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Research of Accurate Digital Integrator for Rogowski Coil Current Transformer

机译:罗沃夫圈电流互感器精确数字集成器的研究

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In this paper, the integral precision and the DC drift problem in the digital integrator for the electronic current transformer based on Rogowski coil are studied. The related algorithms such as the integral algorithm and characteristics of DC offset problems are studied in depth. Based on these, a new digital integration algorithm is proposed by adding a delay factor α, increasing the sampling frequency, etc. A new data structure is designed by adding DC feedback, adding dual channel, etc. The simulation model built in MATLAB proves the good effect of the two aspects of the design. Compared with conventional integrators, the new digital integrator with the improved algorithm can obtain frequency responses closer to those of ideal integrator. The new data structure can effectively overcome the DC offset problems in the electronic current transformer. Further simulation results show that the designed digital integration algorithm has high accuracy, the absolute error of phase response does not exceed 1°, and the absolute error of magnitude response does not exceed 10-3(dB). The new data processing structure can completely solve the DC drift problem after about 7 cycles.
机译:在本文中,积分精度和基于罗氏线圈的电子式电流互感器的数字积分器的DC漂移问题进行了研究。相关算法,如积分算法和DC的特性偏移问题进行深入研究。此基础上,新的数字积分算法是通过将延迟因子α,增加采样频率提出等新的数据结构是通过将DC反馈,加入双信道等内置在MATLAB仿真模型证明了该设计设计两个方面良好的效果。与传统的集成相比,具有改进的算法的新的数字积分器可以得到的频率响应更接近于理想的积分器。新的数据结构,可以有效地克服了直流偏移的电子式电流互感器的问题。另外的模拟结果表明,设计的数字积分算法具有高的精度,相位响应的绝对误差不超过1°,和幅度响应的绝对误差不超过10-3(分贝)。新的数据处理结构可以约7个循环之后完全解决DC漂移问题。

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