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Optimized Thermocouple Temperature Sensor using 555 Timer and ANN Based Linearization

机译:使用555定时器和基于ANN的线性化优化热电偶温度传感器

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The presented work reports a low-cost, two-stage linearization scheme for thermocouple based temperature sensing. The first stage involves IC555 based astable multivibrator. An NTC thermistor is employed as a discharging resistor of multivibrator to facilitate reference junction compensation as well as the measurement of ambient temperature. The second stage of linearization employs ANN based fitting between the output of IC555 and true temperature. The linearization scheme uses a trade-off between the fast response of IC555 based arrangement and exorbitant accuracy of ANN-based arrangement, to optimize the performance of the sensor. The PSpice based simulation study is carried out with a T-type thermocouple for temperature range of 80°C to 125°C while the ambient temperature varies from 25°C up to 40°C. It offers absolute maximum full-scale error of 0.13%, as little as in the best existing literature, with a reduced computational burden upon the processing unit. Keywords—ANN, As table Multivibrator, IC555, Linearization, Temperature sensor.
机译:提出的工作报告了一种基于热电偶的温度感测的低成本,两阶段线性化方案。第一阶段涉及基于IC555的不稳定多谐振荡器。 NTC热敏电阻用作多谐振荡器的放电电阻,以方便基准结补偿以及环境温度的测量。线性化的第二阶段在IC555的输出和真实温度之间采用基于ANN的拟合。线性化方案在基于IC555的布置的快速响应与基于ANN的布置的高精确度之间进行权衡,以优化传感器的性能。基于PSpice的仿真研究是使用T型热电偶在80°C至125°C的温度范围内进行的,而环境温度则在25°C至40°C之间变化。它提供的绝对最大满量程误差为0.13%,与现有最好的文献一样少,并且减轻了处理单元的计算负担。关键字—ANN,如表多谐振荡器,IC555,线性化,温度传感器。

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