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Numerical algorithm for adaptive autoreclosure and protection of medium-voltage overhead lines

机译:自适应自动重合闸和中压架空线保护的数值算法

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摘要

In this paper, a new numerical algorithm for medium-voltage overhead lines, autoreclosure, is described. The subfunction of the autoreclosure scheme that would inhibit the first shot after detecting a solid fault (as compared with an arc fault) is evaluated and presented. It is based on one terminal data processing and it is derived in the time domain. In the algorithm the fault nature (arcing or arcless fault) is estimated using linear least error squares estimation technique. The arc, occurring on the fault point during arcing faults on overhead lines, is included in the problem consideration. In addition, by introducing the prefault load current in the existing model, better algorithm performances and a more reliable adaptive algorithm for autoreclosure are achieved. The algorithm is derived for the case of three-phase symmetrical fault. The results of the algorithm testing through computer simulation are presented. Particularly the algorithm sensitivity to arc elongation effects, supplying network parameters, and processing of the signals in the presence of harmonics are tested and analyzed.
机译:本文介绍了一种用于中压架空线的新数值算法,即自动重合闸。评估并提出了自动重合闸方案的子功能,该功能将在检测到固体故障(与电弧故障相比)后抑制第一击。它基于一个终端数据处理,并且在时域中派生。在该算法中,使用线性最小误差平方估计技术估计故障性质(电弧或无弧故障)。问题考虑中包括在架空线上发生电弧故障期间在故障点上发生的电弧。另外,通过在现有模型中引入故障前负载电流,可以实现更好的算法性能和更可靠的自适应自动重合闸算法。该算法针对三相对称故障情况而推导。给出了通过计算机仿真进行算法测试的结果。特别地,测试和分析了算法对电弧延伸效果,提供的网络参数以及在谐波存在下信号处理的敏感性。

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