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Low-cost sensor array design optimization based on planar electromagnetic sensor design for detecting nitrate and sulphate

机译:基于平面电磁传感器设计的低成本传感器阵列设计优化,用于检测硝酸盐和硫酸盐

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In recent years, the tremendous development of agriculture sector has been driven by the growing human population. Therefore, the crop productions need to be increased to fulfill the food demands. In order to do it, the amount of fertilizer used, might have been more than required and unabsorbed fertilizer by plants usually washed into water sources like rivers, ponds, and wells. Hence, the water will be polluted and unsafe to consume. Therefore, it is important to determine the contamination level in natural water resources. This paper discusses the development of a low-cost sensor array based on planar electromagnetic sensors to determine the contamination levels of two common fertilizer components which are nitrate and sulphate in water sources. Three types of sensor array, were suggested: parallel, star, and delta. The modeling and simulation of all type of sensor array were carried out using COMSOL Multiphysics 4.2 software to calculate the sensors' impedance value. The contamination state was simulated by altering the electrical properties values of the environment domain of the model to represent water contamination. The simulations results show that all types of sensor array are sensitive to conductivity, σ and permittivity, ε. Furthermore, a set of experiments was conducted to determine the relationship between the sensor's impedance and the waters' nitrate and sulphate contamination. The performance of the system was observed where the sensors were tested with the additional of distilled water with different concentrations of amount of potassium nitrate and potassium sulphate. The sensitivity of the developed sensors was evaluated where the best sensor was selected. Based on the outcomes of the experiments, the star sensor array placement has the highest sensitivity and can be used to measure the water content in the water.
机译:近年来,人口增长推动了农业部门的巨大发展。因此,需要增加作物产量以满足粮食需求。为了做到这一点,肥料的使用量可能已经超过了所需的量,并且通常未被植物吸收到河流,池塘和水井等水源中的未吸收肥料。因此,水将被污染并且不安全饮用。因此,确定天然水资源中的污染水平很重要。本文讨论了一种基于平面电磁传感器的低成本传感器阵列的开发,该传感器阵列可以确定两种常见肥料成分(水源中的硝酸盐和硫酸盐)的污染程度。建议使用三种类型的传感器阵列:平行,星形和三角形。使用COMSOL Multiphysics 4.2软件对所有类型的传感器阵列进行建模和仿真,以计算传感器的阻抗值。通过更改模型环境域的电特性值来表示水污染,从而模拟污染状态。仿真结果表明,所有类型的传感器阵列都对电导率σ和介电常数ε敏感。此外,进行了一组实验来确定传感器的阻抗与水域硝酸盐和硫酸盐污染之间的关系。观察系统的性能,在传感器中添加了不同浓度的硝酸钾和硫酸钾的蒸馏水,对传感器进行了测试。在选择最佳传感器的地方对开发的传感器的灵敏度进行了评估。根据实验结果,星形传感器阵列的位置具有最高的灵敏度,可用于测量水中的水含量。

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