Lu Huiqiang, Liu Kaiyuan, Sun Wei, Simionescu P A
School of Mechanical and Electrical Engineering, Gansu Agricultural University, Lanzhou, 730070, China.
Texas A&M University Corpus Christi, Corpus Christi, TX, 78412, USA.
Sci Rep. 2024 Jul 22;14(1):16817. doi: 10.1038/s41598-024-67321-1.
Planting potatoes through plastic film with incomplete or excessive soil coverage over seed holes significantly impairs yield. Existing covering methods rely solely on mechanical transmissions, leading to bulky and inconsistent soil coverage of the seed holes. This paper reports an innovative method using a precise soil covering device based on the YOLOv4-tiny real-time object detection system to accurately identify potato plastic film holes and cover them with soil. The system adopts a lightweight and high-precision detection scheme, balancing increased network depth with reduced computation. It can identify holes in the plastic film in real-time and with high accuracy. To verify the effectiveness of YOLOv4-tiny real-time object detection system, a precise soil covering device based on this detection system has been designed and applied to a double crank multi-rod hill-drop planter. Field tests revealed that the system's average accuracy rate for detecting holes is approximately 98%, with an average processing time of 15.15 ms per frame. This fast and accurate performance, combined with the device's robust real-time operation and anti-interference capabilities during soil covering, effectively reduce the problems of soil cover omission and repeated covering caused by existing mechanical transmission methods. The findings reported in this paper are valuable for the development of autonomous potato plastic film precise soil covering devices for commercial use.
通过塑料薄膜种植马铃薯时,种孔上土壤覆盖不完全或过多会严重影响产量。现有的覆盖方法仅依靠机械传动,导致种孔的土壤覆盖体积庞大且不一致。本文报道了一种创新方法,即使用基于YOLOv4-tiny实时目标检测系统的精确土壤覆盖装置,以准确识别马铃薯塑料薄膜孔并用土壤覆盖。该系统采用轻量级高精度检测方案,在增加网络深度的同时平衡减少计算量。它能够实时且高精度地识别塑料薄膜上的孔。为验证YOLOv4-tiny实时目标检测系统的有效性,基于该检测系统设计了一种精确土壤覆盖装置,并应用于双曲柄多杆穴播机。田间试验表明,该系统检测孔的平均准确率约为98%,每帧平均处理时间为15.15毫秒。这种快速准确的性能,再加上该装置在土壤覆盖过程中强大的实时操作和抗干扰能力,有效减少了现有机械传动方法导致的土壤覆盖遗漏和重复覆盖问题。本文报道的研究结果对于开发用于商业用途的自主马铃薯塑料薄膜精确土壤覆盖装置具有重要价值。