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Impact of Fault Resistance on Impedance Relay: Adaptive Mho Directional Type Scheme Development Using LabVIEW

机译:防震阻力对阻抗继电器的影响:使用LabVIEW的自适应MHO定向式方案开发

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Normally, fault resistances come out with errors in the fault calculation algorithm on conventional Mho distance protection scheme which might force the relay to under-reach/over-reach based on the network conditions. With a constrained shape, Mho Directional distance elements can provide more resistive coverage while discriminating between forward and reverse faults. In this work, the recurring effect a fault resistance can have on a Mho Distance protection scheme relay is assessed and analyzed for single line-to-ground (SLG) faults for both protective schemes. Finally, an adaptive correction algorithm is applied to compensate errors introduced in the fault calculation unit using local end data. The design and simulation are performed using LabVIEW and MATLAB/SIMULINK. Magnitudes and angles of three voltages and currents are obtained through Discrete Fourier Transform (DFT). Different scenarios are carried out and validate the effectiveness of the scheme. Moreover, an improved Graphical User Interface (GUI) is developed for easy and convenient interaction between users and the relay model.
机译:通常,在传统MHO距离保护方案上的故障计算算法中的错误出现故障电阻可能强制基于网络条件迫使继电器迫使继电器到达不到范围内。由于受约束的形状,MHO方向距离元件可以提供更电阻覆盖,同时在正向和反向断层之间区分。在这项工作中,经常性效果可以对MHO距离保护方案中继进行故障电阻,并对两个保护方案进行单线到地(SLG)故障进行评估和分析。最后,应用自适应校正算法以补偿使用本地端数据的故障计算单元中引入的错误。使用LabVIEW和MATLAB / SIMULINK执行设计和仿真。通过离散的傅里叶变换(DFT)获得三个电压和电流的幅度和角度。进行不同的情景并验证该方案的有效性。此外,开发了一种改进的图形用户界面(GUI),用于用户和中继模型之间的简单方便的交互。

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