论文标题
与功率变压器和相位角度调节器的互连系统中内部故障和其他瞬变的区分
Discrimination of Internal Faults and Other Transients in an Interconnected System with Power Transformers and Phase Angle Regulators
论文作者
论文摘要
这项研究解决了准确检测内部故障的问题以及对相位角度调节器(PAR)和功率变压器的5总线互连系统中瞬态分类的问题。该分析防止了除断层以外的其他瞬态的差异继电器的不良操作,包括磁性化,交感神经inrush,带有CT饱和的外部故障,电容器交换,非线性载荷切换和铁雷剂。梯度提升分类器(GBC)用于将内部故障与基于变更检测器注册的3相差分电流的1.5个周期的瞬态干扰区分开。检测到内部故障后,使用GBC来定位故障单元(电源变压器,PAR系列或激动人心的单元)并确定故障的类型。如果检测到瞬态干扰,另一个GBC将它们分类为六个瞬态干扰。使用信息增益获得的五个最相关的频率和时间域特征用于训练和测试分类器。提出的算法以99.95%的平衡精度将内部断层与其他瞬变区分开。有故障的变压器单元的位置为99.5%,并且均衡精度为99.3%。此外,该方案的可靠性已通过信号中所涉及的变压器,CT饱和度以及噪声水平的不同评级和连接进行验证。这些GBC分类器可以与常规的差分继电器一起工作,并对其操作提供监督控制。 PSCAD/EMTDC软件用于模拟瞬变,并开发了两种和三方面的变压器模型,用于创建内部故障,包括转移和跨界故障。
This study solves the problem of accurate detection of internal faults and classification of transients in a 5-bus interconnected system for Phase Angle Regulators (PAR) and Power Transformers. The analysis prevents mal-operation of differential relays in case of transients other than faults which include magnetizing inrush, sympathetic inrush, external faults with CT saturation, capacitor switching, non-linear load switching, and ferroresonance. A gradient boosting classifier (GBC) is used to distinguish the internal faults from the transient disturbances based on 1.5 cycles of 3-phase differential currents registered by a change detector. After the detection of an internal fault, GBCs are used to locate the faulty unit (Power Transformer, PAR series, or exciting unit) and identify the type of fault. In case a transient disturbance is detected, another GBC classifies them into the six transient disturbances. Five most relevant frequency and time domain features obtained using Information Gain are used to train and test the classifiers. The proposed algorithm distinguishes the internal faults from the other transients with a balanced accuracy of 99.95%. The faulty transformer unit is located with a balanced accuracy of 99.5% and the different transient disturbances are identified with a balanced accuracy of 99.3%. Moreover, the reliability of the scheme is verified for different rating and connection of the transformers involved, CT saturation, and noise levels in the signals. These GBC classifiers can work together with a conventional differential relay and offer a supervisory control over its operation. PSCAD/EMTDC software is used for simulation of the transients and to develop the two and three-winding transformer models for creating the internal faults including inter-turn and inter-winding faults.