband Impedance Spectroscopy For Locating and Detecting Various Type Of Degraded Portion Along with Polymeric Cable
The problem that often occurs in the field is the occurrence of soft defects that occur when installing cables due to various factors such as being pinched, punctured, or peeled. Over last year, many methods are based on non-destructive tests such as Line Resonance Analysis (LIRA), Broadband Impedance Spectroscopy (BIS). Time Domain Reflectometry, Joint Time-Frequency Domain Reflectometry is carried out. Although some of these test methods have been able to detect local degradation but to interpret the type of defect is still infancy. This work uses the BIS method with RG 58 CU cable of 33.5 meters total length. The degraded portion is done by using several types, the first is to use mechanical damage by bending beyond the cable’s tolerance limit damage, and the second is by connecting the resistance (100 Ohm) or capacitance (10nF) value using the T joint connector. The results are comparing by simulation with ANSYS Electronics Desktop. The results are the type of defect caused by the mechanical press, and the peeled parts have different characteristics. Besides, the IT transform method and IFFT method both of them can detect precisely the degraded portion at 18.5 meters long of 33.5 meters total length of the cable under test.
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