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A novel error compensation algorithm for three-current transformer connection

机译:三电流互感器连接的新型误差补偿算法

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Under fault condition, primary current of a current transformer (CT) has high magnitude and may include decaying dc offset. This can result in saturation of magnetizing core of the CT and the secondary current is thus distorted. The distorted current is likely to cause malfunction of protection relays or control devices. Therefore error compensation methods are studied. Most attentions are paid to a single CT. However, CTs are usually connected together for different protections and control devices. For example, three CTs are linked for three-phase current protection and zero-sequence current protection of transmission lines. This paper proposes a novel error compensation algorithm for 3-CT connection. Due to the existence of neutral circuit, the three CTs are affected each other and error compensation methods for a single CT cannot be applied. The error compensation algorithm is derived based on the physical configuration of the 3-CT connection. It is evaluated by EMTP simulation data and case studies are included. Protection relays and control devices can achieve better performance using the compensated current measurements.
机译:在故障条件下,电流互感器(CT)的初级电流具有很高的幅值,并且可能包括衰减的直流偏移。这可能导致CT的磁化磁芯饱和,从而使次级电流失真。电流失真可能会导致保护继电器或控制设备发生故障。因此,研究了误差补偿方法。最关注的是单个CT。但是,CT通常连接在一起以提供不同的保护和控制设备。例如,三个CT链接在一起,用于传输线的三相电流保护和零序电流保护。提出了一种新型的3-CT连接误差补偿算法。由于中性线的存在,三个CT相互影响,因此无法应用单个CT的误差补偿方法。误差补偿算法是基于3-CT连接的物理配置得出的。它通过EMTP仿真数据进行评估,并包括案例研究。保护继电器和控制设备可以通过补偿电流测量获得更好的性能。

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