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Impacts of Superconducting Cables on the Dynamic Response of Current Transformers and Protective Relaying Devices

机译:超导电缆对电流互感器和继电保护装置动态响应的影响

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Replacing conventional ac transmission lines with superconducting cables provides performance advantages since superconducting cables have lower series inductance and very low ac resistance. However, the very low resistance will also have an impact on the dynamic response of current transformers (CTs) and on the response of protective relays that process their current measurements. Whenever a short circuit occurs on an ac power system the resulting current will have both fundamental frequency ac response and a decaying dc offset. The amplitude of the dc offset is dependent on the point on the ac voltage wave where the fault occurs, which is random. The rate of this decay depends on the R-L time constant of the ac circuit involved in the current path. A larger time constant increases the odds that a CT will enter saturation. Superconducting cables will increase the R-L time constant, and potentially increase the severity of CT saturation, creating error in the secondary current used by the protective relays. For many protection functions this error will delay the protective action, but in a few cases it may cause circuit breakers to trip in error. This paper will model a sample system with differing levels of penetration of superconducting cables and look at the impact of the superconducting cables on the dynamic CT response and on different protective relay functions and discuss potential solutions.
机译:用超导电缆代替传统的交流输电线路具有性能优势,因为超导电缆具有较低的串联电感和非常低的交流电阻。但是,极低的电阻也会影响电流互感器(CT)的动态响应以及处理其电流测量值的保护继电器的响应。每当交流电源系统发生短路时,所产生的电流将具有基本频率的交流响应和衰减的直流偏移。直流偏移的幅度取决于发生故障的交流电压波上的点,该点是随机的。这种衰减的速率取决于电流路径中所涉及的交流电路的R-L时间常数。较大的时间常数会增加CT进入饱和状态的几率。超导电缆将增加R-L时间常数,并可能增加CT饱和的严重程度,从而在保护继电器使用的次级电流中产生误差。对于许多保护功能,此错误将延迟保护动作,但在某些情况下,可能会导致断路器错误跳闸。本文将对具有不同渗透水平的超导电缆的样本系统进行建模,并研究超导电缆对动态CT响应和不同保护继电器功能的影响,并讨论潜在的解决方案。

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