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A Capacitive Model of Water Salinity Wireless Sensor System Based on WIFI-Microcontroller

机译:基于WIFI微控制器的盐度无线传感器系统电容模型

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Monitoring for water salinity is very important in many industries, especially fishery and farming. Therefore, it is necessary to build a wireless water salinity sensor system capable of tackling obstacles in the field. This research proposes a low-cost wireless water salinity sensor system using parallel capacitive plate model. Capacitance effect that is proportional to salinity value is transformed into digital pulses using a circuit of an a-stable multivibrator. Frequency of these pulses is counted using a WIFI-microcontroller and inverse transform is carried out according to the relationship characteristics of salinity and frequency. Water Salinity data acquired by the WIFI-microcontroller are then transmitted to the Control Station Unit (CSU) via gateway WIFI. Testing results show maximum coverage range of 30 meters to the gateway. Nonetheless, the use gateway WIFI can increase the coverage range of this wireless water salinity sensor. Calibration tests also indicate an error of 2.3% in water salinity measurement by the instrument developed here.
机译:在许多行业中,尤其是在渔业和农业中,监测水盐度非常重要。因此,有必要建立一种能够解决野外障碍物的无线水盐度传感器系统。这项研究提出了一种使用并行电容板模型的低成本无线水盐度传感器系统。与盐度值成正比的电容效应使用不稳定的多谐振荡器的电路转换为数字脉冲。使用WIFI微控制器对这些脉冲的频率进行计数,并根据盐度和频率之间的关系特性进行逆变换。然后,由WIFI微控制器获取的水盐度数据通过网关WIFI传输到控制站单元(CSU)。测试结果表明,到网关的最大覆盖范围为30米。但是,使用网关WIFI可以增加此无线水盐传感器的覆盖范围。校准测试还表明,使用此处开发的仪器进行的水盐度测量误差为2.3%。

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