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Accounting for the longitudinal regimes of asymmetry to designing the backup protection of power distribution grid

机译:考虑纵向不对称性来设计配电网的后备保护

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Urgency of the problem. Higher probability of the transverse asymmetry (short-circuit (SC)) in the 6-110 kV distribution grids as compared to the longitudinal-transverse and longitudinal asymmetry on overhead lines (phase wire breaks, breaks with SC) has led to less attention to it [1-8]. It should be noted, breaks of phase wires of overhead transmission lines (overhead lines), even at a short circuit in a network with effectively grounded neutral in many cases, are not accompanied by an increase in current comparable with the short-circuit currents [3-8]. In most cases, relay protection (RP) of the overhead lines with branch and intermediate substations is not sufficiently sensitive to these regimes [1-7], despite the fact that it can not only lead to loss of electricity in the distribution grid, but also cause damage of power transformers due to prolonged current exceeding the nominal current by 2-4 times [4-6], motors, overvoltage in the ungrounded power transformers, possible unwanted tripping by the RP on the adjacent parallel line [9-12]. We propose the following solutions of these problems: expansion of the information base of relay protection and the use of adaptive principles of its designing [13-17], which will increase sensitivity of the backup relay protection to the regimes of the longitudinal asymmetry. This approach is discussed by an example of relay protection of electrical networks including overhead lines and transformers. Using multivariable principle of designing backup protection with control of absolute and relative values of the signal parameters ensures detection of fault regimes and increase sensitivity of the RP.
机译:问题的紧迫性。与架空线上的纵向和横向不对称(相线断裂,SC断裂)相比,6-110 kV配电网中横向不对称(短路(SC))的可能性更高。它[1-8]。应该注意的是,即使在许多情况下,在中性点有效接地的网络中,即使发生短路,架空传输线(架空线)的相线也不会随短路电流而增加电流[ 3-8]。在大多数情况下,具有分支变电站和中间变电站的架空线的继电保护(RP)对这些状态并不足够敏感[1-7],尽管它不仅会导致配电网电力损耗,而且还会导致电力损耗。由于长时间超过标称电流2-4倍[4-6],电动机,未接地的电源变压器中的过电压,相邻并联线路上的RP可能引起的意外跳闸,也会导致电源变压器损坏。 。对于这些问题,我们提出以下解决方案:扩展继电保护信息库并使用其设计的自适应原理[13-17],这将增加备用继电保护对纵向不对称状态的敏感性。通过包括架空线和变压器在内的电网继电保护示例讨论了这种方法。使用多变量原理设计备用保护并控制信号参数的绝对值和相对值,可确保检测故障状况并提高RP的灵敏度。

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