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In Field Fruit Sizing Using A Smart Phone Application

机译:使用智能手机应用程序进行实地水果施胶

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摘要

In field (on tree) fruit sizing has value in assessing crop health and for yield estimation. As the mobile phone is a sensor and communication rich device carried by almost all farm staff, an Android application (“FruitSize”) was developed for measurement of fruit size in field using the phone camera, with a typical assessment rate of 240 fruit per hour achieved. The application was based on imaging of fruit against a backboard with a scale using a mobile phone, with operational limits set on camera to object plane angle and camera to object distance. Image processing and object segmentation techniques available in the OpenCV library were used to segment the fruit from background in images to obtain fruit sizes. Phone camera parameters were accessed to allow calculation of fruit size, with camera to fruit perimeter distance obtained from fruit allometric relationships between fruit thickness and width. Phone geolocation data was also accessed, allowing for mapping fruits of data. Under controlled lighting, RMSEs of 3.4, 3.8, 2.4, and 2.0 mm were achieved in estimation of avocado, mandarin, navel orange, and apple fruit diameter, respectively. For mango fruit, RMSEs of 5.3 and 3.7 mm were achieved on length and width, benchmarked to manual caliper measurements, under controlled lighting, and RMSEs of 5.5 and 4.6 mm were obtained in-field under ambient lighting.
机译:在田间(树上),水果上浆对评估作物健康状况和估计产量具有价值。由于移动电话是几乎所有农场员工都携带的传感器和通讯丰富的设备,因此开发了一个Android应用程序(“ FruitSize”),用于使用电话摄像头测量田间水果的大小,典型的评估速度为每小时240个水果实现。该应用程序是基于使用移动电话在带有刻度尺的背板上对水果进行成像的,其操作限制设置在相机到物体平面的角度以及相机到物体的距离上。 OpenCV库中可用的图像处理和对象分割技术用于从图像中的背景中分割水果以获得水果大小。可以访问手机摄像头参数以计算水果大小,并通过从水果厚度和宽度之间的水果异形关系获得相机到水果的周长距离。还访问了电话地理位置数据,从而可以映射数据的结果。在受控照明下,估计鳄梨,橘子,脐橙和苹果果实直径分别达到3.4、3.8、2.4和2.0 mm的RMSE。对于芒果,在受控照明下,以手动卡尺测量为基准,长和宽的均方根误差(RMSE)分别为5.3和3.7毫米,而在环境照明条件下,现场获得的均方根误差分别为5.5和4.6毫米。

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