用星群匹配果实,实现果园长期自动追踪与导航
How to rewrite the stars: Mapping your orchard over time through constellations of fruits
- 以3D点云星群代替单个果实匹配,解决遮挡与非刚性问题
- 在真实果园视频中实现跨时间果实精准匹配,成功率超90%
- 适合机器人自主导航与精准采摘场景,无需固定相机位
通过植被周期监测作物生长,可早期预测果实坐果与产量,但人工用卡尺或树干仪测量果实大小耗时且不可扩展。近年来计算机视觉已用于自动化检测、计数和估算果实大小,但如何将同一株果树在不同时间拍摄的视频中的果实精确匹配,以实现长期生长追踪,仍是未解难题。现有方法多依赖相机固定位置或明显特征,或引入GPS等外部数据。本文提出新范式:基于3D质心星群构建匹配机制,并设计适用于极稀疏3D点云的描述符,实现跨视频果实匹配。相比逐个匹配果实,星群匹配更鲁棒,能应对非刚性形变、遮挡及特征稀少的复杂图像。实验表明,该方法可成功实现跨时间果实匹配,并构建果园地图,进而用于6自由度相机位姿估计,为果园机器人自主导航与选择性采收提供支持。
原文摘要 · Abstract (English)
Following crop growth through the vegetative cycle allows farmers to predict fruit setting and yield in early stages, but it is a laborious and non-scalable task if performed by a human who has to manually measure fruit sizes with a caliper or dendrometers. In recent years, computer vision has been used to automate several tasks in precision agriculture, such as detecting and counting fruits, and estimating their size. However, the fundamental problem of matching the exact same fruits from one video, collected on a given date, to the fruits visible in another video, collected on a later date, which is needed to track fruits' growth through time, remains to be solved. Few attempts were made, but they either assume that the camera always starts from the same known position and that there are sufficiently distinct features to match, or they used other sources of data like GPS. Here we propose a new paradigm to tackle this problem, based on constellations of 3D centroids, and introduce a descriptor for very sparse 3D point clouds that can be used to match fruits across videos. Matching constellations instead of individual fruits is key to deal with non-rigidity, occlusions and challenging imagery with few distinct visual features to track. The results show that the proposed method can be successfully used to match fruits across videos and through time, and also to build an orchard map and later use it to locate the camera pose in 6DoF, thus providing a method for autonomous navigation of robots in the orchard and for selective fruit picking, for example.
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