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首页> 外文期刊>Nature reviews Cancer >Development of an Open-Source Thermal Image Processing Software for Improving Irrigation Management in Potato Crops (Solanum tuberosum L.)
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Development of an Open-Source Thermal Image Processing Software for Improving Irrigation Management in Potato Crops (Solanum tuberosum L.)

机译:开发开源热图像处理软件,用于改善马铃薯作物灌溉管理(Solanum Tuberosum L.)

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Accurate determination of plant water status is mandatory to optimize irrigation scheduling and thus maximize yield. Infrared thermography (IRT) can be used as a proxy for detecting stomatal closure as a measure of plant water stress. In this study, an open-source software (Thermal Image Processor (TIPCIP)) that includes image processing techniques such as thermal-visible image segmentation and morphological operations was developed to estimate the crop water stress index (CWSI) in potato crops. Results were compared to the CWSI derived from thermocouples where a high correlation was found (= 0.84). To evaluate the effectiveness of the software, two experiments were implemented. TIPCIP-based canopy temperature was used to estimate CWSI throughout the growing season, in a humid environment. Two treatments with different irrigation timings were established based on CWSI thresholds: 0.4 (T2) and 0.7 (T3), and compared against a control (T1, irrigated when soil moisture achieved 70% of field capacity). As a result, T2 showed no significant reduction in fresh tuber yield (34.5 +/- 3.72 and 44.3 +/- 2.66 t ha(-1)), allowing a total water saving of 341.6 +/- 63.65 and 515.7 +/- 37.73 m(3) ha(-1) in the first and second experiment, respectively. The findings have encouraged the initiation of experiments to automate the use of the CWSI for precision irrigation using either UAVs in large settings or by adapting TIPCIP to process data from smartphone-based IRT sensors for applications in smallholder settings.
机译:准确测定植物水状况是强制性的,以优化灌溉调度,从而最大限度地提高产量。红外热成像(IRT)可用作检测气孔闭合作为植物水胁迫的衡量标准的代理。在该研究中,开发了一种包括图像处理技术的开源软件(热图像处理器(Tipcip)),例如热可见图像分割和形态学操作,以估计马铃薯作物中的作物水分应激指数(CWSI)。将结果与来自发现高相关的热电偶的CWSI进行比较(= 0.84)。为了评估软件的有效性,实施了两个实验。在潮湿的环境中,倾斜基础冠层温度用于估计整个生长季节的CWSI。基于CWSI阈值建立了两种具有不同灌溉定时的治疗方法:0.4(T2)和0.7(T3),并与对照进行比较(T1,当土壤水分达到50%的场容时)。结果,T2显示出新鲜块茎产量的显着降低(34.5 +/- 3.72和44.3 +/- 2.66 T HA(-1)),允许总节水341.6 +/- 63.65和515.7 +/- 37.73 M(3)HA(-1)分别在第一和第二实验中。调查结果鼓励了在大型环境中使用无人机或通过适应基于智能手机的IRT传感器来处理数据的精确灌溉,从而开始使用CWSI的实验,以便在小型校准设置中的应用程序。

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