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A Frequency Characteristics Modelling Method for Current Sensors Based on the Electromagnetic Induction Principle

机译:基于电磁感应原理的电流传感器频率特性建模方法

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摘要

Along with the development of metallurgy, electric power, military industry, etc., the sensors for high-frequency current signals are required to have better frequency characteristics, achieving the precise measuring and controlling. However, there exists no method to accurately calculate a sensor’s frequency characteristics at the designing stage, which creates a huge obstacle to manufacturing sensors. To address the issue, a frequency characteristics modelling method based on the electrical parameters is proposed in this paper and it consists of three phases: developing the relationship within a micro-unit, modelling with the recursive calculation and calculating the transfer function. With this method, the common-used simulation based on the software is transformed into a totally mathematical recursive calculation, which is quite different from the model based on the circuit topology and could avoids the overwhelming modelling workload. Moreover, an application is conducted to indicate the method’s superiority and validity.
机译:随着冶金,电力,军工等的发展,要求用于高频电流信号的传感器具有更好的频率特性,以实现精确的测量和控制。但是,没有一种方法可以在设计阶段准确计算传感器的频率特性,这给传感器的制造造成了巨大障碍。为了解决这个问题,本文提出了一种基于电参数的频率特性建模方法,该方法包括三个阶段:开发微单元内的关系,使用递归计算进行建模以及计算传递函数。通过这种方法,将基于软件的常用仿真转换为完全数学的递归计算,这与基于电路拓扑的模型有很大的不同,并且可以避免过多的建模工作量。此外,还进行了应用程序以表明该方法的优越性和有效性。

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