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首页> 外文期刊>International Journal of Electrical Power & Energy Systems >Influence of measurement uncertainty of overhead power line conductor heights on electric and magnetic field calculation results
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Influence of measurement uncertainty of overhead power line conductor heights on electric and magnetic field calculation results

机译:架空电力线导体高度的测量不确定度对电场和磁场计算结果的影响

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In this paper, it is analyzed how the measurement uncertainty of the overhead power line conductor heights influences the calculation results of electric field strength and magnetic flux density in the vicinity of the line. It is assumed that the conductor heights have been determined by measurements, by using a laser-telemeter which has a certain measurement error. The laser telemeter measures the distance to the target object and inclination, and based on these two quantities and the manually entered data concerning the height on which the telemeter is placed it calculates the height of the target object, as well as the horizontal distance to it. Each of these measured quantities (distance and inclination) is measured with a defined error. The error of the height measurement has to be calculated based on the two defined errors. The procedure for calculating these errors is explained in detail in the paper, and the errors referring to typical heights of the overhead power line conductors are determined. If the calculations of electric field strength and magnetic flux density are made for the conductor heights with the established deviation in relation to the real heights, this will reflect on the calculated field results. The influence of this factor on the results of the electric field strength and magnetic flux density calculations is thoroughly analyzed.
机译:在本文中,分析了架空电力线导体高度的测量不确定性如何影响电线附近的电场强度和磁通密度的计算结果。假设通过使用具有一定测量误差的激光测距仪通过测量确定了导体的高度。激光遥测仪测量到目标物体的距离和倾斜度,并基于这两个量以及与手动放置的有关遥测仪高度的数据,计算出目标物体的高度以及到目标物体的水平距离。这些测量量(距离和倾斜度)中的每一个都以定义的误差进行测量。高度测量的误差必须基于两个定义的误差进行计算。本文详细解释了计算这些误差的过程,并确定了与架空电力线导体的典型高度有关的误差。如果对导体高度进行电场强度和磁通密度的计算,并且相对于实际高度存在已确定的偏差,则这将反映在计算出的场结果上。彻底分析了该因素对电场强度和磁通密度计算结果的影响。

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