用视觉算法精准测量农机喷杆晃动,提升农药喷洒精度
Computer Vision based Automated Quantification of Agricultural Sprayers Boom Displacement
- 用YOLO系列模型实时追踪喷杆边缘目标
- 垂直与横向位移误差小于0.026米,识别准确率超90%
- 可推广至多种喷杆机型,助力喷洒系统优化
自走式农业喷雾机在作业中存在施药量误差问题,其中喷杆不稳定是主要因素之一。喷杆宽度达38米,行驶速度达30公里/小时,配合复杂地形与转向动态,控制难度极大。然而,目前尚无对喷杆运动幅度的定量数据,难以系统改进喷杆设计或开发响应式控制系统。为此,本研究开发了一套基于计算机视觉的自动化系统,用于量化各类农业喷雾机喷杆的运动情况。通过在喷杆边缘安装目标标记,利用YOLO V7、V8和V11神经网络模型实现实时跟踪,量化喷杆在垂直和横向方向的有效位移。同时,在喷杆上安装倾角传感器采集角度数据,用于验证模型输出。结果表明,模型对目标的检测准确率超过90%,目标距离估计值与倾角传感器数据偏差小于0.026米。该系统可应用于当前喷雾机,经小幅调整后亦适用于其他机型。所得数据可用于改进喷杆结构设计,提高喷洒均匀性与施药精度。
原文摘要 · Abstract (English)
Application rate errors when using self-propelled agricultural sprayers for agricultural production remain a concern. Among other factors, spray boom instability is one of the major contributors to application errors. Spray booms' width of 38m, combined with 30 kph driving speeds, varying terrain, and machine dynamics when maneuvering complex field boundaries, make controls of these booms very complex. However, there is no quantitative knowledge on the extent of boom movement to systematically develop a solution that might include boom designs and responsive boom control systems. Therefore, this study was conducted to develop an automated computer vision system to quantify the boom movement of various agricultural sprayers. A computer vision system was developed to track a target on the edge of the sprayer boom in real time. YOLO V7, V8, and V11 neural network models were trained to track the boom's movements in field operations to quantify effective displacement in the vertical and transverse directions. An inclinometer sensor was mounted on the boom to capture boom angles and validate the neural network model output. The results showed that the model could detect the target with more than 90 percent accuracy, and distance estimates of the target on the boom were within 0.026 m of the inclinometer sensor data. This system can quantify the boom movement on the current sprayer and potentially on any other sprayer with minor modifications. The data can be used to make design improvements to make sprayer booms more stable and achieve greater application accuracy.
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