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Avoid Current Transformer Saturation Using Adjustable Switched Resistor Demagnetization Method

机译:使用可调开关电阻消除方法避免电流互感器饱和度

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摘要

In some conditions, the flux in the core of current transformers (CT) increases. If this increase in flux leads to saturation of the protective core, it can create a lot of problems in power system protection. One of the hardware solutions to prevent the occurrence of core saturation in CT is the fixed switched resistor demagnetization method. Due to disadvantages such as dependence on CT parameters and inefficiencies in severe core saturation, the use of this method has not been expanded. This paper proposes a new method to improve the fixed switched resistor demagnetization method. In the proposed method, instead of using a fixed resistor in the circuit topology, an adjustable resistor with an auxiliary transformer is used. In the previous method, the control process is based on flux estimation from the secondary terminal voltage. The control process in the proposed method is based on the second derivative of CT secondary current. To verify the effectiveness of the suggested method, first simulation is done using COMSOL and MATLAB softwares and then all necessary electronic and control circuitry are designed and built. Experimental test is carried out on a 20 kV- 500/5 A CT. The simulation and experimental results show that this method prevents the CT from saturation in case of short circuit faults. The main advantages of this method are independent to CT parameters and efficient in severe core saturation.
机译:在某些条件下,电流互感器(CT)的核心中的通量增加。如果磁通量的增加导致保护芯的饱和,它可以在电力系统保护中产生很多问题。防止CT中核心饱和情况的硬件解决方案之一是固定开关电阻消除方法。由于缺点,例如对CT参数的依赖性和严重核心饱和度的低效率,但尚未扩展该方法的使用。本文提出了一种提高固定开关电阻消磁方法的新方法。在所提出的方法中,代替在电路拓扑中使用固定电阻,使用具有辅助变压器的可调电阻。在先前的方法中,控制过程基于来自次级端电压的磁通估计。所提出的方法中的控制过程基于CT二次电流的第二导数。为了验证建议方法的有效性,首先使用COMSOL和MATLAB软件进行仿真,然后设计并构建所有必要的电子和控制电路。实验测试在20 kV- 500/5 A CT上进行。模拟和实验结果表明,在短路故障情况下,该方法可防止CT饱和。该方法的主要优点与CT参数无关,并且在严重的核心饱和度中有效。

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