Kojima Yuki, Shigeta Ryo, Miyamoto Naoya, Shirahama Yasutomo, Nishioka Kazuhiro, Mizoguchi Masaru, Kawahara Yoshihiro
Faculty of Engineering, Gifu University, Gifu 501-1193, Japan.
Graduate School of Information Science and Technology, The University of Tokyo, Tokyo 113-8656, Japan.
Sensors (Basel). 2016 Aug 15;16(8):1292. doi: 10.3390/s16081292.
Soil moisture is an important property for agriculture, but currently commercialized soil moisture sensors are too expensive for many farmers. The objective of this study is to develop a low-cost soil moisture sensor using capacitors on a film substrate and a capacitive touch integrated circuit. The performance of the sensor was evaluated in two field experiments: a grape field and a mizuna greenhouse field. The developed sensor captured dynamic changes in soil moisture at 10, 20, and 30 cm depth, with a period of 10-14 days required after sensor installation for the contact between capacitors and soil to settle down. The measured soil moisture showed the influence of individual sensor differences, and the influence masked minor differences of less than 0.05 m³·m(-3) in the soil moisture at different locations. However, the developed sensor could detect large differences of more than 0.05 m³·m(-3), as well as the different magnitude of changes, in soil moisture. The price of the developed sensor was reduced to 300 U.S. dollars and can be reduced even more by further improvements suggested in this study and by mass production. Therefore, the developed sensor will be made more affordable to farmers as it requires low financial investment, and it can be utilized for decision-making in irrigation.
土壤湿度是农业生产中的一项重要指标,但目前商业化的土壤湿度传感器对许多农民来说过于昂贵。本研究的目的是利用薄膜基板上的电容器和电容式触摸集成电路开发一种低成本的土壤湿度传感器。该传感器的性能在两个田间试验中进行了评估:一个葡萄园和一个水菜温室。所开发的传感器能够捕捉10厘米、20厘米和30厘米深度土壤湿度的动态变化,传感器安装后需要10至14天时间,电容器与土壤之间的接触才能稳定下来。测量的土壤湿度显示了单个传感器差异的影响,这种影响掩盖了不同位置土壤湿度小于0.05立方米·立方米(-3)的微小差异。然而,所开发的传感器能够检测到土壤湿度中超过0.05立方米·立方米(-3)的较大差异以及不同的变化幅度。所开发传感器的价格降至300美元,通过本研究提出的进一步改进和大规模生产,价格还可进一步降低。因此,所开发的传感器对农民来说将更具可承受性,因为它所需的资金投入较低,并且可用于灌溉决策。