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Novel Resistance Measurement Method: Analysis of Accuracy and Thermal Dependence with Applications in Fiber Materials

机译:新型电阻测量方法:精度和热依赖性分析及其在纤维材料中的应用

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摘要

Material resistance is important since different physicochemical properties can be extracted from it. This work describes a novel resistance measurement method valid for a wide range of resistance values up to 100 GΩ at a low powered, small sized, digitally controlled and wireless communicated device. The analog and digital circuits of the design are described, analysing the main error sources affecting the accuracy. Accuracy and extended uncertainty are obtained for a pattern decade box, showing a maximum of 1% accuracy for temperatures below 30 C in the range from 1 MΩ to 100 GΩ. Thermal analysis showed stability up to 50 C for values below 10 GΩ and systematic deviations for higher values. Power supply Vi applied to the measurement probes is also analysed, showing no differences in case of the pattern decade box, except for resistance values above 10 GΩ and temperatures above 35 C. To evaluate the circuit behaviour under fiber materials, an 11-day drying process in timber from four species (Oregon pine-Pseudotsuga menziesii, cedar-Cedrus atlantica, ash-Fraxinus excelsior, chestnut-Castanea sativa) was monitored. Results show that the circuit, as expected, provides different resistance values (they need individual conversion curves) for different species and the same ambient conditions. Additionally, it was found that, contrary to the decade box analysis, Vi affects the resistance value due to material properties. In summary, the proposed circuit is able to accurately measure material resistance that can be further related to material properties.
机译:材料抗性很重要,因为可以从中提取出不同的理化特性。这项工作描述了一种新颖的电阻测量方法,该方法在低功率,小尺寸,数字控制和无线通信的设备上适用于高达100GΩ的宽范围的电阻值。描述了设计的模拟和数字电路,分析了影响精度的主要误差源。对于一个图案十进制盒,可以获得精度和扩展的不确定性,对于温度低于30°C且温度范围为1MΩ至100GΩ的温度,其最大精度为1%。热分析表明,对于低于10GΩ的值,高达50 C的稳定性;对于更高的值,存在系统偏差。还分析了施加到测量探针上的电源Vi,在图形十进位盒的情况下,除电阻值高于10GΩ和温度高于35 C外,没有任何差异。为了评估纤维材料下的回路行为,对来自四种树种(俄勒冈松-Pseudotsuga menziesii,雪松-雪松,大西洋白蜡木-Fraxinus excelsior,板栗-Castanea sativa)的木材进行了为期11天的干燥过程。结果表明,该电路按预期提供了针对不同种类和相同环境条件的不同电阻值(它们需要单独的转换曲线)。另外,发现与十进位盒分析相反,Vi由于材料特性而影响电阻值。总而言之,所提出的电路能够准确地测量可以进一步与材料特性相关的材料电阻。

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