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Improving Pulp and Paper Plant MV Transformer Protection

机译:改善纸浆和造纸厂中压变压器的保护

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摘要

In pulp and paper plants, power transformers play a critical role in process continuity. These transformers are subject to internal short circuits, external short circuits, and abnormal operating conditions. The following protection challenges to power transformers will be explored, and methods to improve the protection are provided. First, remanence in a current transformer (CT) may cause misoperation of phase differential protection due to compromised CT performance. Heavy through-faults, sympathetic inrush, and recovery inrush all cause high current. This, combined with high remanent flux, can create a security issue. IEEE CT performance calculations will be used to support the use of dual slope differential characteristics to promote secure differential protection operation when challenged with unequal CT performance. Second, on transformer energizing, the second harmonic current has been traditionally used as a means to prevent phase differential misoperation. Certain transformers may not exhibit high enough the second harmonic, causing a dependability issue if the restraint is set too low. The use of the second and fourth harmonics for inrush detection will be shown to enhance the reliability during energizing inrush situations. Third, overexcitation can occur from abnormal operation of the utility system or the plant's excitation control. Causes of overexcitation will be outlined and the use of volts per hertz protection is explored. With overexcitation occurring from system voltage rise, the phase differential protection has been traditionally blocked using the fifth harmonic restraint. This may cause an undesired nonoperation of the phase differential protection if an internal fault occurs while the transformer is overexcited, causing a delay in tripping and severe damage to the transformer. A technique using adaptive phase differential pickup value will be illustrated to overcome this challenge. Finally, on resistance-grounded power transformers, phase differential protection sensitivity for ground faults near the neutral is decreased. The use of ground differential protection will be explored and the increased sensitivity gained will be demonstrated.
机译:在制浆造纸厂,电力变压器在过程连续性中起着至关重要的作用。这些变压器会遭受内部短路,外部短路以及异常运行条件的影响。将探讨电力变压器的以下保护挑战,并提供改善保护的方法。首先,由于互感器性能受损,电流互感器(CT)的剩磁可能会引起相差保护的误操作。严重的通断,同情浪涌和恢复浪涌均会引起大电流。再加上剩余的高通量,可能会造成安全问题。当遇到不平等的CT性能挑战时,将使用IEEE CT性能计算来支持双斜率差动特性的使用,以促进安全的差动保护操作。其次,在变压器通电时,二次谐波电流传统上已用作防止相位差误操作的手段。某些变压器可能不会表现出足够高的二次谐波,如果限制设置得太低,则会引起可靠性问题。将显示使用第二和第四谐波进行浪涌检测,以增强激励浪涌情况下的可靠性。第三,由于公用事业系统的异常运行或工厂的励磁控制,可能导致过励。将概述过激励的原因,并探讨每赫兹保护电压的使用。由于系统电压上升会引起过励,因此传统上使用五次谐波抑制来阻止相差保护。如果在变压器过激时发生内部故障,可能会导致相差保护不正常工作,从而导致跳闸延迟并严重损坏变压器。将说明使用自适应相位差分拾取值的技术来克服这一挑战。最后,在电阻接地的电力变压器上,中性点附近的接地故障的相差保护灵敏度降低。将探索接地差动保护的使用,并证明增加的灵敏度。

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