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Evaluation of Object Surface Edge Profiles Detected with a 2-D Laser Scanning Sensor

机译:评估二维激光扫描传感器检测到的物体表面边缘轮廓

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摘要

Canopy edge profile detection is a critical component of plant recognition in variable-rate spray control systems. The accuracy of a high-speed 270° radial laser sensor was evaluated in detecting the surface edge profiles of six complex-shaped objects. These objects were toy balls with a pink smooth surface, light brown rectangular cardboard boxes, black and red texture surfaced basketballs, white smooth cylinders, and two different sized artificial plants. Evaluations included reconstructed three-dimensional (3-D) images for the object surfaces with the data acquired from the laser sensor at four different detection heights (0.25, 0.50, 0.75, and 1.00 m) above each object, five sensor travel speeds (1.6, 2.4, 3.2, 4.0, and 4.8 km h−1), and 8 to 15 horizontal distances to the sensor ranging from 0 to 3.5 m. Edge profiles of the six objects detected with the laser sensor were compared with images taken with a digital camera. The edge similarity score (ESS) was significantly affected by the horizontal distances of the objects, and the influence became weaker when the objects were placed closer to each other. The detection heights and travel speeds also influenced the ESS slightly. The overall average ESS ranged from 0.38 to 0.95 for all the objects under all the test conditions, thereby providing baseline information for the integration of the laser sensor into future development of greenhouse variable-rate spray systems to improve pesticide, irrigation, and nutrition application efficiencies through watering booms.
机译:冠层边缘轮廓检测是可变速率喷雾控制系统中植物识别的关键组成部分。在检测六个复杂形状物体的表面边缘轮廓时,评估了高速270°径向激光传感器的精度。这些物品是表面光滑的玩具球,浅褐色的矩形纸板箱,黑色和红色纹理的篮球,白色光滑的圆柱体以及两种不同尺寸的人造植物。评估包括针对物体表面的三维(3-D)重建图像,其中从激光传感器获取的数据位于每个物体上方四个不同的检测高度(0.25、0.50、0.75和1.00 m),五个传感器行进速度(1.6 ,2.4、3.2、4.0和4.8 km h −1 ),并且距传感器的水平距离为8至15,范围为0至3.5 m。将用激光传感器检测到的六个物体的边缘轮廓与用数码相机拍摄的图像进行比较。边缘相似度评分(ESS)受对象水平距离的影响很大,并且当对象彼此靠近放置时,影响变得更弱。检测高度和行进速度对ESS也有轻微影响。在所有测试条件下,所有物体的总体平均ESS范围为0.38至0.95,从而为将激光传感器集成到温室可变速率喷雾系统的未来开发中提供了基准信息,以提高农药,灌溉和营养施用的效率通过浇水的繁荣。

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