Modeling of the operation features of remote protection of backup transformers for the own needs of power units of a nuclear power plant during self-start of powerful motor loads

V. Rozhkov, K. Krutikov, S. G. Butrimov, A. M. Sokolov
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Abstract

In the article, using computer modeling, an analysis of the operation of distance protection of backup transformers is carried out, providing alternative power supply for the own needs of a nuclear power plant through a backup busbar when disconnected from the power system. During the transition from the main network to the backup network, there is a short period of power off to the sections. At the same time, the powerful motor loads of the sections that have received power begin to operate in the freewheel braking mode. Then the reserve is automatically switched on, which can occur at a more or less favorable moment. At an unfavorable moment, self-starting may be electrically more severe than a short circuit on the busbar. When combining a new network from a backup auxiliary transformer and an autonomous circuit of running machines, transient processes of electromagnetic interaction between machines switching to generator mode and the new network arise. There are some optimal favorable moments for merging networks when it is advisable to carry out self-starting. Due to the complexity of the mathematical description with a high order system of equations and a large number of interaction objects, it is advisable to study these processes using computer modeling. A practical question, which is answered by the calculations and computer modeling, concerns the value of the distance protection setting for the backup transformer for auxiliary needs. Using the developed structural simulation model in MatLab, a series of experiments was carried out on the run-down and self-starting of auxiliary sections with their given composition and load. The range of self-start time corresponded to the operation of automatic switching on of the reserve sections by distance protection. Calculations and modeling show that the adopted setting can be adjusted, ensuring protection of a larger length of the busbar with possible options for connecting auxiliary sections to it. The model is supplemented with an add-on in the form of an external program for detailed processing and visualization of data obtained from oscilloscopes of the MatLab structural model.
在大功率电机负载自启动期间,为满足核电站发电机组自身需要而对备用变压器进行远程保护的运行特征建模
文章利用计算机建模,对备用变压器距离保护的运行进行了分析,当与电力系统断开时,通过备用母线为核电厂自身需要提供替代电源。在从主网向备用网过渡的过程中,会出现短时间的分段断电。与此同时,获得供电的部分的大功率电机负载开始以空转制动模式运行。然后自动开启备用电源,这可能发生在较有利或较不利的时刻。在不利时刻,自启动的电气影响可能比母线短路更严重。在将备用辅助变压器的新网络与运行中的机器的自主电路相结合时,切换到发电机模式的机器与新网络之间会产生电磁相互作用的暂态过程。在合并网络时,有一些最佳的有利时机,此时最好进行自启动。由于高阶方程系统和大量相互作用对象的数学描述非常复杂,因此最好使用计算机建模来研究这些过程。计算和计算机建模回答了一个实际问题,即辅助需求备用变压器的距离保护定值。利用 MatLab 中开发的结构仿真模型,对给定组成和负荷的辅助部分的运行和自启动进行了一系列实验。自启动时间的范围与通过距离保护自动开启备用段的操作相对应。计算和建模表明,所采用的设定值可以调整,以确保保护更长的母线,并可选择将辅助部分连接到母线上。该模型还配有一个外部程序插件,用于对从 MatLab 结构模型的示波器中获得的数据进行详细处理和可视化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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