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Real-Time Wide-Area Disturbance Monitoring and Protection Methodology for EHV Transmission lines

机译:超高压输电线路实时广域扰动监测与保护方法

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摘要

This paper presents a real-time wide-area disturbance monitoring and protection (RWADMP) methodology for the backup protection of EHV transmission lines in smart grids (SG). The proposed methodology employs harmonic phasors (1st, 2nd, and 3rd order) of 3-Φ current signals estimated using multi-phasor measurement unit (MPMU) for fault detection, classification, and discrimination of faulty line accurately. Further, the stressed condition such as load encroachment is discriminated from fault. The phasors which were estimated at MPMU are communicated to phasor data concentrator (PDC) at system protection center. MPMU is realized in hardware using NI cRIO, current sensor and GPS module in conjunction with Lab VIEW software. Performance of the proposed methodology has been validated on the scale down laboratory models of 400 kV EHV transmission systems such as two-generator two-bus and two-generator three-bus systems. The experimental results show the efficacy of the proposed methodology in improving the overall reliability of the protection system. Also, the proposed methodology is less sensitive to the different fault conditions like fault resistance (FR) and fault distance (FD). Further, the user-friendly Lab VIEW monitoring system enhances the visualization of the power system state in PDC. Also, it helps the grid operator to take appropriate action in case of system stressed condition and avoids the mal-operation of the protective devices.
机译:本文提出了一种用于智能电网(SG)中的超高压输电线路后备保护的实时广域干扰监视和保护(RWADMP)方法。所提出的方法利用多相量测量单元(MPMU)估算的3-Φ电流信号的谐波相量(一阶,二阶和三阶)进行故障检测,分类和故障线的准确识别。此外,将诸如负载侵占之类的应力条件与故障区分开。在MPMU中估计的相量被传送到系统保护中心的相量数据集中器(PDC)。 MPMU使用NI cRIO,电流传感器和GPS模块以及Lab VIEW软件在硬件中实现。该方法的性能已在400 kV超高压输电系统(例如两发电机两母线和两发电机三母线系统)的按比例缩小的实验室模型上得到验证。实验结果表明,所提方法在提高保护系统整体可靠性方面是有效的。同样,所提出的方法对诸如故障电阻(FR)和故障距离(FD)之类的不同故障条件不太敏感。此外,用户友好的Lab VIEW监视系统增强了PDC中电源系统状态的可视化。而且,它有助于电网操作员在系统处于压力状态的情况下采取适当的措施,并避免保护装置的误操作。

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