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Uncertainty reduction techniques in microcontroller-based time measurements

机译:基于微控制器的时间测量中的不确定性降低技术

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This paper proposes and analyses different methods for reducing the uncertainty in microcontroller-based time measurements, which are increasingly common in interface circuits for sensors. The main uncertainty sources in these measurements are quantisation and trigger noise. The former depends on the technique used by the CPU for detecting the external events that start or stop the timing process, whereas the latter is in part attributable to the CPU activity. The sleep mode, a feature designed to reduce power consumption in microcontrollers, offers a simple and efficient solution to improve the measurement uncertainty because it reduces both the interrupt response time and the noise resulting from the CPU activity. These improvements are experimentally validated by testing an 8-bit microcontroller (AVR AT90S2313). (c) 2005 Elsevier B.V. All rights reserved.
机译:本文提出并分析了各种方法来减少基于微控制器的时间测量中的不确定性,这些方法在传感器接口电路中越来越普遍。这些测量的主要不确定性来源是量化和触发噪声。前者取决于CPU用于检测启动或停止计时过程的外部事件的技术,而后者则部分归因于CPU活动。睡眠模式是一种旨在减少微控制器功耗的功能,它提供了一种简单有效的解决方案来改善测量不确定性,因为它既减少了中断响应时间,又减少了CPU活动产生的噪声。这些改进通过测试8位微控制器(AVR AT90S2313)进行了实验验证。 (c)2005 Elsevier B.V.保留所有权利。

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