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Current Transformer Saturation Effects on Coordinating Time Interval

机译:电流互感器饱和对协调时间间隔的影响

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The primary function of protective devices is to remove faulted equipment from the electrical system. It is typically very advantageous for these devices to isolate as small of a section of the electrical system as possible. Overcurrent protection is the most common protection function used, as faulted equipment typically results in a large short circuit current. When overcurrent protection is employed, the overcurrent protection is typically coordinated with time so that the devices closest to the fault will operate and isolate only that section of equipment before devices farther from the fault operate and isolate larger pieces of the system. These time overcurrent devices must also be coordinated with damage curves for equipment such as buses and cables to clear the fault before the overcurrent can cause damage to the equipment. This concept of time coordination of overcurrent is well understood, and there are general guidelines applied to account for measurement error and other inaccuracies. The reduced signal levels provided to relays due to current transformer (CT) saturation are normally not considered during coordination studies. This reduced signal level will result in slower than desired operation of protective relays. Feeder relays could trip slower than upstream devices, isolating more of the power system than intended, or could allow primary equipment to be damaged before tripping. This paper will review the concept of coordinating time overcurrent relays and then discuss the concept of loss of coordination associated with CT saturation. This paper will model CT saturation from actual installations using the IEEE Power System Relaying Committee CT Saturation Calculator tool. This model data will be used to estimate the performance of protective relays. This paper will discuss methods to improve the coordination of overcurrent relays when faced with significant CT saturation.
机译:保护装置的主要功能是从电气系统中移除故障设备。对于这些设备来说,将电气系统的尽可能小部分隔离通常是非常有利的。过电流保护是最常用的保护功能,因为故障设备通常会导致较大的短路电流。当采用过电流保护时,过电流保护通常与时间配合使用,以使最靠近故障的设备仅在远离故障的设备工作并隔离系统的较大部分之前才运行并隔离那部分设备。这些时间过电流设备还必须与总线和电缆等设备的损坏曲线相协调,以便在过电流会损坏设备之前清除故障。过电流的时间协调的概念已广为人知,并且有适用于测量误差和其他不准确性的通用准则。通常在协调研究中不考虑由于电流互感器(CT)饱和而提供给继电器的信号电平降低。降低的信号电平将导致保护继电器的运行速度慢于期望的速度。馈线继电器的跳闸可能比上游设备慢,隔离的电力系统比预期的要多,或者可能使跳闸前的主要设备损坏。本文将回顾协调时间过流继电器的概念,然后讨论与CT饱和相关的失去协调的概念。本文将使用IEEE电力系统中继委员会CT饱和度计算器工具对实际安装中的CT饱和度进行建模。该模型数据将用于估计保护继电器的性能。本文将讨论当CT饱和严重时改善过流继电器协调性的方法。

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