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Excalibur: An Accurate, Scalable, and Low-Cost Calibration Tool for Sensing Devices

机译:Excalibur:适用于传感设备的准确,可扩展且低成本的校准工具

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Calibration of an analog-to-digital converter is an essential step to compensate for static errors and ensure accurate digital output. In addition, ad-hoc deployments and operations require fault-tolerant IoT devices capable of adapting to unpredictable environments. In this paper, we present the design and implementation of Excalibur - a low-cost, accurate, and scalable calibration tool. Excalibur is a programmable platform, which provides linear current output and rational function voltage output with a dynamic range. The basic idea is to use a set of digital switches to connect with a parallel resistor network and program the digital switches to change the total resistance of the circuit. The total resistance and output frequency of Excalibur is controlled by a program communicating through the GPIO and (IC)-C-2 interfaces. The software provides two salient features to improve accuracy and reliability: time synchronization and self-calibration. Furthermore, Excalibur is equipped with a temperature sensor to measure the temperature before calibration, and a current sensor which enables current calibration without using a digital multimeter. We present the mathematical model and a solution to compensate for thermal and wire resistance effects and validate scalability by incorporating the concept of the Fibonacci sequence. Our extensive experimental studies show that Excalibur can significantly improve measurement accuracy. For example, for ATMega2560, the ADC error reduces from 0.2% to 0.01%, for ADS8353, the error reduces from 0.17% to 0.0014%, for INA219, the error reduces from 0.42% to 0.02%, and for MCP3208, the error reduces from 5.29% to 0.01%.
机译:模数转换器的校准是补偿静态误差并确保准确的数字输出的重要步骤。此外,临时部署和操作需要容错的IoT设备,这些设备必须能够适应不可预测的环境。在本文中,我们介绍了Excalibur(一种低成本,准确且可扩展的校准工具)的设计和实现。 Excalibur是一个可编程平台,可提供具有动态范围的线性电流输出和有理函数电压输出。基本思想是使用一组数字开关与并联电阻器网络连接,并对数字开关进行编程以更改电路的总电阻。 Excalibur的总电阻和输出频率由通过GPIO和(IC)-C-2接口通信的程序控制。该软件提供了两个显着的功能来提高准确性和可靠性:时间同步和自校准。此外,Excalibur配备有温度传感器以在校准前测量温度,以及一个电流传感器,无需使用数字万用表即可进行电流校准。我们提出了数学模型和解决方案,以通过结合斐波那契数列的概念来补偿热阻和导线电阻的影响并验证可扩展性。我们广泛的实验研究表明,Excalibur可以显着提高测量精度。例如,对于ATMega2560,ADC误差从0.2%降低至0.01%,对于ADS8353,误差从0.17%降低至0.0014%,对于INA219,误差从0.42%降低至0.02%,对于MCP3208,误差降低从5.29%降至0.01%。

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