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Two-dimensional curve variation approach-based quick fault detection and classification scheme for series compensated transmission line system

机译:基于二维曲线变化法的串联补偿传输线系统快速故障检测与分类方案

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摘要

Series compensation improves the power transfer capability and the stability of a transmission system. Inclusion of series compensating devices along with their protecting equipment introduces the problems to conventional protective relaying during power system faults. In this paper, a new protection strategy is proposed based on the instantaneous active and reactive power variations. The applicability of the proposed method to a series compensated transmission system is studied with numerous fault cases. Instantaneous power quantities are measured, and respective active and reactive power quantities are reproduced onto a two-dimensional coordinated system with reactive power as ordinate and active power as abscissa. The locus of ordered pair of instantaneous power quantities (p(t), q(t)) forms a P-Q trajectory. The quadrant in which the starting point of P-Q trajectory (p(0)(t), q(0)(t)) lies is computed and taken as reference. This P-Q portrait is analyzed to detect the fault depending on the condition that the operating point shifts its quadrant under fault condition. Fault will be classified based on the polarities of extracted powers. Classification tree is formed by a set of yeso consequences to classify the fault. The proposed method is tested for different types of faults, at distinct locations and fault inceptions on 500-kV, 50-Hz test system. Results thus obtained show the potentiality of proposed strategy for the protection of series compensated transmission system concerning the speed, computational burden, and mathematical complexity.
机译:串联补偿提高了功率传输能力和传输系统的稳定性。串联补偿装置及其保护设备的引入将电力系统故障期间的常规继电保护引入了问题。本文提出了一种基于瞬时有功功率和无功功率变化的新型保护策略。研究了该方法在多种故障情况下对串联补偿传输系统的适用性。测量瞬时功率量,并将有功功率和无功功率分别复制到二维坐标系中,其中无功功率为纵坐标,有功功率为横坐标。有序对瞬时功率量(p(t),q(t))的轨迹形成P-Q轨迹。计算P-Q轨迹的起点(p(0)(t),q(0)(t))所在的象限,并将其作为参考。分析此P-Q肖像以根据故障点下工作点移动其象限的条件检测故障。故障将根据提取功率的极性进行分类。分类树由一组是/否结果组成,以对故障进行分类。在500 kV,50 Hz测试系统上,针对不同类型的故障,在不同的位置和故障开始对所提出的方法进行了测试。由此获得的结果表明,在速度,计算负担和数学复杂度方面,所提出的用于保护串联补偿传输系统的策略的潜力。

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