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Impedance protection for power transformers

机译:电力变压器的阻抗保护

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The distance protection principle, when applied to over-head lines and cables, is well known, widely applied and well proven. Also on large generating blocks it is often applied as one of the back-up protection functions. When it comes to typical power transformers, the conventional distance protection however has some limitations which have limited its application in this context. Due to the increase in decentralized generation the risk of not clearing transformer or high voltage faults from the low voltage side has increased. The inherent remote back-up functionality in the impedance principle presents itself as an ideal measure for addressing this risk. The paper will show what is possible with an impedance based protection function in terms of detecting faults in and “through” a transformer. In particular the ability to apply the impedance protection function at the low voltage side of the transformer will be addressed. The focus will be on the need for zone specific impedance measuring principles for different tasks. Compared with conventional distance protection where it is only possible to apply a single method for all zones. It will be shown why the conventional distance protection will often fail to produce the desired results due to the inability to measure with the optimum elements (loops). The manner in which faults are “mapped” onto the measuring loops via the transformer winding arrangement and vector group are keys to understanding the impedance protection in this context. Some simulation results will be used to confirm the theoretical findings. An application example will be used to shown the implementation with a focus on setting coordination.
机译:距离保护原理,当应用于头部线和电缆时,众所周知,广泛应用,并经过很好的证明。同样在大型生成块上,它通常被用作备份保护功能之一。当涉及典型的电力变压器时,传统的距离保护具有一些限制在此上下文中的应用。由于分散的分散的增加,不清除变压器或来自低压侧的高压故障的风险增加。阻抗原理中固有的远程备用功能将自身作为解决这一风险的理想措施。本文将在检测变压器中检测故障和“通过”的故障方面,纸张将显示可能的基于阻抗的保护功能。特别是在变压器的低电压侧应用阻抗保护功能的能力将被解决。重点是针对不同任务的特定阻抗测量原理的需求。与传统距离保护相比,仅可以为所有区域应用单一方法。将示出为什么传统距离保护通常未能产生所需的结果,因为无法使用最佳元素(环)。通过变压器绕组布置和矢量组将故障“映射”在测量环上的方式是键,以了解这种情况下的阻抗保护。一些仿真结果将用于确认理论发现。应用示例将用于显示实现,重点是设置协调。

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