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Offline Fault Localization Technique on HVDC Submarine Cable via Time-Frequency Domain Reflectometry

机译:时频域反射法在HVDC海底电缆上的离线故障定位技术

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Fault localization is one of the most significant aspects in the maintenance of high-voltage direct current (HVDC) submarine cables that have unconventional installation characteristics such as long cable lengths and underwater installation locations. In order to protect and diagnose the cable, an improved fault localization technique, i.e., time-frequency domain reflectometry (TFDR) and tangent distance pattern recognition are proposed in this paper. The fault location information of the HVDC submarine cables can be obtained from the tangent distance, to support the results of TFDR. To verify the performance of the proposed method, a commercial HVDC submarine cable is used in the experiments. A test bed is constructed for creating a similar environment with that of submarine cable and filled with sea water. Both low- and high-impedance faults are emulated in this experiment by local insulation faults with iron, sea water, and air. The theoretical concepts and experimental results of the proposed method are presented. It is expected that the proposed method can improve the reliability of real-world HVDC power systems.
机译:故障定位是维护高压直流(HVDC)海底电缆中最重要的方面之一,这些电缆具有非常规的安装特性,例如电缆长度长和水下安装位置。为了保护和诊断电缆,本文提出了一种改进的故障定位技术,即时频域反射法(TFDR)和切线距离模式识别。可以从切线距离获得HVDC海底电缆的故障位置信息,以支持TFDR的结果。为了验证所提出方法的性能,在实验中使用了商用HVDC海底电缆。建造了一个测试台,以创造与海底电缆类似的环境,并充满海水。在本实验中,低阻抗故障和高阻抗故障都由铁,海水和空气的局部绝缘故障模拟。提出了该方法的理论概念和实验结果。期望该方法可以提高现实世界的高压直流输电系统的可靠性。

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