Modulating Functions Analysis For Wireless Data Transmission Because Of Advanced Sensors In Energy-Saving Process Of Washing

J. Alan Calderón, Julio C. Tafur S., E. Benjamín Barriga, J. Alencastre, Alex Quispe, Alan Ccarita
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Abstract

The vibration measurement of flows in transient or steady-state is a very complicated task. Moreover, to correlate it with a temperature process is quite important according to get information regarding molecular kinetic energy of thermal sources (such as flow measurement used in cleaning tasks) according to achieve heating transfer information of a thermal process. However, there is a trouble concerning the transduction stage in the measurement while it is not a transducer designed algorithm as a consequence of a mathematical model, which correlates the calibration data with the theoretical model of the heating/vibration transfer. For this reason, in this research is proposed intelligent sensors/transducers, which are based on Anodic Aluminium Oxide (AAO) and a mathematical procedure of the measurement instrumentation according to adaptive coefficients in the Modulating Functions strategies analysis and getting optimal measurements. In this research is explained and analysed the temperature measurement process and the transduction process as the strict correlation of the calibration of the temperature/vibration sensor. For this reason, there were evaluated different transducers and the temperature/vibration reference for the calibration. The based on nanostructures temperature sensors are designed by specific and complex procedures according to achieve quite operation range, robustness and precision. Moreover, the transduction can be obtained through different electrical answer variables such as voltage, electrical current or capacitance and possible to send by wireless mechanisms and protocols to the main control system. Therefore, the evaluation of the designed advanced sensor performance was achieved by the vibration and temperature measurement of the water surface of a ultrasound washing machine, for which the designed sensor enhances energy-saving of the washing process.
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洗衣节能过程中先进传感器无线数据传输调制功能分析
瞬态或稳态流动的振动测量是一项非常复杂的工作。此外,根据获得热过程的传热信息,获得热源(如清洗任务中使用的流量测量)的分子动能信息,将其与温度过程关联起来是非常重要的。然而,在测量中的转导阶段存在一个麻烦,因为它不是传感器设计算法的数学模型的结果,它将校准数据与加热/振动传递的理论模型相关联。为此,本研究提出了一种基于阳极氧化铝(AAO)的智能传感器/换能器,该传感器/换能器的测量仪器的数学程序是根据调制函数策略中的自适应系数进行分析并获得最优测量值。本文对温度/振动传感器的校准过程中作为严格相关的温度测量过程和转导过程进行了说明和分析。为此,评估了不同的换能器和温度/振动基准进行校准。基于纳米结构的温度传感器是根据特定的复杂程序设计而成的,具有较好的工作范围、鲁棒性和精度。此外,可以通过电压、电流或电容等不同的电气应答变量来获得转导,并可以通过无线机制和协议发送到主控制系统。因此,通过对超声波洗衣机水面的振动和温度测量来评价所设计的先进传感器的性能,从而提高了洗涤过程的节能效果。
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来源期刊
Renewable Energy and Power Quality Journal
Renewable Energy and Power Quality Journal Energy-Energy Engineering and Power Technology
CiteScore
0.70
自引率
0.00%
发文量
147
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