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Using infrared sensor for large area canopy total temperature measurements of rice plants.

机译:使用红外传感器进行水稻植株大面积冠层总温度的测量。

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Measuring the temperature of rice plant canopies is important for agronomy and crop-growth research. Commercial infrared thermometers are poorly suited for this task because they are unable to measure the temperature over a large area of rice canopy, and the emissivity measured is not specific to the rice plant canopy, resulting in large errors in measurement. By analyzing the infrared properties of rice plant canopies, an infrared optical system is used to develop an infrared sensor to measure the temperature of a large area of rice plant canopy. This study analyzes the principles of temperature measurement using infrared sensors and designs the optical and electrical systems for the sensor. The field of view (FOV) of the sensor is set to 53.2 degrees ; consequentially, the sensor can measure the total temperature of a circular area with a diameter equal to the distance from the sensor to the rice canopy. Data analysis shows that the rice canopy emissivity is 0.9355; this value is inserted into the measurement model. This study analyzes the following variables with respect to rice canopy temperature measurement: (1) accuracy of the sensor versus a thermometer, (2) influence of different varieties of rice plants and (3) the influence of sensor distance from the canopy. Between 5 and 60 cm is determined to be the optimal measurement range. The results show that the methods proposed in this article can measure the temperature of large areas of rice canopy (when the measuring distance is set to 60 cm, the measuring area is 0.283 m2). This method has the advantage of real-time, highly sensitive, and non-contacted measurements.
机译:测量水稻冠层温度对于农艺学和作物生长研究很重要。商用红外温度计不适合该任务,因为它们无法测量大面积水稻冠层的温度,并且所测量的发射率不是水稻冠层所特有的,从而导致测量误差很大。通过分析水稻冠层的红外特性,使用红外光学系统开发了一种红外传感器,用于测量大面积水稻冠层的温度。这项研究分析了使用红外传感器进行温度测量的原理,并设计了用于传感器的光学和电气系统。传感器的视场(FOV)设置为53.2度;因此,传感器可以测量直径等于从传感器到稻冠的距离的圆形区域的总温度。数据分析表明,水稻冠层发射率为0.9355;该值被插入到测量模型中。这项研究分析了有关水稻冠层温度测量的以下变量:(1)传感器与温度计的精度,(2)水稻品种不同的影响,以及(3)传感器距冠层距离的影响。确定5到60厘米之间为最佳测量范围。结果表明,本文提出的方法可以测量大面积的水稻冠层温度(当测量距离设置为60 cm时,测量面积为0.283 m 2 )。这种方法的优点是实时,高度灵敏和非接触式测量。

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