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Smartphone Application-Enabled Apple Fruit Surface Temperature Monitoring Tool for In-Field and Real-Time Sunburn Susceptibility Prediction

机译:智能手机启用苹果果实表面温度监测工具,用于现场和实时晒伤易感性预测

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摘要

Heat stress and resulting sunburn is a major abiotic stress in perineal specialty crops. For example, such stress to the maturing fruits on apple tree canopies can cause several physiological disorders that result in considerable crop losses and reduced marketability of the produce. Thus, there is a critical technological need to effectively monitor the abiotic stress under field conditions for timely actuation of remedial measures. Fruit surface temperature (FST) is one of the stress indicators that can reliably be used to predict apple fruit sunburn susceptibility. This study was therefore focused on development and in-field testing of a mobile FST monitoring tool that can be used for real-time crop stress monitoring. The tool integrates a smartphone connected thermal-Red-Green-Blue (RGB) imaging sensor and a custom developed application (‘AppSense 1.0’) for apple fruit sunburn prediction. This tool is configured to acquire and analyze imagery data onboard the smartphone to estimate FST. The tool also utilizes geolocation-specific weather data to estimate weather-based FST using an energy balance modeling approach. The ‘AppSense 1.0’ application, developed to work in the Android operating system, allows visual display, annotation and real-time sharing of the imagery, weather data and pertinent FST estimates. The developed tool was evaluated in orchard conditions during the 2019 crop production season on the Gala, Fuji, Red delicious and Honeycrisp apple cultivars. Overall, results showed no significant difference (t110 = 0.51, p = 0.6) between the mobile FST monitoring tool outputs, and ground truth FST data collected using a thermal probe which had accuracy of ±0.4 °C. Upon further refinements, such tool could aid growers in real-time apple fruit sunburn susceptibility prediction and assist in more effective actuation of apple fruit sunburn preventative measures. This tool also has the potential to be customized for in-field monitoring of the heat stressors in some of the sun-exposed perennial and annual specialty crops at produce maturation.
机译:热应激并导致晒伤是在会阴部特种作物的主要非生物胁迫。例如,这样的应力对苹果树檐熟化水果可引起导致相当大的作物损失和减少生产的可销售几种生理病症。因此,有一个关键的技术需要有效地监测的补救措施,及时激励场条件下的非生物胁迫。果表面温度(FST)是可以可靠地用于预测苹果果实晒斑敏感性的应力指标之一。因此,本研究的重点是开发和现场可用于实时作物应力监测移动FST监测工具的测试。该工具集成智能电话相连的热 - 红 - 绿 - 蓝(RGB)成像传感器和用于苹果果实晒斑预测的自定义开发的应用程序(“AppSense 1.0”)。此工具被配置为获取和分析影像数据板载智能电话来估计FST。该工具还利用利用能量平衡的建模方法的具体地理位置,气象数据为基础的天气估计FST。该“AppSense 1.0”的应用程序,开发在Android操作系统的工作,让可视化显示,注释和图像的实时共享,气象数据和相关的FST估计。在开发的工具是在对嘎拉,红富士,蛇果和Honeycrisp苹果品种2019年作物生产季节果园条件进行评估。总的来说,结果表明,没有显著差异(T110 = 0.51,P = 0.6)移动FST监测工具输出,以及使用热探针,其具有±0.4℃的精确度收集地面实况数据FST之间。通过进一步的改进,这样的工具可以帮助实时苹果果实日灼的易感性预测种植者和协助苹果果实日灼预防措施,更有效地驱动。该工具还具有进行自定义的字段,在农产品成熟一些阳光暴露多年生和一年特种作物的监测热应激的潜力。

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