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A Single-Ended Fault Location Method Based on Distributed Parameter Model for Half-Wavelength AC Transmission Line

机译:基于波长分布参数模型的半波长交流输电线路单端故障定位方法

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With the increasing demand for ultra-long distance and ultra-high power transmission, half-wavelength transmission technology has attracted the attention of many experts and scholars. However, most scholars mainly focus on the steady-state operation characteristics, protection scheme and other aspects, less attention to fault location. A Single-ended Fault Location Method based on distributed parameter model is proposed in this paper. Under the distributed parameter model, the voltage and current at each point along the line can be calculated through the initial electrical quantity. Because the length of the half wavelength line is too large, a calculation point is set at a certain distance at every interval to reduce the computation. By comparing the voltage values of the calculation points along the line, the point with the smallest voltage is the point nearest to the fault point. Using the voltage and current of the point, the differential equation is constructed, and the fault location is accurately calculated by solving the equation with the least square method. RTDS simulation proves that this method is suitable for half-wavelength line, and it is not affected by fault location and fault type, and has better ranging performance.
机译:随着对超长距离和超高功率传输的需求不断增长,半波长传输技术引起了众多专家学者的关注。但是,大多数学者主要关注稳态工作特性,保护方案等方面,而很少关注故障的定位。提出了一种基于分布参数模型的单端故障定位方法。在分布参数模型下,可以通过初始电量来计算沿线的每个点的电压和电流。由于半波长线的长度太大,因此在每个间隔将计算点设置为一定距离以减少计算量。通过比较沿线的计算点的电压值,电压最小的点就是最接近故障点的点。利用该点的电压和电流,构造微分方程,并通过用最小二乘法求解方程来精确计算故障位置。 RTDS仿真证明该方法适用于半波长线,不受故障位置和故障类型的影响,具有较好的测距性能。

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