用于农业精确灌溉的土壤水分传感器实验室评估

N. Hari
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摘要

农业生产和粮食安全离不开水,因此高效用水至关重要。精确测量土壤湿度对安排灌溉至关重要,可确保作物在正确的时间获得正确的水量。这样既能防止灌溉不足,又能防止灌溉过度,既能节约用水,又能最大限度地提高作物产量。目前,数字式土壤水分传感器因其精确性和即时测量功能而被广泛使用。通过观察四个电容式土壤水分传感器 1.2(SMS A、B、C、D)在不同湿度水平下的表现,并通过重量法验证,对土壤水分传感器的功能进行了评估。经过校准的线性方程显示,每个传感器都具有很强的线性关系。测定系数 (R2) 分别为 0.92、0.93、0.91 和 0.93。这些 R² 值表明每个传感器都有很强的线性关系。通过将这些土壤湿度传感器与 Arduino 平台集成,开发出了一个自动滴灌模块。当土壤水分含量低于田间容量或所需设定值时,系统会启动灌溉电机,并在达到所需的水分水平后关闭灌溉电机。这种基于传感器的自动滴灌模块使农民能够精确、高效地灌溉田地,在适当的时间提供适当的水量。该系统还适用于亏缺灌溉,可提高作物产量和用水效率。
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Laboratory Evaluation of Soil Moisture Sensors for Precision Irrigation in Agriculture
Water is essential for agricultural production and food security, making efficient water use critical. Accurate measurement of soil moisture is vital for scheduling irrigation, ensuring that crops receive the right amount of water at the right time. This prevents both under- and over-irrigation, conserving water and maximizing crop production. Currently, digital soil moisture sensors are used for their accuracy and instant measurement capabilities. The soil moisture sensor's functionality was evaluated through observations of four Capacitive soil moisture sensors 1.2 (SMS A, B, C, D) at various moisture levels, with gravimetric method verification. The calibrated linear equations demonstrated a strong linear relationship for each sensor. The coefficient of determination (R2) were also found to be 0.92, 0.93, 0.91 and 0.93 respectively. These R² values indicate a strong linear relationship for each sensor. An automated drip irrigation module was developed by integrating these soil moisture sensors with the Arduino platform. The system activates the irrigation motor when soil moisture content falls below the field capacity or a desired set value, and turns it off once the required moisture level is reached. This sensor-based automated drip irrigation module enables farmers to irrigate their fields precisely and efficiently, delivering the right quantity of water at the right time. The system is also suitable for deficit irrigation practices, improving crop yield and water use efficiency.
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