首页> 外文会议>IET International Conference on Advances in Power Systems Control, Operation and Management >SENSITIVITY ANALYSIS OF A FAULT IMPEDANCE MEASUREMENT ALGORITHM APPLIED IN PROTECTION OF PARALLEL TRANSMISSION LINES
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SENSITIVITY ANALYSIS OF A FAULT IMPEDANCE MEASUREMENT ALGORITHM APPLIED IN PROTECTION OF PARALLEL TRANSMISSION LINES

机译:防逆测量算法应用防波保护线的敏感性分析

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This paper presents an application of the Global Sensitivity Analysis (GSA) method in evaluating performance of impedance measurement algorithms implemented in modern Intelligent Electronic Devices (IEDs) when affected by uncertainty. To be specific, the GSA is applied in testing an algorithm for distance protection of a single transmission line in a system with two lines on the same towers. Factors contributing to uncertainty are discussed in the paper. The GSA method decomposes variance of the estimation error according to the factors and their interactions, and in this way identifies the factors that have the highest impact on the estimation error. Computation of the GSA sensitivity indices relies on the Quasi-Monte Carlo (QMC) technique with Sobol's quasi-random sampling. This is time-consuming for large number of factors therefore, fast pre-screening process based on the Morris method is implemented to remove non-influential parameters and reduce the factor space before running the QMC. The methodology is implemented using fault simulation software DIgSILENT PowerFactory to calculate fault impedance as a function of uncertain parameters (i.e. factors) as well as voltage and current signals that are inputs to an IED under test. In this simulation, factor space is sampled using Sobol's quasi-random sequence generated with the standard GSA software tool called SIMLAB. All simulations of the transmission line faults for various parameter values and calculation of the performance indices (i.e. sensitivities) is automated using the program developed in DIgSILENT Programming Language (DPL). This testing technique is applied to study the fault impedance measurement implemented in SEL-421.
机译:本文介绍了全局敏感性分析(GSA)方法在受不确定性的影响时评估在现代智能电子设备(IED)中实现的阻抗测量算法的性能。具体而言,GSA应用于测试一个在同一塔上的两条线中的单个传输线的距离保护算法。本文讨论了对不确定性有贡献的因素。 GSA方法根据因子及其交互分解估计误差的方差,以这种方式识别对估计误差具有最高影响的因素。 GSA敏感性指数的计算依赖于Sobol的准随机采样的准蒙特卡罗(QMC)技术。这对于大量因素来说,这是耗时的,因此,基于Morris方法的快速预筛分过程被实现为去除非影响力参数并在运行QMC之前减小因子空间。该方法是使用故障仿真软件DigSilent PowerFactory实现的,以计算故障阻抗作为不确定参数(即因子)以及输入到被测IED的电压和电流信号。在此模拟中,使用Sobol的“标准GSA软件工具生成的Sobol的准随机序列来对因子空间进行采样。使用DigSilent编程语言(DPL)开发的程序自动化各种参数值的传输线路故障的所有模拟和性能指标的计算(即敏感性)。应用该测试技术来研究在SEL-421中实现的故障阻抗测量。

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