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Tackling sheath problems: Latest research developments in solving operational sheath problems in underground power transmission cables

机译:解决护套问题:解决地下输电电缆中护套问题的最新研究进展

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In a power transmission cable system, the uniformly configuration of the cables between sections is sometimes difficult to achieve because of the geometrical limitation. This will cause the increase of sheath circulating current which results in the increase of sheath loss and the decrease of permissible current of the power transmission system. While the cable is on operation, because of cable aging and other unexpected reasons, sheath fault always occurs which leads to the further damage of the insulation layer and the life of the cable. These two problems were particularly addressed in this paper. Over last few years, two research groups in South Korea and the United Kingston have worked together extensively to solve these problems and made some great achievements. For tackling the problem of the increase of sheath circulating current, one special device was designed to measure this kind of current; an effective measure was proposed to reduce the current and the new measure was well protected from any further threats like cable fault and lightning. Regarding the problem with sheath fault, one data acquisition system was designed to monitor the sheath fault on field; a new fault phenomenon was discovered for the cable buried in sand; based on the new discovery, the fault was characterised, modelled and simulated; furthermore advanced signal processing techniques were introduced to extract the fault signals from the sheath, detect and locate the fault. These new solutions have either been successfully applied in practical operation of the power cable system or used in further research to propose more advanced solutions. The paper reviewed the latest developments of these new solutions.
机译:在电力传输电缆系统中,由于几何上的限制,有时难以实现部分之间的电缆的均匀配置。这将导致护套循环电流的增加,从而导致护套损耗的增加和电力传输系统的允许电流的降低。在电缆运行期间,由于电缆老化和其他意外原因,总是会发生护套故障,从而导致绝缘层的进一步损坏和电缆寿命。本文特别解决了这两个问题。在过去的几年中,韩国和金斯敦联合大学的两个研究小组为解决这些问题进行了广泛的合作,并取得了一些重大成就。为了解决护套循环电流增加的问题,设计了一种特殊的装置来测量这种电流。提出了减少电流的有效措施,并为新措施提供了良好的保护,使其免受电缆故障和雷击等任何进一步的威胁。针对护套故障的问题,设计了一套数据采集系统,用于现场监控护套故障。发现埋在沙子中的电缆有新的故障现象。基于新发现,对故障进行了表征,建模和仿真。此外,还引入了先进的信号处理技术来从护套中提取故障信号,检测并定位故障。这些新解决方案或者已经成功应用于电力电缆系统的实际操作中,或者被用于进一步研究以提出更高级的解决方案。本文回顾了这些新解决方案的最新发展。

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