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Readout Circuitry Moving Average for Sensing Redox Reaction in 3-electrode Cells

机译:感应3电极电池中氧化还原反应的读出电路移动平均值

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This paper presents the effect of moving average algorithm incorporated in a potentiostat circuit that acts as a readout interfacing circuit for a 3-electrode cell system. The potentiostat senses redox reaction with an internal Differential Pulse Voltammetry (DPV) electroanalytical technique provided by an ARM Cortex-M microcontroller. The moving average calculation is embedded in the applied microcontroller. Two moving average techniques are compared: Simple Moving Average, (SMA) and Adjacent Averaging, (AA). The objective is to reduce noise during redox reaction current sensing when the potentiostat hardware implementation is constructed using a single microcontroller with open shelf electronics. DPV current properties of 3-electrode cell redox reaction in 10mM of Ferricyanide solution was measured by the designed potentiostat and subjected to moving average to smoothen the data. It is found that even though the real-time moving average techniques are able to reduce noise by 99%, both approaches reduce peak current vs time measured at the output of the potentiostat. The findings provide important information for interpreting sensor behavior accurately based on in-situ measured values.
机译:本文介绍了移动平均算法在恒电位仪电路中的作用,该电路用作3电极电池系统的读出接口电路。稳压器通过ARM Cortex-M微控制器提供的内部差分脉冲伏安(DPV)电分析技术来感应氧化还原反应。移动平均值计算嵌入在应用的微控制器中。比较了两种移动平均技术:简单移动平均(SMA)和相邻平均(AA)。目的是在使用带有开放式电子装置的单个微控制器构建稳压器硬件实现方案时,减少氧化还原反应电流感测期间的噪声。通过设计的恒电位仪测量10mM铁氰化物溶液中3电极细胞氧化还原反应的DPV电流特性,并对其进行移动平均以使数据平滑。结果发现,即使实时移动平均技术能够将噪声降低99%,两种方法都可以降低恒电位仪输出端测得的峰值电流与时间的关系。这些发现为基于原位测量值准确地解释传感器行为提供了重要信息。

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