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The Prospect of Live-Line Overhead Conductor Replacement

机译:带电架空导线更换的前景

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While transmission line conductors are normally replaced with the line de-energized, the have also been replaced with the line operating at full voltage without interruption of load by providing a separate temporary phase position supported by auxiliary structures over the length of the pulling section. This procedure, successfully applied up to 345 kV, requires a major presence on the right-of-way and, since the new conductor is pulled in close proximity to energized conductors carrying full load current, measures to mitigate potential hazards associated with voltages and currents coupled to the conductor being pulled.This paper proposes full voltage, full load, in-situ re-conductoring, thus eliminating the need for a temporary phase position and the need to accommodate currents and voltages coupled to the conductor being pulled. Safety issues, such as step-touch-transfer voltages and coupling to other equipment are no more severe than in more traditional live work. Pulling and tensioning equipment are operated on insulated platforms and the old conductor is used to pull in the new. Right of way access, other than at pulling terminals, is limited to replacement of conductor clamps with pulling sheaves and vice versa when pulling is complete; thus minimizing right of way intrusion. The proposed in situ method is based on current transfer device (CTD) which conveys current from the conductor on the already restrung section onto the conductor being pulled and from the latter to the yet-to-be pulled section. The CTD makes use of a series of contactor wheels pressed against and collecting current from the moving conductor. Current flows from each contactor wheel to a fixed bus through mercury-based rotating contactors widely used in industrial applications. Stringing tension can be controlled within a band much narrower than the range seen by lines in actual service, thus allowing the process to respect minimum line-to-ground clearances. High speed grounding switches an-n-nd broken conductors sensors assure safe operation. If successfully developed, the method may provide a faster, more cost effective and less intrusive method for live conductor replacement.
机译:虽然通常用断电的线路代替传输线导体,但也可以通过在牵引部分的整个长度上提供一个由辅助结构支撑的单独的临时相位位置,将其替换为在全电压下运行而不会中断负载的线路。该程序成功应用到345 kV,需要在通行权上大量使用,并且由于将新导体拉到靠近承载满负载电流的通电导体附近,因此采取了一些措施来减轻与电压和电流相关的潜在危害本文提出了全电压,全负载,原位再导电的方法,从而消除了对临时相位位置的需要,也不再需要容纳耦合至被拉导体的电流和电压。安全问题,如阶跃式触摸转移电压和与其他设备的耦合,并不比传统的带电作业更严重。牵引和拉紧设备在绝缘平台上运行,旧导体用于引入新导体。除拉动端子外,通行权仅限于用拉绳轮代替导体夹,反之亦然。从而最大程度地减少了闯入权。所提出的原位方法基于电流传输装置(CTD),该电流传输装置将电流从已经重新悬挂的部分上的导体传输到被拉动的导体上,并从该导体传输到尚未被拉动的部分。 CTD利用一系列接触器轮压靠在动导体上并从动导体中收集电流。电流通过工业上广泛使用的汞基旋转接触器从每个接触器轮流到固定母线。可以在比实际使用中的生产线看到的范围窄得多的范围内控制拉线张力,从而使该过程能够遵守最小的生产线与地面之间的间隙。高速接地开关和不断开导体传感器确保安全操作。如果成功开发,则该方法可以为带电导体更换提供更快,更节省成本和更少干扰的方法。

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