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A Linearizing Digitizer for Wheatstone Bridge Based Signal Conditioning of Resistive Sensors

机译:基于惠斯通电桥的线性化数字化仪电阻传感器信号调理

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Output of a typical Wheatstone bridge, when it is connected to measure from a single or a dual resistive element, possesses non-linear characteristic. This paper presents a novel signal conditioning scheme, which provides a linear-digital output directly from the resistive sensor(s) that are connected in such bridge configurations. In the present scheme, the input stage of a dual-slope analog-to-digital converter (DSADC) is suitably augmented to incorporate the quarter-bridge and (or) half-bridge containing the resistive sensor as an integral part of the DSADC. A combination of the current mode excitation and wisely selected integration and de-integration operations of the DSADC enable to achieve linearization in the digitization process itself, leading to an overall reduction in the complexity level and number of blocks used keeping the high accuracy unaltered. A detailed analysis has been conducted to quantify the effect of various sources of errors in the output of the DSADC. The details are presented in the paper. The proposed method not only provides a linear digital output but also drastically reduces the effect on the output due to the lead wires that connect the Wheatstone bridge and the DSADC. Thus, the proposed scheme is well suited for the situations where the sensor(s) is (are) remotely located at a distance. Simulation studies as well as results from a prototype developed and tested establish the practicality of the proposed scheme. The inherent non-linearity of the Wheatstone bridge is reduced by nearly two orders of magnitude.
机译:典型的惠斯通电桥的输出连接到一个或两个电阻元件以进行测量时,具有非线性特性。本文提出了一种新颖的信号调节方案,该方案可直接从以这种电桥配置连接的电阻式传感器提供线性数字输出。在本方案中,适当地增加了双斜率模数转换器(DSADC)的输入级,以将包含电阻传感器的四分之一和/或半桥作为DSADC的组成部分。 DSADC的电流模式激励与明智选择的积分和解积分操作相结合,可实现数字化过程本身的线性化,从而总体上降低了复杂度,减少了所使用的模块数量,从而保持了高精度。已经进行了详细的分析,以量化DSADC输出中各种错误源的影响。详细信息在本文中介绍。所提出的方法不仅提供线性数字输出,而且由于连接惠斯通电桥和DSADC的引线而大大降低了对输出的影响。因此,所提出的方案非常适合传感器远距离放置的情况。仿真研究以及开发和测试的原型的结果证明了该方案的实用性。惠斯通电桥固有的非线性度降低了近两个数量级。

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