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Soil property spatial temporal variability sensing for precision agriculture

机译:精准农业土壤性状的时空变异感知

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The world's population has doubled in the past three decades and continues to grow. Intensive farming practices have so far met the increasing demand for food, but they have had a significant, negative environmental impact. Precision agriculture uses technology to increase efficiency and reduce the environmental impacts of farming. A novel sensor concept has been designed for measuring spatial and temporal variability of soil properties. The design uses an array of circumferential electrodes to take a series of four-point resistivity measurements; this allows a depth profile of soil properties to be obtained. The design concept was implemented and evaluated in a range of contexts, including controlled and real-world soil tests. The effects of agricultural inputs on soil properties can be identified from the system's measurements. The system can successfully measure soil variability, justifying future development.
机译:在过去的三十年中,世界人口翻了一番,并且还在继续增长。迄今为止,集约化耕作方法已经满足了对食品日益增长的需求,但对环境产生了重大的负面影响。精准农业使用技术来提高效率并减少农业对环境的影响。已经设计出一种新颖的传感器概念来测量土壤特性的时空变化。该设计使用圆周电极阵列进行一系列的四点电阻率测量。这使得可以获得土壤性质的深度剖面。设计概念是在各种环境中实施和评估的,包括受控的和实际的土壤测试。农业投入对土壤性质的影响可以从系统的测量中确定。该系统可以成功地测量土壤的变异性,证明未来的发展是合理的。

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