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Design of Autonomous Sensor Nodes for Remote Soil Monitoring in Tropical Banana Plantation

机译:热带香蕉园土壤遥感监测的自主传感器节点设计

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Determining the effect of Fusariwn oxysporum f. sp. cubense Tropical Race 4 on various soil parameters is essential in modeling and predicting its occurrence in banana plantations. One way to fulfill this is through a sensor network that will continuously and automatically monitor environmental conditions at suspect locations for an extended period of time. A wireless sensor network was developed specifically for this purpose. This sensor network is capable of measuring soil acidity, moisture, temperature, and conductivity. The designed prototype made use of off-the-shelf Parrot Flower Power soil sensor, pH sensor, Bluno Beetle, battery, and 3D-printed materials, catering specifically to the conditions of tropical banana plantations with consideration for sensor node size, communication, and power. Sensor nodes were tested on both simulated tropical environments and on an actual banana plantation in San Jose, General Santos City, Philippines. Challenges were resolved through iterative design and development of prototypes. Several tests including temperature and weather resilience, and structural stress tests were done to validate the design. Findings showed that the WSN nodes developed for this purpose are resilient to high tropical temperatures for up to 12 hours of continuous exposure, are able to withstand compressive forces of up to 8880.6 N, and can reliably collect data automatically from the area 47.96% of the time at an hourly frequency under actual field conditions.
机译:确定尖孢镰刀菌f。 sp。多维数据集关于各种土壤参数的热带种族4对建模和预测其在香蕉种植园中的发生至关重要。一种实现此目的的方法是通过传感器网络,该网络将连续不断地自动监视可疑位置的环境状况,并持续较长的时间。为此专门开发了无线传感器网络。该传感器网络能够测量土壤的酸度,湿度,温度和电导率。设计的原型使用了现成的Parrot Flower Power土壤传感器,pH传感器,Bluno甲壳虫,电池和3D打印材料,专门考虑了热带香蕉种植园的条件,并考虑了传感器节点的大小,通讯和力量。在模拟的热带环境和菲律宾桑托斯将军城圣何塞的实际香蕉种植园上,都对传感器节点进行了测试。通过迭代设计和原型开发解决了挑战。进行了包括温度和天气弹性以及结构应力测试在内的多项测试,以验证设计。调查结果表明,为此目的开发的WSN节点在高达12个小时的连续暴露下能够抵御热带高温,能够承受高达8880.6 N的压缩力,并且能够可靠地自动收集来自47.96%区域的数据。在实际野外条件下,以每小时一次的频率计时。

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