首页> 外文期刊>Agricultural and Forest Meteorology >Microwave L-band (1730 MHz) accurately estimates the relative water content in poplar leaves. A comparison with a near infrared water index (R-1300/R-1450)
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Microwave L-band (1730 MHz) accurately estimates the relative water content in poplar leaves. A comparison with a near infrared water index (R-1300/R-1450)

机译:微波L波段(1730 MHz)准确估算了杨树叶中的相对含水量。与近红外水指数比较(R-1300 / R-1450)

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In this study the estimation of reflectivity at 1730 MHz (L-band), measured with a microwave digital cordless telephony (DCT) patch antenna, is presented as an easy-to-handle and non-destructive new method to assess the relative water content (RWC) of poplar leaves and filter discs at different levels of dehydration. The accuracy of this new method has been contrasted with the R-1300/R-1450 index, determined by a portable near infrared (NIR) spectrometer. The close correlations found between RWC and the reflectivity at a frequency of 1730 MHz, both for filters and leaves, indicate that microwave determinations are rather independent of the physical properties of the material analysed. On the contrary, the differences found between poplar leaves and leaf filters in the relationships established between RWC and the R-1300/R-1450 index demonstrate a strong influence of the properties of the material in NIR reflectance measurements, specifically as they relate to changes in leaf thickness during dehydration. It should be noted that the amount of energy received by the leaf for the microwave technique (0.1 mW) was much lower than that received for the measuring of the R-1300/R-1450 index (2.5 W). Moreover, R-square coefficients were higher for microwaves than for the R-1300/R-1450 index. The use of a technologically simple, low cost and portable device, based on a microwave DCT patch antenna, could yield a solid support for the development of a commercial apparatus enabling the determination of plant water status under field conditions
机译:在这项研究中,使用微波数字无绳电话(DCT)贴片天线测量的在1730 MHz(L波段)反射率的估计是一种易于操作且无损的评估相对含水量的新方法。 (RWC)处于不同脱水水平的杨树叶片和滤盘。这种新方法的准确性已与R-1300 / R-1450指数(由便携式近红外(NIR)光谱仪确定)形成对比。对于滤光片和树叶,在RWC和1730 MHz频率下的反射率之间发现密切的相关性,这表明微波的测定与所分析材料的物理性质无关。相反,在RWC和R-1300 / R-1450指数之间建立的关系中,白杨树叶和树叶过滤器之间的差异证明了材料性质在NIR反射率测量中的强烈影响,特别是与变化有关脱水过程中叶片厚度的变化。应该注意的是,微波技术在叶片接收到的能量(0.1 mW)比测量R-1300 / R-1450指数所获得的能量(2.5 W)低得多。此外,微波的R平方系数高于R-1300 / R-1450指数。使用基于微波DCT贴片天线的技术简单,成本低廉的便携式设备,可以为商业设备的开发提供坚实的支持,该设备可以确定田间条件下的植物水状况

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