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Optimal coordination of directional earth fault overcurrent relays 67N in interconnected electric power systems

机译:互联电力系统中定向接地故障过电流继电器67N的最佳协调

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In this paper, the classic optimization model applied to coordinate 67 directional overcurrent relays in interconnected systems is applied to coordinate 67N neutral directional overcurrent relays. To do so, single-phase to neutral short-circuit currents are determined using the multiphase-multiground (4-wire) network model developed by EPRI for the OpenDSS platform. The OpenDSS network model is based on primitive impedances. This model overcomes the limitations of symmetrical components by including the effect of unbalanced loads, systems with different X/R ratios, neutral grounding through earth resistances and fault impedances on short-circuit currents passing through all relays of the system. As a key contribution, we investigate the impact of high-impedance single-phase to neutral/earth faults in the optimal clearing times and selectivity of the protection system. The results show the optimal operation time decreases as the fault impedance increases until the calculated time dial setting stagnates at the minimum value. Beyond this point, the clearing times reach a minimum and deteriorate as far the fault impedance increases.
机译:在本文中,应用于互连系统中的坐标67方向过电流继电器的经典优化模型被应用于坐标67n中立的方向过电流继电器。为此,使用EPRI开发的Multibase-MultiTround(4-Wire)网络模型来确定单相到中性的短路电流。 Opendss网络模型基于原始阻抗。该模型通过包括不平衡负载,具有不同X / R比的系统的效果来克服对称分量的局限性,通过系统的所有继电器的短路电流对通过接地电阻和故障阻抗的中性接地。作为关键贡献,我们研究了高阻抗单相对中性/接地故障的影响,在最佳的清算时间和保护系统的选择性中。结果显示最佳操作时间随着故障阻抗的增加而降低,直到计算的时间拨号设置在最小值下停滞。除此之外,由于故障阻抗增加,所清除时间达到最低且劣化。

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