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A novel power swing blocking scheme using adaptive neuro-fuzzy inference system

机译:一种采用自适应神经模糊推理系统的新型功率摆阻方案

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A power swing may be caused by any sudden change in the configuration or the loading of an electrical network. During a power swing, the impedance locus moves along an impedance circle with possible encroachment into the distance relay zone, which may cause an unnecessary tripping. In order to prevent the distance relay from tripping under such condition, a novel power swing blocking (PSB) scheme is proposed in this paper. The proposed scheme uses an adaptive neuro-fuzzy inference systems (ANFIS) for preventing distance relay from tripping during power swings. The input signals to ANFIS, include the change of positive sequence impedance, positive and negative sequence currents, and power swing center voltage. Extensive tests show that the proposed PSB has two distinct features that are advantageous over existing schemes. The first is that the proposed scheme is able to detect various kinds of power swings thus block distance relays during power swings, even if the power swings are fast or the power swings occur during single pole open conditions. The second distinct feature is that the proposed scheme is able to clear the blocking if faults occur within the relay trip zone during power swings, even if the faults are high resistance faults, or the faults occur at the power swing center, or the faults occur when the power angle is close to 180°.
机译:电网的配置或负载突然变化可能会导致功率波动。在功率摆幅期间,阻抗轨迹会沿着阻抗圆移动,并可能侵入距离继电器区域,这可能会导致不必要的跳闸。为了防止距离继电器在这种情况下跳闸,提出了一种新颖的功率摆幅阻塞(PSB)方案。所提出的方案使用自适应神经模糊推理系统(ANFIS)来防止距离继电器在功率波动期间跳闸。 ANFIS的输入信号包括正序阻抗,正序和负序电流以及功率摆幅中心电压的变化。大量测试表明,所提出的PSB具有两个明显的特征,这些特征优于现有方案。首先是所提出的方案能够检测各种功率摆幅,因此即使功率摆幅很快或在单极断开条件下发生了功率摆幅,也会在功率摆幅期间阻塞距离继电器。第二个明显的特点是,即使在功率波动期间继电器跳闸区域内发生故障,即使故障是高阻故障,或者故障发生在功率回转中心,或者故障发生,所提出的方案也能够清除阻塞。当功率角接近180°时。

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