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Impact of Coreless Current Transformer Position on Current Measurement

机译:无芯电流变压器位置对电流测量的影响

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Magnetic sensors have been widely used for current measurements in diverse industries. In order to achieve a large current measurement without an iron core structure, magnetic sensors are often arranged to be a circular array for designing a new electronic current transformer (ECT). However, this ECT with a circular array of magnetic sensors usually suffers from tradeoffs between the number of sensors and the measurement accuracy. This paper visualizes this tradeoff and proposes a 3-D magnetic-field model to analyze the impact of the magnetic sensor circular array position on current measurements. We develop an analytical expression of the current measurement errors to estimate the minimum number of required magnetic sensors and point out the acceptable deviations of the ECT position under various accuracy classes. Based on the estimation results, we design a new circular array with eight magnetic sensors and build a three-phase current measurement system. The test results demonstrate the efficiency and the robustness of the designed class-1.0 ECT, which successfully maintains accuracy class 1.0 under various position deviations in balanced or unbalanced three-phase power delivery systems.
机译:磁传感器已广泛用于各种行业的电流测量。为了在没有铁芯结构的情况下实现大电流测量,磁传感器通常被布置为用于设计新的电子电流互感器(ECT)的圆形阵列。然而,具有圆形磁传感器阵列的ECT通常遭受传感器数量和测量精度之间的折衷。本文可视化该权衡,提出了三维磁场模型,以分析磁传感器圆形阵列位置对电流测量的影响。我们开发了当前测量误差的分析表达,以估计所需的磁传感器的最小数量,并指出在各种精度等级下的ECT位置的可接受偏差。根据估计结果,我们设计具有八个磁传感器的新圆形阵列并构建三相电流测量系统。测试结果展示了设计的1.0级ECT的效率和稳健性,在平衡或不平衡三相电力输送系统中的各个位置偏差下成功地保持了精度1.0。

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