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Compensator Design for Closed Loop Hall-Effect Current Sensors

机译:闭环霍尔效应电流传感器的补偿器设计

摘要

Closed loop current sensors used in power electronics applications are expected to have high bandwidth and minimal measurement transients. In this paper, a closed loop compensated Hall-effect current sensor is modeled. The model is used to tune the sensor's compensator. Analytical expression of step response is used to evaluate the performance of the PI compensator in the current sensor. This analysis is used to devise a procedure to design parameters of the PI compensator for fast dynamic response and for small dynamic error. A prototype current sensor is built in the laboratory. Simulations using the model are compared with experimental results to validate the model and to study the variation in performance with compensator parameters. The performance of the designed PI compensator for the sensor is compared with a commercial current sensor. The measured bandwidth of the designed current sensor is above 200 kHz, which is comparable to commercial standards. Implementation issues of PI compensator using operational amplifiers are also addressed.
机译:电力电子应用中使用的闭环电流传感器有望具有高带宽和最小的测量瞬变。在本文中,对闭环补偿霍尔效应电流传感器进行了建模。该模型用于调整传感器的补偿器。阶跃响应的分析表达式用于评估电流传感器中PI补偿器的性能。该分析用于设计程序,以设计PI补偿器的参数,以实现快速动态响应和较小的动态误差。实验室中内置有一个原型电流传感器。将使用该模型的仿真与实验结果进行比较,以验证模型并研究补偿器参数导致的性能变化。将针对传感器设计的PI补偿器的性能与商用电流传感器进行了比较。设计的电流传感器的测量带宽高于200 kHz,与商业标准相当。还解决了使用运算放大器的PI补偿器的实现问题。

著录项

  • 作者

    Kumar Ashish; John Vinod;

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  • 年度 2013
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  • 原文格式 PDF
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