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Self-calibration/compensation technique for microcontroller-based sensor arrays

机译:基于微控制器的传感器阵列的自校准/补偿技术

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摘要

Described is a generalized technique for real-time gain and thermal compensation of embedded microcontroller-based sensor arrays. By incorporating a single or multiple low-cost, uncalibrated thermal sensor(s) into a software feedback loop, a self-normalized calibration/compensation table for each sensor can be generated and stored in EEPROM for later use in real-time signal acquisition. The compensation is accomplished by executing a one-time initialization software routine as the sensor array is cycled through the expected temperature range. To achieve compensation to within the system resolution, the required correction loop bit width will be different from that of the system bit width. In addition to temperature compensation, the technique also includes correction for gain and voltage offset errors introduced by the analog signal conditioning as well as A/D conversion errors. An example of the technique is presented using a 68HC711E9 microcontroller for real-time acquisition and compensation of a four-element strain gage array.
机译:描述了一种用于基于嵌入式微控制器的传感器阵列的实时增益和热补偿的通用技术。通过将一个或多个低成本,未经校准的热传感器集成到软件反馈环路中,可以为每个传感器生成一个自标准化的校准/补偿表,并将其存储在EEPROM中,以供以后在实时信号采集中使用。通过在传感器阵列循环通过预期温度范围时执行一次初始化软件例程来完成补偿。为了在系统分辨率内实现补偿,所需的校正环位宽度将不同于系统位宽度。除温度补偿外,该技术还包括对由模拟信号调理引入的增益和电压偏移误差以及A / D转换误差的校正。使用68HC711E9微控制器介绍了该技术的一个示例,用于实时采集和补偿四元件应变计阵列。

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