Smart Power Swing Protection for the Line with Tap

Anastasia Nikitina, V. Petrov, V. Naumov
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Abstract

Ensuring the selectivity of power swing protection on lines with taps is significantly complicated by the impossibility of measuring the tap power value. The problem is aggravated by the fact that the power of tap varies widely. Usually, known solutions are based on the use of either maximum or average value of the tap power. As a result, both approaches are lack of the optimal solution and lead to a significant narrowing of the protection zone. The article proves that the tap at the protection zone introduces the greatest error in the estimation of the power swing center location if it is located directly near the installation site of the power swing protection. A new method of tap power accounting in the functioning of power swing protection is proposed. It is established that the optimal setting of the power swing protection, which ensures the uniformity of the error in accounting the tap power value in the algorithmic model of the network, is the complex power vector equidistant from the upper and lower boundaries of the tap complex power. The importance of introducing an extended zone into the protection zone is shown, where the power swing protection device operates with a delay.
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带抽头线路的智能功率摆动保护
由于无法测量抽头功率值,确保有抽头线路上功率摆动保护的选择性变得非常复杂。水龙头的功率变化很大,这一事实使问题更加严重。通常,已知的解决方案是基于使用最大或平均值的分接功率。因此,这两种方法都缺乏最优解,导致保护区明显缩小。本文证明,如果保护区内的抽头直接位于功率摆振保护装置的安装位置附近,则对功率摆振中心位置的估计误差最大。提出了一种在功率摆动保护中进行分接功率核算的新方法。建立了保证网络算法模型中分接功率值计算误差均匀性的功率摆幅保护的最优整定是与分接复功率上下边界等距的复功率矢量。在保护区域中引入扩展区域的重要性显示,其中功率摆动保护装置以延迟操作。
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