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A High Precision Wireless Temperature Measurement System for Pervasive Computing Applications

机译:适用于普适计算应用的高精度无线温度测量系统

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摘要

This paper describes the design and calibration of a highly accurate temperature measurement system for pervasive computing applications. A negative temperature coefficient (NTC) thermistor with high resistance tolerance is interfaced through a conditioning circuit to a 12-bit digital converter of a wireless microcontroller. The system is calibrated to minimize the effect of component uncertainties and achieves an accuracy of ±0.03 °C on average (±0.05 °C in worst cases) in a 5 °C to 45 °C range. The calibration process is based on a continuous temperature sweep, while calibration data are simultaneously logged to reduce the delays and cost of conventional calibration approaches. An uncertainty analysis is performed to support the validity of the reported performance results. The described approach for interfacing the thermistor to the hardware platform can be straightforwardly adjusted for different thermistors, temperature ranges/accuracy levels/resolutions, and voltage ranges. The low power communication combined with the energy consumption optimization adopted enable an operation to be autonomic for several months to years depending on the application’s measurement frequency requirements. The system cost is approximately $45 USD in components, while its design and compact size allow its integration with extended monitoring systems in various pervasive computing environments. The system has been thoroughly tested and validated in a field trial concerning a precision agriculture application and is currently used in a health monitoring application.
机译:本文介绍了用于普适计算应用的高精度温度测量系统的设计和校准。具有高电阻容限的负温度系数(NTC)热敏电阻通过调节电路连接到无线微控制器的12位数字转换器。该系统经过校准,以最大程度地减少组件不确定性的影响,并在5°C至45°C的范围内实现平均±0.03°C的精度(最坏情况下为±0.05°C)。校准过程基于连续的温度扫描,同时记录校准数据以减少传统校准方法的延迟和成本。进行不确定性分析以支持所报告性能结果的有效性。可以直接针对不同的热敏电阻,温度范围/精度水平/分辨率和电压范围来直接调整所描述的用于将热敏电阻连接到硬件平台的方法。低功耗通信与所采用的能耗优化相结合,可根据应用对测量频率的要求,将操作可持续数月至数年。该系统的组件成本约为45美元,而其设计和紧凑的尺寸使其能够与各种普适计算环境中的扩展监控系统集成。该系统已在涉及精密农业应用的现场试验中经过全面测试和验证,目前已在健康监测应用中使用。

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