College of Instrumentation & Electrical Engineering, Jilin University, Changchun 130012, China.
Sensors (Basel). 2022 Aug 2;22(15):5777. doi: 10.3390/s22155777.
The grounding resistance of a substation is an important parameter that should be designed within a reasonable range to prevent operational accidents from damaging electrical equipment due to overvoltage and ensure the safe operation of an electrical system. However, simply and accurately measuring the grounding resistance of a substation has been a difficult problem faced by engineers and technicians for a long time. This paper proposes a method of denoising by applying the m-sequence correlation identification technology to the measurement of substation resistance. We established a grounding resistance model of a grounding grid and used LabVIEW to simulate it. Based on system identification and correlation function theory, pseudorandom signals or sinusoidal signals were used as excitation signals. The output results of the system were compared when pseudorandom signals and sinusoidal signals were used as excitation signals. It was verified that the grounding resistance value measured by a pseudorandom signal was closer to the actual value, which met the design requirements. Laboratory test results verify that the method of calculating grounding resistance based on the correlation analysis method is feasible.
变电站的接地电阻是一个重要参数,应在合理范围内设计,以防止过电压损坏电气设备而导致运行事故,并确保电气系统的安全运行。然而,简单而准确地测量变电站的接地电阻一直是工程师和技术人员面临的难题。本文提出了一种通过将 m 序列相关识别技术应用于变电站电阻测量来进行噪声消除的方法。我们建立了接地网的接地电阻模型,并使用 LabVIEW 对其进行了模拟。基于系统识别和相关函数理论,使用伪随机信号或正弦信号作为激励信号。当使用伪随机信号和正弦信号作为激励信号时,比较系统的输出结果。验证了使用伪随机信号测量的接地电阻值更接近实际值,满足设计要求。实验室测试结果验证了基于相关分析方法计算接地电阻的方法是可行的。