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首页> 外文期刊>Instrumentation and Measurement, IEEE Transactions on >Simple and Efficient Relaxation-Oscillator-Based Digital Techniques for Resistive Sensors — Design and Performance Evaluation
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Simple and Efficient Relaxation-Oscillator-Based Digital Techniques for Resistive Sensors — Design and Performance Evaluation

机译:基于简单高效的放松 - 振荡器的电阻传感器数字技术 - 设计和性能评估

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摘要

This article proposes simple relaxation-oscillator-based digital interfacing schemes for resistive sensors in single-element and quarter-bridge forms. The proposed interfaces, equipped with novel compensation techniques, render a direct-digital output proportional to sensor resistance. These interfaces offer many meritorious features, such as simplicity of design, nonrequirement of the reference voltage, lower execution time, and negligible influences from circuit nonidealities. The methodology of the interfaces and their design criteria and error analysis are described in this article. The first two interfaces are suitable for nonremote resistive sensors, while the third interface has been developed for remotely located resistive sensors. The functionality of the proposed interfaces has been verified using simulation as well as detailed experimental studies. The developed interfaces provide a linear direct-digital output, and the maximum experimental nonlinearity is merely 0.08%. Later, a representative sensor based on the giant magnetoresistance (GMR) phenomenon is selected, characterized, and tested with the developed interfaces. The complete instrumentation system is shown to act as a linear digital magnetometer. Finally, the performance of the developed interfaces is compared and shown to be better/comparable with respect to the existing works.
机译:本文提出了基于简单的放松 - 振荡器的数字接口方案,用于单元素和四分之一桥式形式的电阻传感器。拟议的界面配备有新颖的补偿技术,使直接数字输出与传感器电阻成比例。这些界面提供了许多有功的特征,例如简单的设计,参考电压,下降的执行时间,以及从电路非前化的可忽略不计的影响。本文描述了界面的方法及其设计标准和错误分析。前两个接口适用于非耐光电阻传感器,而第三界面已经开发用于远程定位的电阻传感器。使用模拟以及详细的实验研究已经验证了所提出的界面的功能。开发的接口提供了线性直接数字输出,最大实验非线性仅仅是0.08%。之后,选择,特征,用发达的接口选择基于巨磁阻(GMR)现象的代表性传感器。完整的仪表系统显示为充当线性数字磁力计。最后,比较了开发的接口的性能,并显示了与现有工作更好/相当的。

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